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Neuroanesthesia Guidelines for Optimizing Transcranial Motor Evoked Potential Neuromonitoring During Deformity and Complex Spinal Surgery: A Delphi Consensus Study

STUDY DESIGN.Expert opinion—modified Delphi study. OBJECTIVE.We used a modified Delphi approach to obtain consensus among leading spinal deformity surgeons and their neuroanesthesiology teams regarding optimal practices for obtaining reliable motor evoked potential (MEP) signals. SUMMARY OF BACKGROU...

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Published in:Spine (Philadelphia, Pa. 1976) Pa. 1976), 2020-07, Vol.45 (13), p.911-920
Main Authors: Walker, Corey T., Kim, Han Jo, Park, Paul, Lenke, Lawrence G., Weller, Mark A., Smith, Justin S., Nemergut, Edward C., Sciubba, Daniel M., Wang, Michael Y., Shaffrey, Christopher, Deviren, Vedat, Mummaneni, Praveen V., Chang, Joyce M., Mummaneni, Valli P., Than, Khoi D., Berjano, Pedro, Eastlack, Robert K., Mundis, Gregory M., Kanter, Adam S., Okonkwo, David O., Shin, John H., Lewis, Jason M., Koski, Tyler, Hoh, Daniel J., Glassman, Steven D., Vinci, Susan B., Daniels, Alan H., Clavijo, Claudia F., Turner, Jay D., McLawhorn, Marc, Uribe, Juan S.
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container_end_page 920
container_issue 13
container_start_page 911
container_title Spine (Philadelphia, Pa. 1976)
container_volume 45
creator Walker, Corey T.
Kim, Han Jo
Park, Paul
Lenke, Lawrence G.
Weller, Mark A.
Smith, Justin S.
Nemergut, Edward C.
Sciubba, Daniel M.
Wang, Michael Y.
Shaffrey, Christopher
Deviren, Vedat
Mummaneni, Praveen V.
Chang, Joyce M.
Mummaneni, Valli P.
Than, Khoi D.
Berjano, Pedro
Eastlack, Robert K.
Mundis, Gregory M.
Kanter, Adam S.
Okonkwo, David O.
Shin, John H.
Lewis, Jason M.
Koski, Tyler
Hoh, Daniel J.
Glassman, Steven D.
Vinci, Susan B.
Daniels, Alan H.
Clavijo, Claudia F.
Turner, Jay D.
McLawhorn, Marc
Uribe, Juan S.
description STUDY DESIGN.Expert opinion—modified Delphi study. OBJECTIVE.We used a modified Delphi approach to obtain consensus among leading spinal deformity surgeons and their neuroanesthesiology teams regarding optimal practices for obtaining reliable motor evoked potential (MEP) signals. SUMMARY OF BACKGROUND DATA.Intraoperative neurophysiological monitoring of transcranial MEPs provides the best method for assessing spinal cord integrity during complex spinal surgeries. MEPs are affected by pharmacological and physiological parameters. It is the responsibility of the spine surgeon and neuroanesthesia team to understand how they can best maintain high-quality MEP signals throughout surgery. Nevertheless, varying approaches to neuroanesthesia are seen in clinical practice. METHODS.We identified 19 international expert spinal deformity treatment teams. A modified Delphi process with two rounds of surveying was performed. Greater than 50% agreement on the final statements was considered “agreement”; >75% agreement was considered “consensus.” RESULTS.Anesthesia regimens and protocols were obtained from the expert centers. There was a large amount of variability among centers. Two rounds of consensus surveying were performed, and all centers participated in both rounds of surveying. Consensus was obtained for 12 of 15 statements, and majority agreement was obtained for two of the remaining statements. Total intravenous anesthesia was identified as the preferred method of maintenance, with few centers allowing for low mean alveolar concentration of inhaled anesthetic. Most centers advocated for
doi_str_mv 10.1097/BRS.0000000000003433
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OBJECTIVE.We used a modified Delphi approach to obtain consensus among leading spinal deformity surgeons and their neuroanesthesiology teams regarding optimal practices for obtaining reliable motor evoked potential (MEP) signals. SUMMARY OF BACKGROUND DATA.Intraoperative neurophysiological monitoring of transcranial MEPs provides the best method for assessing spinal cord integrity during complex spinal surgeries. MEPs are affected by pharmacological and physiological parameters. It is the responsibility of the spine surgeon and neuroanesthesia team to understand how they can best maintain high-quality MEP signals throughout surgery. Nevertheless, varying approaches to neuroanesthesia are seen in clinical practice. METHODS.We identified 19 international expert spinal