Blasi A, Fox S, Everdell N, Volein A, Tucker L, Csibra G, Gibson A P, Hebden J C, Johnson M H, Elwell C E
Biomedical Optics Research Lab, Department of Medical Physics and Bioengineering, Malet Place Engineering Building, University College London, London WC1E 6BT, UK.
Phys Med Biol. 2007 Dec 7;52(23):6849-64. doi: 10.1088/0031-9155/52/23/005. Epub 2007 Nov 8.
Near-infrared spectroscopy has been used to record oxygenation changes in the visual cortex of 4 month old infants. Our in-house topography system, with 30 channels and 3 different source-detector separations, recorded changes in the concentration of oxy-, deoxy- and total haemoglobin (HbO2, HHb and HbT) in response to visual stimuli (face, scrambled visual noise and cartoons as rest). The aim of this work was to demonstrate the capability of the system to spatially localize functional activation and study the possibility of depth discrimination in the haemodynamic response. The group data show both face stimulation and visual noise stimulation induced significant increases in HbO2 from rest, but the increase in HbO2 with face stimulation was not significantly different from that seen with visual noise stimulation. The face stimuli induced increases in HbO2 were spread across a greater area across all depths than visual noise induced changes. In results from a single subject there was a significant increase of HbO2 in the inferior area of the visual cortex in response to both types of stimuli, and a larger number of channels (source-detector pairs) showed HbO2 increase to face stimuli, especially at the greatest depth. Activation maps were obtained using 3D reconstruction methods on multi source-detector separation optical topography data.
近红外光谱已被用于记录4个月大婴儿视觉皮层的氧合变化。我们内部的地形图系统有30个通道和3种不同的源探测器间距,记录了响应视觉刺激(面部、杂乱视觉噪声和作为对照的卡通片)时氧合血红蛋白、脱氧血红蛋白和总血红蛋白(HbO2、HHb和HbT)浓度的变化。这项工作的目的是证明该系统在空间上定位功能激活的能力,并研究血流动力学反应中深度辨别可能性。组数据显示,面部刺激和视觉噪声刺激均使静息状态下的HbO2显著增加,但面部刺激引起的HbO2增加与视觉噪声刺激引起的增加无显著差异。与视觉噪声引起的变化相比,面部刺激引起的HbO2增加在所有深度上分布的区域更大。在单个受试者的结果中,两种类型的刺激均使视觉皮层下部区域的HbO2显著增加,并且更多的通道(源探测器对)显示HbO2对面部刺激有增加,尤其是在最大深度处。使用三维重建方法对多源探测器间距光学地形图数据获得激活图。