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通过近红外光谱法测量视觉刺激导致的脑血流动力学区域变化。

Regional changes in cerebral haemodynamics as a result of a visual stimulus measured by near infrared spectroscopy.

作者信息

Meek J H, Elwell C E, Khan M J, Romaya J, Wyatt J S, Delpy D T, Zeki S

机构信息

Department of Paediatrics, University College London, U.K.

出版信息

Proc Biol Sci. 1995 Sep 22;261(1362):351-6. doi: 10.1098/rspb.1995.0158.

Abstract

Near infrared spectroscopy (NIRS) is used to measure global changes in cerebral haemodynamics. We have adapted the technique to measure regional changes in response to a visual stimulus. Ten volunteers were exposed to a computer generated visual stimulus designed to activate a large area of the visual cortex, including V1, V2, V3, V4 and V5. The stimulus was on for 30 s and off for 30 s. Changes in the concentrations of oxyhaemoglobin ([HbO2]) and deoxyhaemoglobin ([Hb]) were measured using a commercial spectrometer (NIRO500), over the occipital cortex. The data were summed over ten cycles. As a control, the experiment was repeated over the frontal cortex. For each subject [HbO2] increased during stimulation, and decreased when the stimulus was off. The mean (+/- s.e.m.) change in [HbO2] was 0.54 +/0 0.14 micromol 1(-1). The change in total haemoglobin concentration, given by [HbO2] + [Hb] was 0.61 +/- 0.21 micromol 1(-1), equivalent to a rise in cerebral blood volume of 0.04 +/- 0.01 ml 100 g(-1) which is about 2% of the total cerebral blood volume. There was no significant change in [HbO2] over the frontal cortex, implying that the changes in blood volume originated in the occipital lobe. This demonstrates that NIRS provides a non-invasive method of measuring regional changes in cerebral haemodynamics as a result of visual stimulation.

摘要

近红外光谱技术(NIRS)用于测量脑血流动力学的整体变化。我们已对该技术进行调整,以测量对视觉刺激的局部变化。十名志愿者接受了计算机生成的视觉刺激,该刺激旨在激活包括V1、V2、V3、V4和V5在内的大面积视觉皮层。刺激持续30秒,然后关闭30秒。使用商用光谱仪(NIRO500)在枕叶皮层测量氧合血红蛋白([HbO2])和脱氧血红蛋白([Hb])浓度的变化。数据在十个周期内进行汇总。作为对照,在额叶皮层重复该实验。对于每个受试者,刺激期间[HbO2]增加,刺激关闭时则减少。[HbO2]的平均(±标准误)变化为0.54±0.14微摩尔1(-1)。总血红蛋白浓度的变化,即[HbO2]+[Hb]为0.61±0.21微摩尔1(-1),相当于脑血容量增加0.04±0.01毫升100克(-1),约占总脑血容量的2%。额叶皮层的[HbO2]没有显著变化,这意味着血容量的变化起源于枕叶。这表明NIRS提供了一种非侵入性方法,用于测量视觉刺激引起的脑血流动力学局部变化。

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