deformity treatment teams. A modified Delphi process with two rounds of surveying was performed. Greater than 50% agreement on the final statements was considered “agreement”; &gt;75% agreement was considered “consensus.” RESULTS.Anesthesia regimens and protocols were obtained from the expert centers. There was a large amount of variability among centers. Two rounds of consensus surveying were performed, and all centers participated in both rounds of surveying. Consensus was obtained for 12 of 15 statements, and majority agreement was obtained for two of the remaining statements. Total intravenous anesthesia was identified as the preferred method of maintenance, with few centers allowing for low mean alveolar concentration of inhaled anesthetic. Most centers advocated for &lt;150 μg/kg/min of propofol with titration to the lowest dose that maintains appropriate anesthesia depth based on awareness monitoring. Use of adjuvant intravenous anesthetics, including ketamine, low-dose dexmedetomidine, and lidocaine, may help to reduce propofol requirements without negatively effecting MEP signals. CONCLUSION.Spine surgeons and neuroanesthesia teams should be familiar with methods for optimizing MEPs during deformity and complex spinal cases. Although variability in practices exists, there is consensus among international spinal deformity treatment centers regarding best practices.Level of Evidence5</description><identifier>ISSN: 0362-2436</identifier><identifier>EISSN: 1528-1159</identifier><identifier>DOI: 10.1097/BRS.0000000000003433</identifier><identifier>PMID: 32539292</identifier><language>eng</language><publisher>United States: Wolters Kluwer Health, Inc. All rights reserved</publisher><subject>Anesthesia, General - methods ; Anesthesia, General - standards ; Anesthetics, Intravenous ; Consensus ; Delphi Technique ; Dexmedetomidine ; Evoked Potentials, Motor - drug effects ; Humans ; Intraoperative Neurophysiological Monitoring - standards ; Ketamine ; Lidocaine ; Neurosurgical Procedures ; Practice Guidelines as Topic ; Propofol ; Spinal Cord - drug effects ; Spinal Curvatures - surgery</subject><ispartof>Spine (Philadelphia, Pa. 1976), 2020-07, Vol.45 (13), p.911-920</ispartof><rights>Wolters Kluwer Health, Inc. All rights reserved.</rights><rights>Copyright © 2020 Wolters Kluwer Health, Inc. All rights reserved.</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><cites>FETCH-LOGICAL-c3503-d41f461538331249115ffdc08e4b6734148ffbc1661bbf2da4341947af2330923</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,27924,27925</link.rule.ids><backlink>$$Uhttps://www.ncbi.nlm.nih.gov/pubmed/32539292$$D View this record in MEDLINE/PubMed$$Hfree_for_read</backlink></links><search><creatorcontrib>Walker, Corey T.</creatorcontrib><creatorcontrib>Kim, Han Jo</creatorcontrib><creatorcontrib>Park, Paul</creatorcontrib><creatorcontrib>Lenke, Lawrence G.</creatorcontrib><creatorcontrib>Weller, Mark A.</creatorcontrib><creatorcontrib>Smith, Justin S.</creatorcontrib><creatorcontrib>Nemergut, Edward C.</creatorcontrib><creatorcontrib>Sciubba, Daniel M.</creatorcontrib><creatorcontrib>Wang, Michael Y.</creatorcontrib><creatorcontrib>Shaffrey, Christopher</creatorcontrib><creatorcontrib>Deviren, Vedat</creatorcontrib><creatorcontrib>Mummaneni, Praveen V.</creatorcontrib><creatorcontrib>Chang, Joyce M.</creatorcontrib><creatorcontrib>Mummaneni, Valli P.</creatorcontrib><creatorcontrib>Than, Khoi D.</creatorcontrib><creatorcontrib>Berjano, Pedro</creatorcontrib><creatorcontrib>Eastlack, Robert K.</creatorcontrib><creatorcontrib>Mundis, Gregory M.</creatorcontrib><creatorcontrib>Kanter, Adam S.</creatorcontrib><creatorcontrib>Okonkwo, David O.</creatorcontrib><creatorcontrib>Shin, John H.</creatorcontrib><creatorcontrib>Lewis, Jason M.</creatorcontrib><creatorcontrib>Koski, Tyler</creatorcontrib><creatorcontrib>Hoh, Daniel J.</creatorcontrib><creatorcontrib>Glassman, Steven D.</creatorcontrib><creatorcontrib>Vinci, Susan B.</creatorcontrib><creatorcontrib>Daniels, Alan H.</creatorcontrib><creatorcontrib>Clavijo, Claudia F.</creatorcontrib><creatorcontrib>Turner, Jay D.</creatorcontrib><creatorcontrib>McLawhorn, Marc</creatorcontrib><creatorcontrib>Uribe, Juan S.