Skip to content

The Study of Regional Hemodynamic Changes After Specific Brachial Plexus Block by Ultrasound Guidance

The Study of Regional Hemodynamic Changes After Specific Brachial Plexus Block by Ultrasound Guidance

Status
Completed
Phases
Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02139982
Enrollment
110
Registered
2014-05-16
Start date
2011-01-31
Completion date
2012-12-31
Last updated
2014-08-01

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Upper Limb Nerve Block

Keywords

hemodynamics, anaesthetics, brachial plexus, peripheral nerves, skin temperature, sympathetic nervous system, dose-response relationship

Brief summary

Phase 1 Sympathetic block leads to vasodilatation and increases in blood flow. However, regional hemodynamic changes of radial and ulnar artery after specific nerve block of brachial plexus remains unclear. The aim of the study is to assess the effect of specific nerve block of brachial plexus on hemodynamics of upper extremity, and provides evidence for further research in patient undergoing microvascular surgery. Phase 2 There is no literature about dose-finding studies of sympathetic block after brachial plexus block. Little is known regarding the relationship between concentration of local anaesthetic and vasodilation of upper extremity. The aim of this randomized, double-blind, prospective dose-response study is to determine the ED50 and ED95 of ropivacaine in sympathetic block of upper extremity after supraclavicular block

Detailed description

Phase 1 Brachial plexus block (BPB) is a widely used regional anesthetic technique for upper limb surgery. The effect of sympathetic block of BPB can leads to vasodilatation and increase blood flow and skin temperature in the ipsilateral upper limb. At the level of the axillary region, the sympathetic nerves innervating the radial and ulnar artery travel with the brachial plexus, but it is unclear which specific nerve: musculocutaneous, radial, ulnar, and median innervates radial or ulnar artery. Radial and ulnar artery and their branches are common donor or recipient vessels in the vascular reconstruction surgery and their hemodynamic changes may affect the blood flow of vascular anastomoses in vascular reconstruction. Sometimes, brachial plexus could be partially blocked intentionally or unintentionally, with the resultant regional hemodynamic changes unclear. As the use of ultrasound guided peripheral nerve block getting increasingly popular, peripheral nerve can be blocked visually, with good accuracy and ease. It has made specific nerve block in the axillary region possible. Can specific nerve block increase the blood flow of target artery (radial or ulnar artery) and benefit microvascular surgery, or will it decrease the blood flow in other arteries and have a negative impact on microvascular surgery? In this study, the investigators will measure the hemodynamic changes of radial and ulnar artery after performing specific nerve blocks of the musculocutaneous, radial, ulnar, or median nerves respectively in patients without vascular disease. The aim is to assess the effect of specific nerve block on hemodynamics of upper extremity, and provided evidence for further research in patients undergoing microvascular surgery. The subjects of study are patients undergoing upper extremity operation. All patients will be randomized into 4 groups according to the specific nerve block (SNB) of brachial plexus: group MC (musculocutaneous), group UL (ulnar), group RA (radial) and group ME (median). Patients are randomised to the four groups by random number(generated by computer) in sealed envelopes. Sample randomization will be done in four groups by random-number using sealed envelopes. Each patient will receive allocated SNB of brachial plexus (musculocutaneous, radial, ulnar, or median) followed by Axillary brachial plexus block successively using ultrasound guidance combined neurostimulation. All nerve blocks will be performed by a single dedicated anesthetist. A second investigator, who is blinded to the protocol and patient allocation, will perform the measurements. Sensory blockade will be assessed by pinprick sensation (22 G needle) and compare with the opposite forearm/hand for normal, hypoesthesia or no sensation. Success of SNB is defined as only loss of sensation in the cutaneous distribution of the specific nerve (musculocutaneous, ulnar, radial, or median nerves) at 30min after SNB. If hypoesthesia or no sensation is detected in the innervation areas of any other nerve, the patient will be excluded. Success of BPB is defined as the absence of sensation to in all innervation areas of above four nerves 30min after the BPB. Measurement of hemodynamic parameters The ulnar artery and radial artery is located at 1 cm proximal to the ulnar or radial styloid process. Specific points will be located with skin marker to provide consistency with all measurements taken. Hemodynamic parameters will is measured by Pulsed-wave Doppler (PWD) ultrasound. The probe will be placed on the ventral wrist parallel to the long axis of the forearm without undue pressure on the artery during the PWD measurements. The volume gate will be positioned in the center of the arterial lumen, and the size of the gate will be 1/3 lumen of the artery. The angle of insonation is adjusted and maintained at 50-60 degrees. Once a desired PWD spectral waveform is achieved, the arterial hemodynamic parameters will be recorded. Phase 2 The subjects of study are patients undergoing upper extremity operation under supraclavicular brachial plexus block. All patients will be randomly assigned to receive 30ml ropivacaine in concentrations of 0.125%, 0.2%, 0.25%, 0.375%, 0.5%, or 0.75%. Patients are randomised to the four groups by random number(generated by computer) in sealed envelopes. All nerve blocks were performed by a single dedicated anaesthetist who remains blinded to the concentration of ropivacaine. A second investigator, who is blinded to the protocol and patient allocation, will perform the measurements. Another investigator, who is not present during the conduct of the BPB and blinded to the concentration of ropivacaine used will assess each blockade. Patient are also blinded. The brachial plexus will be visualized using a high-frequency linear ultrasound transducer in the supraclavicular fossa. After skin disinfection and infiltrating with 1% lidocaine, nerve stimulation needle will be inserted using in-line technique,and advanced among the divisions of brachial plexus with electric impulses (2 Hz, 0.3mA, 0.1 ms) of nerve stimulator. If visible contraction of the innervated muscle is elicited, the needle will be withdrawn slowly until the corresponding muscle contraction disappears to avoid intrafascicular puncture. The local anesthetic will be injected at three locations: adjacent to the superficial divisions of the plexus, adjacent to the middle divisions and inferior divisions. The proportion of the volume injected in each area is at the discretion of the expert operator according to the spread of local anesthetic. The efficacy of the block will be assessed by pinprick sensation (22 G needle) and compared with the opposite arm/hand for normal, hypoesthesia or no sensation. For patients with an ineffective block, supplementary local anesthesia will be administered according to the distribution of the block and site of surgery after measurement. If the patient experienced any pain during surgery, supplementary analgesia, sedation, or general anesthesia will be administered as required. Patient's arm is in supination. The brachial artery will be located in 2 cm proximal to the antecubital fossa. Hemodynamic Parameters will be measured by Pulsed-wave Doppler(PWD) ultrasound. The probe will be parallel the long axis of the arm without undue pressure on the artery during the PWD measurements. The volume gate will be positioned in the center of the arterial lumen, and the size of the gate will be 1/3 lumen of the artery. The angle of insonation will be adjusted and maintained at 50-60 degrees. Once a desired PWD spectral waveform is achieved, the arterial hemodynamic parameters will be recorded. The cross-sectional area (CSA) of the artery will be assessed with B-mode imaging. Probe should be as perpendicular as possible to the long axis of the artery to obtain as round an arterial section as possible. The image at end diastole will be chosen and measured with the cine loop.

