首页> 外文会议>ASME/JSME thermal engineering joint conference;AJTEC2011 >TIME-RESOLVED DIFFUSE OPTICAL TOMOGRAPHY OF HUMAN FOREARM UNDER EXERCISE
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TIME-RESOLVED DIFFUSE OPTICAL TOMOGRAPHY OF HUMAN FOREARM UNDER EXERCISE

机译:运动后人类前臂的时间分辨弥散性光学层析成像

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Light in the near-infrared wavelength range can penetrate deeping into biological tissues because the absorption by both water and hemoglobin is much smaller than in the other wavelength ranges. Oxygenated and deoxygenated hemoglobins have different light absorption characteristics. Therefore, by obtaining tomographic images of the absorption characteristics, it will be possible to know the hemodynamics inside deep tissues. Thus, the diffuse optical tomography (DOT) is expected as a new modality of biomedical imaging. In this study, we try to obtain DOT images of the forearms by conducting two types of exercise, and their differences caused by the muscle activity are discussed. By comparing the reconstructed DOT images with the magnetic resonance images of the forearm at the same position, the activated muscles can be identified in detail. As a result, the hemodynamics in the dominant muscles when performing flexion and extension of wrist are observed.
机译:由于水和血红蛋白的吸收比其他波长范围的吸收要小得多,因此近红外波长范围的光可以深入到生物组织中。氧化和脱氧的血红蛋白具有不同的光吸收特性。因此,通过获得吸收特性的断层图像,将可能了解深部组织内部的血液动力学。因此,漫射光学层析成像(DOT)有望成为生物医学成像的一种新形式。在这项研究中,我们尝试通过进行两种运动来获取前臂的DOT图像,并讨论它们由肌肉活动引起的差异。通过将重建的DOT图像与前臂在相同位置的磁共振图像进行比较,可以详细识别激活的肌肉。结果,观察到腕部屈伸时主要肌肉的血流动力学。

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