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In-vivo optical reflectance measurement of human brain tissue with calculation of absorption and scattering coefficients

机译:用吸收和散射系数计算人脑组织的体内光学反射测量

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Parkinson's disease is a neuro-degenerative disease affecting the globus pallidus (GP), a deep brain gray matter structure surrounded by white matter. During a pallidotomy a thin radio frequency probe is inserted into the GP to generate a small lesion. A fiber optic reflectance probe was developed and used during surgery. This instrument provides real-time display of the optical reflectance spectra as well as assisted lesion localization. Our 1.5-mm probe contains seven 100-$mu@m fibers, one delivers light and six return the reflected light to a spectrometer. During clinical studies, the probe was placed against the surface of the brain and the spectrum between 350 - 850 nm was recorded. Measurements were repeated at 1-mm increments from the surface of the brain to 60-mm deep (GP level). This provided optical reflectance signals from both gray and white matter. Clinical results show that gray matter reflectance is approximately 50% of white matter between 650 - 800 nm. By calculating the slope between 700 - 850 nm, the signals can be differentiated between gray and white matter. We can quantify the absorption and scattering coefficients of the locally measured brain tissue by fitting the two-flu theory of Kubelka and Munk with our measurements.
机译:帕金森病是一种影响Globus pallidus(GP)的神经退行性疾病,是白质包围的深脑灰质结构。在缺点期间,将薄的射频探针插入GP中以产生小病变。在手术期间开发和使用光纤反射探针。该仪器提供了光学反射光谱的实时显示,以及辅助病变定位。我们的1.5毫米探头含有七个100- $ MU @ M纤维,一个透射光线,六个返回反射光到光谱仪。在临床研究期间,将探针置于脑表面上,并记录350-850nm之间的光谱。从大脑表面以1mm的增量重复测量到60mm深(GP水平)。这提供了来自灰色和白质的光学反射信号。临床结果表明,灰质反射率约为650-800nm的白质的50%。通过计算700-850nm之间的斜率,可以在灰色和白质之间区分信号。通过拟合Kubelka和Munk的测量来量化局部测量脑组织的吸收和散射系数。

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