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Testing of a Valsalva Assist Device (VAD) in Healthy Volunteers Performing a Valsalva Manoeuvre

Testing of a Valsalva Assist Device (VAD) to Assess Effects on Vagal Tone and Strain Pressures Achieved Compared to a Standard Manometer in Healthy Volunteers Performing Standard and Modified Valsalva Manoeuvres.

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03298880
Enrollment
75
Registered
2017-10-02
Start date
2017-11-01
Completion date
2018-02-05
Last updated
2021-06-10

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

Conditions

SVT, Vagal Bradycardia

Keywords

Valsalva manoeuvre, Vagal tone, Modified Valsalva, Valsalva Assist Device

Brief summary

A prototype for a Valsalva Assist Device (VAD), which provides resistance to exhalation, has been developed and is ready for testing in healthy volunteers. There is a need to ensure the device can deliver the required strain and evaluate the physiological response (lowered heart rate) when used to deliver a Valsalva manoeuvre (VM) with and without postural modification.

Detailed description

The aim of this study is to evaluate the performance of a novel Valsalva assist device (VAD) in healthy volunteer and to confirm the physiological effects of a modified VM. Specific Objectives: To measure and compare peak strain pressure and duration produced using the device compared to a standard manometer in supine and modified postures To evaluate whether there is a difference in vagal tone (drop in heart rate) in healthy volunteers performing a VM using the VAD versus manometer. To evaluate whether there is a difference in vagal tone (drop in heart rate) in healthy volunteers performing a modified VM versus a standard supine VM using the VAD. To evaluate whether there is a difference in vagal tone (drop in heart rate) in healthy volunteers performing a modified VM versus a standard supine VM using a manometer. The investigators will conduct a single centre repeated measures observational study of use of the device to generate a Valsalva strain in a sample of healthy adult volunteers from the University of Exeter or RD&E Hospital staff. All participants will be screened for eligibility and undergo informed written consent prior to participation. If participants fail screening due to abnormal clinical readings or vital signs, the chief investigator will review them, any urgent abnormalities (very unlikely) would be reviewed by the chief investigator or delegated emergency department doctor as soon as they are discovered. Depending on the severity, if treatment is required urgently then they will be treated in the emergency department. Otherwise, they will be referred back to their GP. Potential participants will be given written information about the study at least 24 hours prior to recruitment and interested individuals invited to attend screening, recruitment and testing. Potential participants will be invited to express an interest in taking part by responding to the trial poster. These posters will be displayed in the medical student common rooms ED department notice board. The potential participant contacts the researcher leading the practical aspects of the trial by phone or email. Respondents will be asked how they would like to receive further information (post, email, and phone) and offered an appointment at the Clinical Research Facility (CRF) for screening and written consent if eligible, at their convenience but at least 24 hours after receiving the information sheet. Given the simple, safe and quick nature of the interventions, participants will be given the choice to take part after written consent or to return on another date, whichever they would prefer, to ensure minimal visits whilst giving participants further time to consider taking part should they wish. The VM is an extremely safe, physiological manoeuvre which is used in everyday life (eg straining at stool) and has been used in trial conditions and clinical practice many thousands of times with no serious adverse events. The investigators will exclude participants who could conceivably be at any risk of harm from performing a VM or from the use of the device. The screening will include 12 lead ECG and physical examination including observations of heart rate, oxygen saturations, respiratory rate and blood pressure. Any participants with any detected abnormalities, whether they are excluded from participation or not, will be informed and referred to their primary care physician as appropriate. All testing will be conducted in the clinical research facility (CRF) of the Royal Devon & Exeter Hospital, according to a strict trial protocol. Test Valsalva Manoeuvres: Participants will undergo a total of 4 VMs of the following 4 variations in random order, stratified by method of strain generation to ensure balance between the order of manometer and device use: 1. Supine VM using a manometer. Supine Valsalva strain using a manometer visible to the participant with a target of 40mmHg for 15 seconds 2. Supine VM using the device. Supine Valsalva strain using the device connected to manometer invisible to the participant but visible to a researcher for 15 seconds 3. Modified VM using a manometer. Semi-recumbent (at 45 degrees) Valsalva stain using a manometer visible to the participant with a target of 40mmHg for 15 seconds followed by supine positioning and passive 45-degree leg lift immediately at the end of the strain for a further 15 seconds (the modified VM) 4. Modified VM using the device. Semi-recumbent (at 45 degrees) Valsalva strain using the device connected to manometer invisible to the participant but visible to a researcher for 15 seconds followed by supine positioning and passive 45-degree leg lift immediately at the end of the strain for a further 15 seconds (the modified VM)