Interventions

PROCEDUREspecific nerve block

specific nerve blocks of the musculocutaneous, radial, ulnar, or median nerves at axillary region

DRUGropivacaine

Different concentration of ropivacaine

Sponsors

Health and Family Planning Commission of Zhejiang Province, China
CollaboratorUNKNOWN
Wenzhou Medical University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
DOUBLE (Subject, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 70 Years
Healthy volunteers
No

Inclusion criteria

* American Society of Anesthesiologist physical status I-III patients * aged 18-70 yr * weighing 40-80 kg

Exclusion criteria

* infection at the site of needle insertion * coagulopathy * international normalized ratio \>1.4 * platelet count \<80×109 litre-1 * allergy to local anaesthetics * peripheral neurological disease * peripheral vascular disease * patients do not agree to sign the informed consent.

Design outcomes

Primary

MeasureTime frameDescription
Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)baseline(t0), 30 min after specific nerve block(t1), 30 min after brachial plexus block(t2)These parameters included peak systolic velocity (PSV, cm/s), end-diastolic velocity (EDV, cm/s), time average maximum velocity (TAMAX),and was measured by Pulsed-wave Doppler(PWD) ultrasound.
Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)baseline, 30 min after brachial plexus blockThese parameters included peak systolic velocity (PSV, cm/s), end-diastolic velocity (EDV, cm/s), time average maximum velocity (TAMAX), resistance index (RI), and pulsatility index (PI),The cross-sectional area of the artery imaging.Blood flow (BF) = TAMAX× CSA×60s. Relative ratio of hemodymanic parameter=30 min after brachial plexus block divide by baseline
Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)baseline(t0), 30 min after specific nerve block(t1), 30 min after brachial plexus block(t2)The cross-sectional area(CSA, cm2) of Radial/ulnar Artery was assessed with B-mode imaging. Probe was kept perpendicular to the long axis of the artery to obtain the largest oval arterial section. The image at end diastole was chosen and measured with the cine loop.