</creatorcontrib><title>Neuroanesthesia Guidelines for Optimizing Transcranial Motor Evoked Potential Neuromonitoring During Deformity and Complex Spinal Surgery: A Delphi Consensus Study</title><title>Spine (Philadelphia, Pa. 1976)</title><addtitle>Spine (Phila Pa 1976)</addtitle><description>STUDY DESIGN.Expert opinion—modified Delphi study. OBJECTIVE.We used a modified Delphi approach to obtain consensus among leading spinal deformity surgeons and their neuroanesthesiology teams regarding optimal practices for obtaining reliable motor evoked potential (MEP) signals. SUMMARY OF BACKGROUND DATA.Intraoperative neurophysiological monitoring of transcranial MEPs provides the best method for assessing spinal cord integrity during complex spinal surgeries. MEPs are affected by pharmacological and physiological parameters. It is the responsibility of the spine surgeon and neuroanesthesia team to understand how they can best maintain high-quality MEP signals throughout surgery. Nevertheless, varying approaches to neuroanesthesia are seen in clinical practice. METHODS.We identified 19 international expert spinal deformity treatment teams. A modified Delphi process with two rounds of surveying was performed. Greater than 50% agreement on the final statements was considered “agreement”; &gt;75% agreement was considered “consensus.” RESULTS.Anesthesia regimens and protocols were obtained from the expert centers. There was a large amount of variability among centers. Two rounds of consensus surveying were performed, and all centers participated in both rounds of surveying. Consensus was obtained for 12 of 15 statements, and majority agreement was obtained for two of the remaining statements. Total intravenous anesthesia was identified as the preferred method of maintenance, with few centers allowing for low mean alveolar concentration of inhaled anesthetic. Most centers advocated for &lt;150 μg/kg/min of propofol with titration to the lowest dose that maintains appropriate anesthesia depth based on awareness monitoring. Use of adjuvant intravenous anesthetics, including ketamine, low-dose dexmedetomidine, and lidocaine, may help to reduce propofol requirements without negatively effecting MEP signals. CONCLUSION.Spine surgeons and neuroanesthesia teams should be familiar with methods for optimizing MEPs during deformity and complex spinal cases. Although variability in practices exists, there is consensus among international spinal deformity treatment centers regarding best practices.Level of Evidence5</description><subject>Anesthesia, General - methods</subject><subject>Anesthesia, General - standards</subject><subject>Anesthetics, Intravenous</subject><subject>Consensus</subject><subject>Delphi Technique</subject><subject>Dexmedetomidine</subject><subject>Evoked Potentials, Motor - drug effects</subject><subject>Humans</subject><subject>Intraoperative Neurophysiological Monitoring - standards</subject><subject>Ketamine</subject><subject>Lidocaine</subject><subject>Neurosurgical Procedures</subject><subject>Practice Guidelines as Topic</subject><subject>Propofol</subject><subject>Spinal Cord - drug effects</subject><subject>Spinal Curvatures - surgery</subject><issn>0362-2436</issn><issn>1528-1159</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><recordid>eNqFks1u1DAUhS0EotPCGyDkJZsU29f5MbsylIJUKGLKOnISu2PqxME_tMPr8KI4TEGIBXjhax1_51q6xwg9oeSYElE_f_lxc0z-WMAB7qEVLVlTUFqK-2hFoGIF41AdoMMQPmeoAioeogNgJQgm2Ap9f6-Sd3JSIW5VMBKfJTMoa7KAtfP4Yo5mNN_MdIUvvZxCnzcjLX7nYr49_equ1YA_uKimuMg_u41uMvl28bxK-6Jyr9HEHZbTgNdunK26xZvZTNmzSf5K-d0LfJI5O29NBqagppAC3sQ07B6hB1raoB7f1SP06fXp5fpNcX5x9nZ9cl70UBIoBk41r2gJDQBlXOQhaD30pFG8q2rglDdadz2tKtp1mg2SZ03wWmoGQASDI_Rs33f27kvKE2lHE3plbR6PS6FlnIIQJdQLyvdo710IXul29maUftdS0i7xtDme9u94su3p3QupG9Xw2_Qrjww0e-DG2ah8uLbpRvl2q6SN2__15v-wLlhdQf4OhOUToaTICuXwA1Gjrig</recordid><startdate>20200701</startdate><enddate>20200701</enddate><creator>Walker, Corey T.</creator><creator>Kim, Han Jo</creator><creator>Park, Paul</creator><creator>Lenke, Lawrence G.</creator><creator>Weller, Mark A.</creator><creator>Smith, Justin S.</creator><creator>Nemergut, Edward C.</creator><creator>Sciubba, Daniel M.</creator><creator>Wang, Michael Y.</creator><creator>Shaffrey, Christopher</creator><creator>Deviren, Vedat</creator><creator>Mummaneni, Praveen V.</creator><creator>Chang, Joyce M.</creator><creator>Mummaneni, Valli P.</creator><creator>Than, Khoi D.</creator><creator>Berjano, Pedro</creator><creator>Eastlack, Robert K.</creator><creator>Mundis, Gregory M.</creator><creator>Kanter, Adam S.</creator><creator>Okonkwo, David O.</creator><creator>Shin, John H.