Cerebral Near-Infrared Spectroscopy: A Potential Approach for Thrombectomy Monitoring.

Ritzenthaler, Thomas; Cho, Tae-Hee; Mechtouff, Laura; Ong, Elodie; Turjman, Francis; Robinson, Philip; Berthezène, Yves; Nighoghossian, Norbert · Stroke · 2017

case_series · Level IV

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Abstract

Regional brain oxygen saturation (rSO<sub>2</sub>) changes, assessed by cerebral near-infrared spectroscopy, are likely influenced by cerebral hemodynamic fluctuations induced by thrombectomy of acute proximal occlusion. We studied the correlations between rSO<sub>2</sub> and baseline magnetic resonance imaging perfusion parameters and the relationship between rSO<sub>2</sub> changes, recanalization, and clinical outcome. Seventeen acute ischemic stroke patients, treated with mechanical thrombectomy, were monitored using bilateral near-infrared spectroscopy before, during, and continuously for 24 hours after the procedure. All patients had baseline brain magnetic resonance imaging with perfusion weighted imaging. rSO<sub>2</sub> was only correlated with baseline Tmax (ρ=-0.42; <i>P</i><0.05) and mean transit time (ρ=-0.45; <i>P</i><0.05) within forehead explored areas. Before thrombectomy, an interhemispheric rSO<sub>2</sub> difference was noted, and this diminished over time when recanalization had occurred (median [interquartile range], -8 [-12 to -5] to 3 [-3 to 7]; <i>P</i>=0.01). rSO<sub>2</sub> changes were not correlated with clinical outcome. rSO<sub>2</sub> was merely correlated with baseline Tmax and mean transit time magnetic resonance imaging perfusion parameters. Multiple sites recording beyond frontal pole explored areas may provide more relevant correlation with hemodynamic parameters.

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