Key result
EEG-guided selective shunting during CEA is linked to a ~6% postoperative neurological deficit rate.
Why the study?
The reliability of selective shunting based on computerized EEG monitoring during carotid endarterectomy had not been addressed.
Does selective shunting based on two-channel computerized EEG/CSA monitoring reliably indicate the need for a bypass shunt during carotid endarterectomy?
Observational (n=103)
Does selective shunting based on two-channel computerized EEG/CSA monitoring reliably indicate the need for a bypass shunt during carotid endarterectomy?
p-value: p=<0.0001
Two-channel computerized EEG/CSA monitoring can serve as a reliable indicator for selective shunting during carotid cross-clamping.
May support EEG-guided selective shunting in CEA; hypothesis-generating and requires randomized confirmation before practice change.
The reliability of selective shunting based on computerized electroencephalographic (EEG) monitoring has not been addressed. In this study, 103 carotid endarterectomies were performed with selective shunting based on a two-channel computerized EEG monitor that processed the on-line, raw electroencephalogram (EEG) to produce a compressed spectral array (CSA). Ischemic EEG events were identified by amplitude attenuation of the raw EEG and/or loss of high-frequency activity on the CSA. Fourteen patients (13.6%) received a bypass shunt, and postoperative neurological examinations showed 97 patients (94.2%) to be intact. A correlation between total (cumulative) ischemic EEG time and the postoperative neurological exam was demonstrated (P less than 0.0001). Six postoperative deficits (5.8%) occurred, five in patients whose computerized EEGs demonstrated an ischemic EEG event late during carotid clamping, when it was no longer possible to place a shunt. The sixth deficit was found in a patient whose EEG did not demonstrate any patient whose EEG did not demonstrate any signs of cerebral ischemia. Five of these six new deficits resolved within 12 hours, and only one persisted for 72 hours, when the patient died of a pulmonary embolism (cerebral infarction and mortality rate of 1%). These results appear to demonstrate that two-channel monitoring of both the CSA and the unprocessed (raw) EEG simultaneously can be used as a reliable indicator of whether a bypass shunt is required during carotid cross-clamping in all patients, regardless of their preoperative neurological history or angiographic findings.
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Tempelhoff et al. (1989) conducted an observational in Carotid endarterectomy (n=103). Selective shunting based on two-channel computerized EEG/CSA monitoring was evaluated on Postoperative neurological deficits (p=<0.0001). Selective shunting during carotid endarterectomy based on two-channel computerized EEG monitoring resulted in a 5.8% rate of postoperative deficits and a 1% cerebral infarction and mortality rate.
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