Secondary

MeasureTime frameDescription
Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)baseline, 30 min after specific nerve block, 30 min after brachial plexus blockSkin temperature(Ts) was measured at four different points within the cutaneous innervation areas of the musculocutaneous(lateral skin of forearm), ulnar(hypothenar region), radial (thumb-index web) and median(thenar) Specific points were located with skin marker to provide consistency of measurement.
Success of Brachial Plexus Block ( Phase 2)30 min after brachial plexus blockSuccess of Brachial Plexus Block(BPB) was defined as the absence of sensation to in all innervation areas of above four nerves (musculocutaneous, ulnar, radial, and median nerves) 30min. after the BPB and no pain during the surgery.
Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)Baseline,30 min after brachial plexus blockSkin temperature was measured at the thenar. change= 30min after brachial plexus block minus baseline

Countries

China

Participant flow

Participants by arm

ArmCount
Group MC(Phase 1)
specific nerve block:musculocutaneous nerve block specific nerve block: specific nerve blocks of the musculocutaneous, radial, ulnar, or median nerves at axillary region
8
Group UL( Phase 1)
specific nerve block:ulnar nerve block specific nerve block: specific nerve blocks of the musculocutaneous, radial, ulnar, or median nerves at axillary region
8
Group RA (Phase 1)
specific nerve block:radial nerve block specific nerve block: specific nerve blocks of the musculocutaneous, radial, ulnar, or median nerves at axillary region
8
Group ME (Phase 1)
specific nerve block:median nerve block specific nerve block: specific nerve blocks of the musculocutaneous, radial, ulnar, or median nerves at axillary region
8
Group A(Phase 2)
30ml ropivacaine 0.125% ropivacaine: Different concentration of ropivacaine
13
Group B(Phase 2)
30ml ropivacaine 0.2% ropivacaine: Different concentration of ropivacaine
13
Group C(Phase 2)
30ml ropivacaine 0.25% ropivacaine: Different concentration of ropivacaine
13
Group D(Phase 2)
30ml ropivacaine 0.375% ropivacaine: Different concentration of ropivacaine
13
Group E(Phase 2)
30ml ropivacaine 0.5% ropivacaine: Different concentration of ropivacaine
13
Group F(Phase 2)
30ml ropivacaine 0.75% ropivacaine: Different concentration of ropivacaine
13
Total110

Withdrawals & dropouts

PeriodReasonFG000FG001FG002FG003FG004FG005FG006FG007FG008FG009
Overall StudyLack of Efficacy0101000000

Baseline characteristics

CharacteristicGroup MC(Phase 1)Group UL( Phase 1)Group RA (Phase 1)Group ME (Phase 1)Group A(Phase 2)Group B(Phase 2)Group C(Phase 2)Group D(Phase 2)Group E(Phase 2)Group F(Phase 2)Total
Age, Continuous41 years
STANDARD_DEVIATION 13
31 years
STANDARD_DEVIATION 7
42 years
STANDARD_DEVIATION 19
38 years
STANDARD_DEVIATION 17
31 years
STANDARD_DEVIATION 10
36 years
STANDARD_DEVIATION 14
41 years
STANDARD_DEVIATION 13
34 years
STANDARD_DEVIATION 12
42 years
STANDARD_DEVIATION 15
46 years
STANDARD_DEVIATION 18
39 years
STANDARD_DEVIATION 15
Region of Enrollment
China
8 participants8 participants8 participants8 participants13 participants13 participants13 participants13 participants13 participants13 participants110 participants
Sex: Female, Male
Female
3 Participants3 Participants4 Participants3 Participants8 Participants5 Participants6 Participants5 Participants3 Participants4 Participants44 Participants
Sex: Female, Male
Male
5 Participants5 Participants4 Participants5 Participants5 Participants8 Participants7 Participants8 Participants10 Participants9 Participants66 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
EG004
affected / at risk
EG005
affected / at risk
EG006
affected / at risk
EG007
affected / at risk
EG008
affected / at risk
EG009
affected / at risk
deaths
Total, all-cause mortality
— / —— / —— / —— / —— / —— / —— / —— / —— / —— / —
other
Total, other adverse events
0 / 00 / 00 / 00 / 00 / 00 / 00 / 00 / 00 / 00 / 0
serious
Total, serious adverse events
0 / 00 / 00 / 00 / 00 / 00 / 00 / 00 / 00 / 00 / 0

Outcome results

Primary

Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)

The cross-sectional area(CSA, cm2) of Radial/ulnar Artery was assessed with B-mode imaging. Probe was kept perpendicular to the long axis of the artery to obtain the largest oval arterial section. The image at end diastole was chosen and measured with the cine loop.