Interventions

DEVICESupine VM VAD

Valsalva strain delivered using VAD

DEVICESupine VAD manometer

supine Valsalva strain delivered using manometer

OTHERModified VM VAD

modified VM using VAD

OTHERModified VM Manonmeter

Postural modified position VM using manometer

Sponsors

Royal Devon and Exeter NHS Foundation Trust
CollaboratorOTHER
University of Exeter
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SEQUENTIAL
Primary purpose
OTHER
Masking
NONE

Masking description

Participants will not be able see manometer when using VAD Analysis of ECG traces will be blind to intervention as traces will be marked with a code, interventions carried out in random order and analysed in batches

Intervention model description

Four repeated measures in each participant in random order

Eligibility

Sex/Gender
ALL
Age
18 Years to 60 Years
Healthy volunteers
Yes

Inclusion criteria

* Adult Volunteers between 18 and 60 years old from University of Exeter or RD&E Hospital staff * Sinus rhythm on initial ECG * Self-reported good health

Exclusion criteria

* Any regular medication other than the oral contraceptive * Previous cardiovascular or respiratory disease * Any contraindication to performing a VM strain. (Eg. Known aortic stenosis, recent myocardial infarction, glaucoma, retinopathy) * Pregnancy * Any ECG abnormality * Any contra-indication to postural modification (any reason the participant can't lie flat and have both legs lifted to 45 degrees, eg prosthetic hip * Inability or refusal to give written consent to take part * Observations of heart rate, oxygen saturations, respiratory rate or blood pressure outside the normal range. Specifically blood pressure less than 100 systolic * Caffeinated drinks within 6 hours prior to testing * The use of stimulant drugs or alcohol within 24 hours prior to testing

Design outcomes

Primary

MeasureTime frameDescription
Assessing Heart Rate During the Supine and Modified VM and Assessing Heart Rate While Using the VAD and Manometer3 minutes (4 repetitions of 45 seconds)Assessing the effects on heart rate of a supine valsalva manoeuvre compared to the modified Valsalva manoeuvres in healthy volunteers.The investigators will measure the longest RR (length between each r wave) length in mm during the 15 seconds during the manoeuvre and the 15 seconds afterwards on an 3 lead ECG trace. The investigators will measure pre strain heart rate using the 15 seconds of baseline heart rate before the maneouvre on the 3 lead ECG. Using an average of the RR length(mm). The heart rate in beats per minute will then be worked out using a calculation from the RR length. RR length (mm) x0.04 = RR in seconds. (10/RR in seconds)x60 = beats per minute. These arms are combined so as to make the data easier to understand. The higher the number the better the outcome. maximum score is minimum score is 25.9 with maximum 33.6

Secondary

MeasureTime frameDescription
Percentage of Participants Who Acheived a 15 Second Strain Duration During a VM Comparing a Valsalva Assist Device and a Standard Manometer1 minute (4 repetitions of 15 seconds)The investigators measured the time each Valsalva manoeuvre managed to keep to a 15-second drain if they managed 15 seconds at a pressure of 35-45mmHg this would count as an achieved strain.
Peak Sustained Pressure Testing of a Valsalva Assist Device (VAD) Compared to the Standard Manometer15 seconds (4 repetitions of 15 seconds)The investigators will measure the highest pressure achieved for more than a second using a manometer in mmHg and compare these done with the VAD and the manometer

Countries

United Kingdom

Participant flow

Participants by arm

ArmCount
Four VM's
Healthy volunteers undergo repeated VM's - Device: Supine VM VAD, Supine VAD manometer Modified VM VAD, Modified VM Manonmeter Supine VM VAD: Valsalva strain delivered using VAD Supine VAD manometer: supine Valsalva strain delivered using manometer Modified VM VAD: modified VM using VAD Modified VM Manonmeter: Postural modified position VM using manometer
75
Total75

