Track this trial free. DataLookout checks ClinicalTrials.gov daily and emails you which fields changed on NCT06975072 (status, enrollment, completion dates, endpoints, sites) when this record is updated. Free accounts track up to 5 trials.

Track this trial

Effect of Magnesium on Neuromonitoring

Study acronym: MgNm
StatusRecruiting
PhasePhase 4
Started2025-07-01
View on ClinicalTrials.gov ↗
Trial flagged as At Risk
Primary completion moved at least 8 months later Apr 30, 2026 → Dec 30, 2026
See other at-risk trials from University of California, San Francisco

Amendment history

2026-08-19
critical
Study Status, Study Description, Study Design, Arms and Interventions v2
Enrollment increased: 20 → 40 participants
Trial arms changed: 1 → 2
Primary completion pushed: 2026-04-30 → 2026-12-30
Completion pushed: 2026-04-30 → 2026-12-30
Study description+525 characters
[...] sultant. Blood will be sent to the UCSF Clinical laboratory. Control group: a control cohort from the same spine patient population to provide a robust comparative baseline. This control cohort will be treated under the exact same anesthetic and neuromonitoring protocol as the completed study, except these patients will not receive magnesium. This addition o [...]
2025-07-02
notable
Not Yet Recruiting→Recruiting Study Status, Contacts/Locations v1
Trial statusNot Yet Recruiting→Recruiting
Start dateestimated 2025-05-30→confirmed 2025-07-01
Study sitesdetails revised at 1 of 1 site
2025-05-07
minor
Original filing
Intraoperative neurophysiologic monitoring (IONM) is commonly used during complex spinal surgery to monitor the integrity of neural structures and improve the perioperative safety profile. Transcranial Motor Evoked Potentials (TcMEPs) monitor the integrity of the motor pathways and are one of the most commonly used monitoring modalities in spinal surgery. Because inhaled anesthetics can negatively affect the ability to monitor TcMEPs, anesthesiologists commonly use a combination of propofol and opioids to maintain the anesthetic state. Additionally, anesthesiologists will frequently administer intravenous infusions of medications that can decrease postoperative pain and opioid use (called opioid-sparing adjuncts) because spinal surgeries result in significant postoperative pain. Despite the increasing use of these agents, there is scant clinical data about how they may affect the integrity of TcMEP monitoring. Magnesium (Mg), a N-methyl-d-aspartate receptors (NMDA) receptor antagonist, is one of the adjuncts with robust data supporting clinical efficacy to decrease pain and opioid use on TcMEPs. Mg has been used clinically for decades. The investigators commonly utilize intravenous magnesium as a component of our spinal anesthesia protocol. However, there is only a single case report that discusses the effects of Mg on TcMEPs. Here the investigators propose a prospective clinical trial to quantitatively assess the effects of various Mg plasma levels on TcMEPs. There is a lack of literature on the pharmacokinetics of magnesium in non-pregnant patients.
Trial Details
NCT Number NCT06975072
Lead Sponsor University of California, San Francisco
Conditions Spine, Pain, Spine Surgery, Spine Surgery With Neuromonitoring, Spine Surgery With Motor Evoked Potential Monitoring, Spine Fusion
Enrollment 40 participants
Start Date 2025-07-01
Primary Completion 2026-12-30 (estimated)
Study Completion 2026-12-30 (estimated)
Updated on ClinicalTrials.gov 2026-08-21