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Time-dependent diffuse reflectance spectroscopy for in vivo characterization of pediatric epileptogenic brain lesions

机译:用于小儿癫痫脑病变的体内表征的时间依赖性弥射反射光谱

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Optical spectroscopy for in vivo tissue diagnosis is performed traditionally in a static manner; a snap shot of the tissue biochemical and morphological characteristics is captured through the interaction between light and the tissue. This approach does not capture the dynamic nature of a living organ, which is critical to the studies of brain disorders such as epilepsy. Therefore, a time-dependent diffuse reflectance spectroscopy system with a fiber-optic probe was designed and developed. The system was designed to acquire broadband diffuse reflectance spectra (240~932 nm) at an acquisition rate of 33 Hz. The broadband spectral acquisition feature allows simultaneous monitoring of various physiological characteristics of tissues. The utility of such a system in guiding pediatric epilepsy surgery was tested in a pilot clinical study including 13 epilepsy patients and seven brain tumor patients. The control patients were children undergoing suregery for brain tumors in which measurements were taken from normal brain exposed during the surgery. Diffuse reflectance spectra were acquired for 12 seconds from various parts of the brain of the patients during surgery. Recorded spectra were processed and analyzed in both spectral and time domains to gain insights into the dynamic changes in, for example, hemodynamics of the investigated brain tissue. One finding from this pilot study is that unsynchronized alterations in local blood oxygenation and local blood volume were observed in epileptogenic cortex. These study results suggest the advantage of using a time-dependent diffuse reflectance spectroscopy system to study epileptogenic brain in vivo.
机译:体内组织诊断的光学光谱是以静态的方式进行的;通过光和组织之间的相互作用捕获组织生物化学和形态特征的捕获射击。这种方法不会捕捉生物器官的动态性质,这对脑病等脑病等研究至关重要。因此,设计并开发了具有光纤探针的时间依赖性漫反射光谱系统。该系统旨在以33Hz的采集率获得宽带漫反射光谱(240〜932nm)。宽带光谱采集特征允许同时监测组织的各种生理特征。在试点临床研究中测试了这种系统在引导小儿癫痫手术中的效用,包括13例癫痫患者和七种脑肿瘤患者。对照患者是接受脑肿瘤的经验丰富的儿童,其中从手术期间暴露的正常脑中取出测量。在手术期间,从患者的大脑的各个部分获得弥漫反射光谱12秒。在光谱和时间域中处理并分析记录的光谱,以获得对动态变化的洞察,例如,调查的脑组织的血流动力学。从该试点研究中发现的一个发现是在癫痫皮质中观察到当地血氧和局部血容量的非同步改变。这些研究结果表明使用时间依赖性漫反射光谱系统在体内研究癫痫脑脑的优点。

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