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首页> 外文期刊>Brain research >Bilateral near-infrared monitoring of the cerebral concentration and oxygen-saturation of hemoglobin during right unilateral electro-convulsive therapy.
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Bilateral near-infrared monitoring of the cerebral concentration and oxygen-saturation of hemoglobin during right unilateral electro-convulsive therapy.

机译:右单方面电抽搐治疗期间双侧近红外监测血红蛋白的大脑浓度和氧饱和度。

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摘要

Reductions in right prefrontal cerebral blood flow have been correlated with symptomatic improvement in depressed individuals receiving electroconvulsive therapy (ECT). Non-invasive near infrared spectroscopy has previously been shown to reliably measure changes in cerebral hemoglobin concentrations and oxygen saturation. In this study, we measured the concentration and oxygen saturation of hemoglobin on the right and left frontal brain regions of nine patients during right unilateral ECT. In all patients, we have found that the electrically induced seizure causes a stronger cerebral deoxygenation on the side ipsilateral to the electrical current (-21+/-5%) with respect to the contralateral side (-6+/-4%). On the brain side ipsilateral to the ECT electrical discharge, we have consistently observed a discharge-induced decrease in the total hemoglobin concentration, i.e. in the cerebral blood volume, by -7+/-3 microM, as opposed to an average increase by 6+/-3 microM on the contralateral side. The ipsilateral decrease in blood volume is assigned to a vascular constriction associated with the electrical discharge, as indicated by the observed decrease in cerebral oxy-hemoglobin concentration and minimal change in deoxy-hemoglobin concentration during the electrical discharge on the side of the discharge. These findings provide indications about the cerebral hemodynamic/metabolic mechanisms associated with ECT, and may lead to useful parameters to predict the individual clinical outcome of ECT.
机译:右前额脑血流量的减少与接受电抽搐治疗(ECT)的抑郁症患者的症状改善相关。先前已显示出非侵入式近红外光谱能够可靠地测量大脑血红蛋白浓度和血氧饱和度的变化。在这项研究中,我们测量了九名患者在右单侧ECT期间左右额叶大脑区域血红蛋白的浓度和氧饱和度。在所有患者中,我们发现电诱发的癫痫发作会导致对侧(-6 +/- 4%)的电流(-21 +/- 5%)的同侧更强的大脑脱氧。在与ECT放电同侧的大脑一侧,我们一直观察到放电引起的总血红蛋白浓度(即,脑血容量)减少-7 +/- 3 microM,而不是平均增加6对侧+/- 3 microM。血容量的同侧减少归因于与放电相关的血管收缩,如在放电侧在放电期间观察到的脑氧-血红蛋白浓度降低和脱氧-血红蛋白浓度的最小变化所表明的。这些发现提供了与ECT相关的脑血流动力学/代谢机制的指征,并可能导致有用的参数来预测ECT的个体临床结局。

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