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Imaging system based on diffusive reflectance spectroscopy for blood vessels detection during brain biopsy procedure

机译:基于血管检测脑活检过程中血管检测的成像系统

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During the diagnosis and treatment process for brain cancer, clinicians often need to achieve a brain biopsy to get histological data. However there are risks associated with this procedure: 1) collected samples are not always representative of the tumor and 2) there is a risk of blood vessel rupture when the sample is taken. This type of bleeding occurs between 0.3 and 59.8% of the cases and the mortality rate can be as high as 3.9% (Dammers et al, Woodworth et al). Here we present a diffuse reflectance spectroscopy imaging system directly integrated on a brain biopsy needle to guide surgeon during needle biopsy procedures. To mitigate the risks associated with the procedure, our imaging system combines 18 optical fibers (9 used as white-light sources and 9 used as detectors) to acquire a total of 81 reflectance spectra per acquisition. A tomographic algorithm (Goyette et al) is used to reconstruct an image in the vicinity of the needle based on the optical contrast due to the optical absorption of hemoglobin (Hb) which is the main absorber in brain. The evaluation and characterization tests were first carried out in vitro using tissue-simulating phantoms reproducing human brain optical properties (absorption and scattering).
机译:在脑癌的诊断和治疗过程中,临床医生通常需要达到脑活检以获得组织学数据。然而,存在与此过程相关的风险:1)收集的样品并不总是肿瘤的代表,2)在采集样品时存在血管破裂的风险。这种类型的出血发生在0.3和59.8%之间,并且死亡率可以高达3.9%(Dammers等,Woodworth等人)。在这里,我们提出了一种直接集成在脑活检针上的漫反射光谱成像系统,以在针活检程序期间引导外科医生。为了减轻与该过程相关的风险,我们的成像系统将18个光纤(9用作白光源和9用作探测器的9)结合,以获得每次采集的总共81个反射光谱。基于血红蛋白(HB)的光学吸收,基于血红蛋白(Hb)的光学吸收,基于脑的光学吸收,基于血红蛋白(Hb)的光学对比度来重建针在针附近的图像进行了转化算法(Goyette等。首先使用组织模拟模拟体模,再现人脑光学性质(吸收和散射)进行评价和表征测试。

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