Baseline characteristics

CharacteristicFour VM's
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
0 Participants
Age, Categorical
Between 18 and 65 years
75 Participants
Age, Continuous26.19 years
Race and Ethnicity Not Collected— Participants
Region of Enrollment
United Kingdom
75 participants
Sex: Female, Male
Female
45 Participants
Sex: Female, Male
Male
30 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
0 / 75
other
Total, other adverse events
17 / 75
serious
Total, serious adverse events
0 / 75

Outcome results

Primary

Assessing Heart Rate During the Supine and Modified VM and Assessing Heart Rate While Using the VAD and Manometer

Assessing the effects on heart rate of a supine valsalva manoeuvre compared to the modified Valsalva manoeuvres in healthy volunteers.The investigators will measure the longest RR (length between each r wave) length in mm during the 15 seconds during the manoeuvre and the 15 seconds afterwards on an 3 lead ECG trace. The investigators will measure pre strain heart rate using the 15 seconds of baseline heart rate before the maneouvre on the 3 lead ECG. Using an average of the RR length(mm). The heart rate in beats per minute will then be worked out using a calculation from the RR length. RR length (mm) x0.04 = RR in seconds. (10/RR in seconds)x60 = beats per minute. These arms are combined so as to make the data easier to understand. The higher the number the better the outcome. maximum score is minimum score is 25.9 with maximum 33.6

Time frame: 3 minutes (4 repetitions of 45 seconds)

ArmMeasureValue (MEAN)
Mean Drop in Heart Rate Using the Modified VMAssessing Heart Rate During the Supine and Modified VM and Assessing Heart Rate While Using the VAD and Manometer33.6 beat per minute
Mean Drop in Heart Rate of Supine VMAssessing Heart Rate During the Supine and Modified VM and Assessing Heart Rate While Using the VAD and Manometer25.9 beat per minute
Mean Drop in Heart Rate Using VADAssessing Heart Rate During the Supine and Modified VM and Assessing Heart Rate While Using the VAD and Manometer28.7 beat per minute
Mean Drop in Heart Rate From Using the ManometerAssessing Heart Rate During the Supine and Modified VM and Assessing Heart Rate While Using the VAD and Manometer30.8 beat per minute
p-value: <0.00195% CI: [2.1, 5.3]mixed linear regression
p-value: 0.00395% CI: [0.8, 3.8]mixed linear regression
Secondary

Peak Sustained Pressure Testing of a Valsalva Assist Device (VAD) Compared to the Standard Manometer

The investigators will measure the highest pressure achieved for more than a second using a manometer in mmHg and compare these done with the VAD and the manometer

Time frame: 15 seconds (4 repetitions of 15 seconds)

ArmMeasureValue (MEAN)
Mean Drop in Heart Rate Using the Modified VMPeak Sustained Pressure Testing of a Valsalva Assist Device (VAD) Compared to the Standard Manometer42.46 mean (mmHg) of peak pressures acheived
Mean Drop in Heart Rate of Supine VMPeak Sustained Pressure Testing of a Valsalva Assist Device (VAD) Compared to the Standard Manometer39.96 mean (mmHg) of peak pressures acheived
Secondary

Percentage of Participants Who Acheived a 15 Second Strain Duration During a VM Comparing a Valsalva Assist Device and a Standard Manometer

The investigators measured the time each Valsalva manoeuvre managed to keep to a 15-second drain if they managed 15 seconds at a pressure of 35-45mmHg this would count as an achieved strain.

Time frame: 1 minute (4 repetitions of 15 seconds)

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Mean Drop in Heart Rate Using the Modified VMPercentage of Participants Who Acheived a 15 Second Strain Duration During a VM Comparing a Valsalva Assist Device and a Standard Manometer56 Participants
Mean Drop in Heart Rate of Supine VMPercentage of Participants Who Acheived a 15 Second Strain Duration During a VM Comparing a Valsalva Assist Device and a Standard Manometer73 Participants

Source: ClinicalTrials.gov · Data processed: Feb 25, 2026