Heekeren H R, Kohl M, Obrig H, Wenzel R, von Pannwitz W, Matcher S J, Dirnagl U, Cooper C E, Villringer A
Department of Neurology, Charité, Humboldt-University, Berlin, Germany.
J Cereb Blood Flow Metab. 1999 Jun;19(6):592-603. doi: 10.1097/00004647-199906000-00002.
In this study the authors used a whole-spectrum near-infrared spectroscopy approach to noninvasively assess changes in hemoglobin oxygenation and cytochrome-c oxidase redox state (Cyt-Ox) in the occipital cortex during visual stimulation. The system uses a white light source (halogen lamp). The light reflected from the subject's head is spectrally resolved by a spectrograph and dispersed on a cooled charge-coupled device camera. The authors showed the following using this approach: (1) Changes in cerebral hemoglobin oxygenation (increase in concentration of oxygenated hemoglobin, decrease in concentration of deoxygenated hemoglobin) in the human occipital cortex during visual stimulation can be assessed quantitatively. (2) The spectral changes during functional activation cannot be completely explained by changes in hemoglobin oxygenation solely; Cyt-Ox has to be included in the analysis. Only if Cyt-Ox is considered can the spectral changes in response to increased brain activity be explained. (3) Cytochrome-c oxidase in the occipital cortex of human subjects is transiently oxidized during visual stimulation. This allows us to measure vascular and intracellular energy status simultaneously.
在本研究中,作者采用全光谱近红外光谱法,在视觉刺激过程中对枕叶皮质的血红蛋白氧合和细胞色素c氧化酶氧化还原状态(Cyt-Ox)的变化进行无创评估。该系统使用白色光源(卤素灯)。从受试者头部反射的光由光谱仪进行光谱解析,并分散在冷却的电荷耦合器件相机上。作者使用该方法展示了以下内容:(1)在视觉刺激过程中,人类枕叶皮质的脑血红蛋白氧合变化(氧合血红蛋白浓度增加,脱氧血红蛋白浓度降低)可以进行定量评估。(2)功能激活期间的光谱变化不能仅由血红蛋白氧合变化完全解释;分析中必须纳入Cyt-Ox。只有考虑到Cyt-Ox,才能解释因大脑活动增加而产生的光谱变化。(3)在视觉刺激过程中,人类受试者枕叶皮质中的细胞色素c氧化酶会短暂氧化。这使我们能够同时测量血管和细胞内的能量状态。