Time frame: baseline(t0), 30 min after specific nerve block(t1), 30 min after brachial plexus block(t2)

ArmMeasureGroupValue (MEAN)Dispersion
Group MC(Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T10.039 cm^2Standard Deviation 0.018
Group MC(Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T00.051 cm^2Standard Deviation 0.008
Group MC(Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T20.061 cm^2Standard Deviation 0.022
Group MC(Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T20.073 cm^2Standard Deviation 0.014
Group MC(Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T10.053 cm^2Standard Deviation 0.005
Group MC(Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T00.039 cm^2Standard Deviation 0.019
Group UL( Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T10.053 cm^2Standard Deviation 0.005
Group UL( Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T10.059 cm^2Standard Deviation 0.016
Group UL( Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T20.061 cm^2Standard Deviation 0.015
Group UL( Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T00.051 cm^2Standard Deviation 0.009
Group UL( Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T20.074 cm^2Standard Deviation 0.014
Group UL( Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T00.039 cm^2Standard Deviation 0.011
Group RA (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T00.040 cm^2Standard Deviation 0.015
Group RA (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T10.044 cm^2Standard Deviation 0.018
Group RA (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T20.061 cm^2Standard Deviation 0.014
Group RA (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T00.043 cm^2Standard Deviation 0.014
Group RA (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T10.044 cm^2Standard Deviation 0.011
Group RA (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T20.068 cm^2Standard Deviation 0.013
Group ME (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T20.073 cm^2Standard Deviation 0.014
Group ME (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T00.050 cm^2Standard Deviation 0.013
Group ME (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T10.069 cm^2Standard Deviation 0.013
Group ME (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CSA of radial artery T00.051 cm^2Standard Deviation 0.012
Group ME (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T20.069 cm^2Standard Deviation 0.018
Group ME (Phase 1)Changes in Cross-sectional Area of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)CAS of ulnar artery T10.056 cm^2Standard Deviation 0.014
Primary

Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)

These parameters included peak systolic velocity (PSV, cm/s), end-diastolic velocity (EDV, cm/s), time average maximum velocity (TAMAX), resistance index (RI), and pulsatility index (PI),The cross-sectional area of the artery imaging.Blood flow (BF) = TAMAX× CSA×60s. Relative ratio of hemodymanic parameter=30 min after brachial plexus block divide by baseline

Time frame: baseline, 30 min after brachial plexus block

ArmMeasureGroupValue (MEDIAN)
Group MC(Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of BF1.40 ratio
Group MC(Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)relative ratio of PSV1.031371 ratio
Group MC(Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of TAMAX1.21 ratio
Group MC(Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of PI0.75 ratio
Group MC(Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of RI0.91 ratio
Group UL( Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of TAMAX1.56 ratio
Group UL( Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)relative ratio of PSV1.15 ratio
Group UL( Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of RI0.87 ratio
Group UL( Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of BF1.87 ratio
Group UL( Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of PI0.61 ratio
Group RA (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of RI0.85 ratio
Group RA (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of TAMAX1.84 ratio
Group RA (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of PI0.53 ratio
Group RA (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of BF2.10 ratio
Group RA (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)relative ratio of PSV1.19 ratio
Group ME (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of RI0.84 ratio
Group ME (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of PI0.47 ratio
Group ME (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of TAMAX2.09 ratio
Group ME (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)relative ratio of PSV1.19 ratio
Group ME (Phase 1)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of BF2.54 ratio
Group E(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of BF3.18 ratio
Group E(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of PI0.44 ratio
Group E(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of RI0.81 ratio
Group E(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of TAMAX2.34 ratio
Group E(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)relative ratio of PSV1.29 ratio
Group F(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of RI0.82 ratio
Group F(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)relative ratio of PSV1.43 ratio
Group F(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of TAMAX2.57 ratio
Group F(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of BF3.53 ratio
Group F(Phase 2)Changes in Hemodynamic Parameters of Brachial Artery From Baseline to 30min After Brachial Plexus Block(Phase 2)Relative ratio of PI0.43 ratio
Primary

Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)

These parameters included peak systolic velocity (PSV, cm/s), end-diastolic velocity (EDV, cm/s), time average maximum velocity (TAMAX),and was measured by Pulsed-wave Doppler(PWD) ultrasound.

