Key result
Myogenic transcranial motor-evoked responses were more sensitive to acute spinal cord ischemia, disappearing within 2 minutes of aortic occlusion compared to a median of 11.3 minutes for a 50% reduction in epidural responses.
Why the study?
Does myogenic tc-MER monitoring detect acute spinal cord ischemia more rapidly than epidural tc-MER monitoring in a rabbit model?
Does myogenic tc-MER monitoring detect acute spinal cord ischemia more rapidly than epidural tc-MER monitoring in a rabbit model?
Myogenic transcranial motor-evoked responses detect acute spinal cord ischemia more rapidly than epidural responses, suggesting potential clinical utility during operations where the spinal cord is at risk.
Myogenic tc-MER may enable earlier ischemia detection in aortic procedures; leaves open human efficacy and outcome impact.
Monitoring motor-evoked responses to transcranial stimulation (tc-MERs) provides information about the functional status of the spinal cord during operations that pose the risk of spinal cord ischemia. Responses can be recorded from the epidural space (epidural tc-MERs) or from muscle (myogenic tc-MERs). In this study the relative sensitivity of epidural and myogenic tc-MERs to acute spinal cord ischemia was compared. Spinal cord ischemia was produced by infrarenal aortic balloon occlusion in nine anesthetized New Zealand White rabbits. Tc-MERs were evoked by transcranial electrical stimuli applied to the scalp. Responses were recorded from the lumbar epidural space and from the soleus muscle, and the effect of aortic occlusion was assessed. The peak-to-peak amplitude of the direct wave of the epidural response decreased gradually during aortic occlusion in eight animals and increased in one. The median (10th to 90th percentiles) time to a 50% reduction in amplitude was 11.3 [3-22] min. In contrast, myogenic responses disappeared within 2 min after the start of occlusion in all animals. Lower extremity ischemia as a cause of changes in myogenic tc-MER amplitude was excluded by ligating the right femoral artery and demonstrating that myogenic responses were preserved for 30 min, before occluding the aorta. We conclude that myogenic responses are more sensitive to acute spinal cord ischemia than epidural responses. The rapid detection of spinal cord ischemia with transcranial myogenic motor-evoked responses could be of clinical use in assessing the adequacy of spinal cord blood flow during operations where the spinal cord is at risk. (Anesth Analg 1996;83:1022-7)
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Haan et al. (1996) studied Acute spinal cord ischemia (n=9). Myogenic transcranial motor-evoked responses (tc-MERs) vs. Epidural tc-MERs was evaluated on Sensitivity to acute spinal cord ischemia (time to amplitude reduction or disappearance). Myogenic transcranial motor-evoked responses were more sensitive to acute spinal cord ischemia, disappearing within 2 minutes of aortic occlusion compared to a median of 11.3 minutes for a 50% reduction in epidural responses.
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