</creator><creator>Lewis, Jason M.</creator><creator>Koski, Tyler</creator><creator>Hoh, Daniel J.</creator><creator>Glassman, Steven D.</creator><creator>Vinci, Susan B.</creator><creator>Daniels, Alan H.</creator><creator>Clavijo, Claudia F.</creator><creator>Turner, Jay D.</creator><creator>McLawhorn, Marc</creator><creator>Uribe, Juan S.</creator><general>Wolters Kluwer Health, Inc. All rights reserved</general><general>Copyright Wolters Kluwer Health, Inc. All rights reserved</general><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope></search><sort><creationdate>20200701</creationdate><title>Neuroanesthesia Guidelines for Optimizing Transcranial Motor Evoked Potential Neuromonitoring During Deformity and Complex Spinal Surgery: A Delphi Consensus Study</title><author>Walker, Corey T. ; Kim, Han Jo ; Park, Paul ; Lenke, Lawrence G. ; Weller, Mark A. ; Smith, Justin S. ; Nemergut, Edward C. ; Sciubba, Daniel M. ; Wang, Michael Y. ; Shaffrey, Christopher ; Deviren, Vedat ; Mummaneni, Praveen V. ; Chang, Joyce M. ; Mummaneni, Valli P. ; Than, Khoi D. ; Berjano, Pedro ; Eastlack, Robert K. ; Mundis, Gregory M. ; Kanter, Adam S. ; Okonkwo, David O. ; Shin, John H. ; Lewis, Jason M. ; Koski, Tyler ; Hoh, Daniel J. ; Glassman, Steven D. ; Vinci, Susan B. ; Daniels, Alan H. ; Clavijo, Claudia F. ; Turner, Jay D. ; McLawhorn, Marc ; 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OBJECTIVE.We used a modified Delphi approach to obtain consensus among leading spinal deformity surgeons and their neuroanesthesiology teams regarding optimal practices for obtaining reliable motor evoked potential (MEP) signals. SUMMARY OF BACKGROUND DATA.Intraoperative neurophysiological monitoring of transcranial MEPs provides the best method for assessing spinal cord integrity during complex spinal surgeries. MEPs are affected by pharmacological and physiological parameters. It is the responsibility of the spine surgeon and neuroanesthesia team to understand how they can best maintain high-quality MEP signals throughout surgery. Nevertheless, varying approaches to neuroanesthesia are seen in clinical practice. METHODS.We identified 19 international expert spinal deformity treatment teams. A modified Delphi process with two rounds of surveying was performed. Greater than 50% agreement on the final statements was considered “agreement”; &gt;75% agreement was considered “consensus.” RESULTS.Anesthesia regimens and protocols were obtained from the expert centers. There was a large amount of variability among centers. Two rounds of consensus surveying were performed, and all centers participated in both rounds of surveying. Consensus was obtained for 12 of 15 statements, and majority agreement was obtained for two of the remaining statements. Total intravenous anesthesia was identified as the preferred method of maintenance, with few centers allowing for low mean alveolar concentration of inhaled anesthetic. Most centers advocated for &lt;150 μg/kg/min of propofol with titration to the lowest dose that maintains appropriate anesthesia depth based on awareness monitoring. Use of adjuvant intravenous anesthetics, including ketamine, low-dose dexmedetomidine, and lidocaine, may help to reduce propofol requirements without negatively effecting MEP signals. CONCLUSION.Spine surgeons and neuroanesthesia teams should be familiar with methods for optimizing MEPs during deformity and complex spinal cases. Although variability in practices exists, there is consensus among international spinal deformity treatment centers regarding best practices.Level of Evidence5</abstract><cop>United States</cop><pub>Wolters Kluwer Health, Inc. All rights reserved</pub><pmid>32539292</pmid><doi>10.1097/BRS.0000000000003433</doi><tpages>10</tpages></addata></record>
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subjects Anesthesia, General - methods
Anesthesia, General - standards
Anesthetics, Intravenous
Consensus
Delphi Technique
Dexmedetomidine
Evoked Potentials, Motor - drug effects
Humans
Intraoperative Neurophysiological Monitoring - standards
Ketamine
Lidocaine
Neurosurgical Procedures
Practice Guidelines as Topic
Propofol
Spinal Cord - drug effects
Spinal Curvatures - surgery
title Neuroanesthesia Guidelines for Optimizing Transcranial Motor Evoked Potential Neuromonitoring During Deformity and Complex Spinal Surgery: A Delphi Consensus Study
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