Time frame: baseline(t0), 30 min after specific nerve block(t1), 30 min after brachial plexus block(t2)

ArmMeasureGroupValue (MEAN)Dispersion
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T040.9 cm/sStandard Deviation 12.2
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T219.6 cm/sStandard Deviation 7.9
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T15.1 cm/sStandard Deviation 2.9
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T042.5 cm/sStandard Deviation 12.9
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T256.9 cm/sStandard Deviation 9.8
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T05.9 cm/sStandard Deviation 3.3
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T010.2 cm/sStandard Deviation 6.6
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T13.6 cm/sStandard Deviation 4.1
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T140.2 cm/sStandard Deviation 11.6
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T03.4 cm/sStandard Deviation 4.3
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T258.0 cm/sStandard Deviation 7.2
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T219.4 cm/sStandard Deviation 3.7
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T227.8 cm/sStandard Deviation 8
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T110.4 cm/sStandard Deviation 6.2
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T140.7 cm/sStandard Deviation 13.1
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T110.9 cm/sStandard Deviation 4.8
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T011.2 cm/sStandard Deviation 6
Group MC(Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T232.0 cm/sStandard Deviation 7.1
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T231.0 cm/sStandard Deviation 9.2
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T039.6 cm/sStandard Deviation 7.6
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T140.9 cm/sStandard Deviation 9.4
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T15.7 cm/sStandard Deviation 3.3
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T111.2 cm/sStandard Deviation 4.6
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T268.7 cm/sStandard Deviation 17.4
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T07.9 cm/sStandard Deviation 5
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T121.6 cm/sStandard Deviation 9.3
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T226.9 cm/sStandard Deviation 9.7
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T014.9 cm/sStandard Deviation 7.3
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T129.9 cm/sStandard Deviation 12.1
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T236.8 cm/sStandard Deviation 14.2
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T260.1 cm/sStandard Deviation 16.2
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T05.8 cm/sStandard Deviation 3.3
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T220.4 cm/sStandard Deviation 6.1
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T011.4 cm/sStandard Deviation 4.2
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T045.8 cm/sStandard Deviation 12.5
Group UL( Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T160.5 cm/sStandard Deviation 13.2
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T230.5 cm/sStandard Deviation 9
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T06.0 cm/sStandard Deviation 2.1
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T051.1 cm/sStandard Deviation 14.6
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T153.9 cm/sStandard Deviation 15.8
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T221.1 cm/sStandard Deviation 8
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T114.0 cm/sStandard Deviation 5.2
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T014.0 cm/sStandard Deviation 4.8
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T268.4 cm/sStandard Deviation 12.2
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T150.5 cm/sStandard Deviation 21.5
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T06.0 cm/sStandard Deviation 2.6
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T047.6 cm/sStandard Deviation 18.6
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T269.6 cm/sStandard Deviation 13.6
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T16.2 cm/sStandard Deviation 3
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T118.4 cm/sStandard Deviation 7.8
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T233.3 cm/sStandard Deviation 9.7
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T013.1 cm/sStandard Deviation 4.8
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T218.8 cm/sStandard Deviation 7.4
Group RA (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T19.3 cm/sStandard Deviation 5.1
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T220.2 cm/sStandard Deviation 9.5
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T011.1 cm/sStandard Deviation 6.5
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T111.9 cm/sStandard Deviation 6.9
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T011.5 cm/sStandard Deviation 7
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T043.9 cm/sStandard Deviation 13.5
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of ulnar artery T229.0 cm/sStandard Deviation 9.8
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T152.4 cm/sStandard Deviation 9.8
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T116.1 cm/sStandard Deviation 5.3
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T042.6 cm/sStandard Deviation 10.9
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of radial artery T258.5 cm/sStandard Deviation 6.6
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T05.3 cm/sStandard Deviation 4.5
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T05.5 cm/sStandard Deviation 5.3
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of radial artery T218.0 cm/sStandard Deviation 4.1
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T262.8 cm/sStandard Deviation 11.1
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T229.7 cm/sStandard Deviation 5.5
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)PSV of ulnar artery T145.1 cm/sStandard Deviation 11.6
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)EDV of ulnar artery T17.4 cm/sStandard Deviation 6.9
Group ME (Phase 1)Changes in Hemodynamic Parameters of Radial/Ulnar Artery From Baseline to 30min After Specific Nerve Block Followed by 30min After Brachial Plexus Block(Phase 1)TAMAX of radial artery T124.8 cm/sStandard Deviation 9.4
Secondary

Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)

Skin temperature was measured at the thenar. change= 30min after brachial plexus block minus baseline

Time frame: Baseline,30 min after brachial plexus block

ArmMeasureValue (MEAN)Dispersion
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)1.18Standard Deviation 0.68
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)1.91Standard Deviation 0.81
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)2.27Standard Deviation 0.84
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)2.32Standard Deviation 0.92
Group E(Phase 2)Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)2.44Standard Deviation 1.06
Group F(Phase 2)Changes in Skin Temperature From Baseline to 30min After Brachial Plexus Block(Phase 2)2.43Standard Deviation 1.1
Secondary

Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)

Skin temperature(Ts) was measured at four different points within the cutaneous innervation areas of the musculocutaneous(lateral skin of forearm), ulnar(hypothenar region), radial (thumb-index web) and median(thenar) Specific points were located with skin marker to provide consistency of measurement.

Time frame: baseline, 30 min after specific nerve block, 30 min after brachial plexus block

ArmMeasureGroupValue (MEAN)Dispersion
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t030.0Standard Deviation 0.8
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t129.0Standard Deviation 1.7
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t130.5Standard Deviation 1.3
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t232.4Standard Deviation 1.4
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t232.6Standard Deviation 1
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t231.3Standard Deviation 0.6
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t028.9Standard Deviation 1.7
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t029.1Standard Deviation 1.3
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t129.9Standard Deviation 0.8
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t231.9Standard Deviation 1.3
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t129.0Standard Deviation 1.2
Group MC(Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t030.5Standard Deviation 1.3
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t232.6Standard Deviation 0.6
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t030.1Standard Deviation 0.8
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t029.8Standard Deviation 0.8
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t130.5Standard Deviation 1.3
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t130.1Standard Deviation 1.3
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t030.0Standard Deviation 1.3
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t030.5Standard Deviation 1.6
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t233.2Standard Deviation 1.1
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t132.4Standard Deviation 0.6
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t231.1Standard Deviation 0.9
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t232.7Standard Deviation 1.2
Group UL( Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t130.0Standard Deviation 0.9
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t029.5Standard Deviation 1.5
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t030.2Standard Deviation 0.9
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t130.1Standard Deviation 1
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t233.4Standard Deviation 1
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t029.5Standard Deviation 1.1
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t129.6Standard Deviation 1.1
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t232.6Standard Deviation 1.3
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t129.7Standard Deviation 1.6
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t232.2Standard Deviation 1.1
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t029.5Standard Deviation 1.6
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t129.5Standard Deviation 1.4
Group RA (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t232.0Standard Deviation 1.3
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t029.8Standard Deviation 0.9
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t030.1Standard Deviation 0.7
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t232.9Standard Deviation 0.6
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t233.7Standard Deviation 0.7
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts ME t133.3Standard Deviation 0.8
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t129.8Standard Deviation 1
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts UL t029.7Standard Deviation 0.9
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t233.7Standard Deviation 0.9
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t130.4Standard Deviation 0.6
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t233.9Standard Deviation 1
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts RA t132.7Standard Deviation 1
Group ME (Phase 1)Changes in Skin Temperature From Baseline to 30 Min After Specific Nerve Block Followed by 30 Min After Brachial Plexus Block(Phase 1)Ts MC t030.0Standard Deviation 0.7
Secondary

Success of Brachial Plexus Block ( Phase 2)

Success of Brachial Plexus Block(BPB) was defined as the absence of sensation to in all innervation areas of above four nerves (musculocutaneous, ulnar, radial, and median nerves) 30min. after the BPB and no pain during the surgery.

Time frame: 30 min after brachial plexus block

ArmMeasureValue (NUMBER)
Group MC(Phase 1)Success of Brachial Plexus Block ( Phase 2)1 participants
Group UL( Phase 1)Success of Brachial Plexus Block ( Phase 2)9 participants
Group RA (Phase 1)Success of Brachial Plexus Block ( Phase 2)11 participants
Group ME (Phase 1)Success of Brachial Plexus Block ( Phase 2)12 participants
Group E(Phase 2)Success of Brachial Plexus Block ( Phase 2)13 participants
Group F(Phase 2)Success of Brachial Plexus Block ( Phase 2)13 participants

Source: ClinicalTrials.gov · Data processed: Mar 2, 2026