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Intraoperative Electromyographic Monitoring of the Recurrent Laryngeal Nerve in Thyroid Surgery

Intraoperative Electromyographic Monitoring of the Recurrent Laryngeal Nerve in Thyroid Surgery

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00629746
Enrollment
1000
Registered
2008-03-06
Start date
2006-06-30
Completion date
2012-12-31
Last updated
2010-09-08

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

Conditions

Electromyographic Monitoring, Recurrent Laryngeal Nerve, Thyroid Surgery

Keywords

Thyroid, RLN, EMG

Brief summary

The purpose of this study will explore the advantages of electrodes used for monitoring of the recurrent laryngeal nerve (RLN) in thyroid surgery

Detailed description

OBJECTIVES/HYPOTHESIS: The purpose of this study will explore the advantages and applications of electrodes used for monitoring of the recurrent laryngeal nerve (RLN) in thyroid surgery. We want to know that if the monitoring system will decrease the rate of recurrent laryngeal nerve palsy. STUDY DESIGN: One hundred patients who undergoing thyroid surgery will be collected in this study. Patients will be intubated for general anesthesia with a Medtronic Xomed Nerve Integrity Monitor (NIM) EMG endotracheal tube (Jacksonville, Fla) that had 2 electrodes imbedded in the wall of the endotracheal tube. These wires were placed up against each vocal cord. Two grounding wires(needle No. 26) were placed up in the subcutaneous tissues of both shoulders. The electrode wires, grounding wires, and nerve stimulator were connected to a monitoring device (Medtronic NIM-Response) that recoded a visual evoked potential and audible beep to each muscle contraction of a vocal cord. A Medtronic Xomed Prass monopolar nerve stimulator wand was used to test the RLN intraoperatively and was set at 0.5mA. Direct physical touching of the RLN with nerve stimulator using pulsed current would produce an audible beep-beep-beep. CONCLUSION: This study will be conducted in cooperation with Department of anesthesiology. The following subjects will be collected and elucidated: 1. If the muscle relaxant used during surgery will affect the operation of RLN monitoring system. 2. Can RLN monitoring system accurately identify the RLN 3. Can RLN monitoring system accurately predict the function of RLN 4. Can RLN monitoring system decrease the RLN palsy rate after thyroidectomy 5. Application of RLN monitoring to determine the safety and the benefit of vagal stimulation at the beginning and the end of thyroid operation 6. Application of RLN monitoring to determine whether extensive dissection of RLN increases the risk of nerve injury. At least four papers will be written after this study with the topics as followings: 1. Influence of muscle relaxation on neuromonitoring of the recurrent laryngeal nerve during thyroid surgery 2. Intraoperative neuromonitoring of the recurrent laryngeal nerve during thyroid surgery: Plaudits and pitfalls 3. Vagal stimulation during intraoperative neuromonitoring of the recurrent laryngeal nerve in thyroid operation. 4\. Does extensive dissection of recurrent laryngeal nerve during thyroid operation increase the risk of nerve injury? Our experience with the application of intraoperative neuromonitoring

Interventions

DEVICEMedtronic Xomed Nerve Integrity Monitor (NIM)

patients receive surgery will be intubated with Medtronic Xomed NIM EMG endotracheal tube and the device will be connected to the monitoring system 1. The channel leads from the NIM EMG reinforced endotracheal tube were connected to a NIM-response monitor 2. A Prass monopolar probe was used in direct contact with the vagus nerve and RLN for laryngeal nerve stimulation. 3. The stimuli were generated from the NIM-Response monitor for vagal and RLN stimulation. 4. The NIM-response monitor was set to run with a 50 millisecond time window and an amplitude scale at 0.2 mV/division. Event capture was activated with a threshold at 100 μV. Peak to peak amplitudes of evoked EMG activities were directly read on the monitor screen.

Sponsors

Kaohsiung Medical University Chung-Ho Memorial Hospital
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
SINGLE_GROUP
Primary purpose
PREVENTION
Masking
NONE

Eligibility

Sex/Gender
ALL
Healthy volunteers
No

Inclusion criteria

* Thyroid disease for operation

Exclusion criteria

* N/A

Design outcomes

Primary

MeasureTime frame
If the muscle relaxant used during surgery will affect the operation of RLN monitoring system.during operation

Secondary

MeasureTime frame
Can RLN monitoring system accurately predict the function of RLN Can RLN monitoring system decrease the RLN palsy rate after thyroidectomyearly postoperation period
Can standardization of IONM procedures further lower the RLN palsy rateearly postoperation period
Dose IONM help to decrease the RLN palsy rate during difficult thyroid operationsearly postoperation period

Countries

Taiwan

Contacts

Primary ContactFeng-Yu Chiang, M.D.
kmuent@yahoo.com.tw886-7-3121101

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026