Joseph Danny K, Huppert Theodore J, Franceschini Maria Angela, Boas David A
Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital, MA 02129, USA.
Appl Opt. 2006 Nov 1;45(31):8142-51. doi: 10.1364/ao.45.008142.
Although most current diffuse optical brain imaging systems use only nearest- neighbor measurement geometry, the spatial resolution and quantitative accuracy of the imaging can be improved through the collection of overlapping sets of measurements. A continuous-wave diffuse optical imaging system that combines frequency encoding with time-division multiplexing to facilitate overlapping measurements of brain activation is described. Phantom measurements to confirm the expected improvement in spatial resolution and quantitative accuracy are presented. Experimental results showing the application of this instrument for imaging human brain activation are also presented. The observed improvement in spatial resolution is confirmed by functional magnetic resonance imaging.
尽管目前大多数漫射光学脑成像系统仅使用最近邻测量几何结构,但通过收集重叠的测量数据集,成像的空间分辨率和定量准确性可以得到提高。本文描述了一种连续波漫射光学成像系统,该系统结合了频率编码和时分复用技术,以促进对脑激活的重叠测量。给出了用于确认空间分辨率和定量准确性预期提高的体模测量结果。还给出了显示该仪器在人脑激活成像中的应用的实验结果。功能磁共振成像证实了观察到的空间分辨率的提高。