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An integrated measurement system for simultaneous functional magnetic resonance imaging and diffuse optical tomography in human brain mapping

机译:用于人脑测绘中同时进行功能磁共振成像和散射光学层析成像的集成测量系统

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摘要

An integrated measurement system is described for performing simultaneous functional magnetic resonance imaging (fMRI) and diffuse optical tomography (DOT) for human brain mapping experiments. The components of this system consist of an MRI-compatible multi-overlapping-channel optical probe, methods for co-registration of optical and fMRI measurements, and DOT reconstruction algorithms with structural and physiological constraints derived from the MRI data. The optical probe is fully MRI-compatible in the sense that it produces negligible MR image distortion and does not require any modification to the MRI scanner or data acquisition protocol. The probe can be attached to any part of the head without posing any limitation on optical data acquisition. Co-registration of images from fMRI and optical measurements was achieved by localizing the positions of the optical fibers using MRI markers. Human studies show successful implementation of the entire system.
机译:描述了一种集成的测量系统,用于执行同时进行的功能磁共振成像(fMRI)和扩散光学层析成像(DOT)的人脑图实验。该系统的组件包括MRI兼容的多重叠通道光学探头,光学和fMRI测量的共同配准方法,以及具有从MRI数据得出的结构和生理约束的DOT重建算法。从某种意义上说,该光学探针产生的MR图像失真可忽略不计,并且无需对MRI扫描仪或数据采集协议进行任何修改,就完全与MRI兼容。探头可以连接到头部的任何部分,而对光学数据的采集没有任何限制。通过使用MRI标记定位光纤的位置,可以实现来自fMRI和光学测量的图像共配准。人体研究表明整个系统的成功实施。

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