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Sensitivity analysis aimed at blood vessels detection using interstitial optical tomography during brain needle biopsy procedures

机译:旨在进行脑针活检过程中使用间质性光学层析成像技术检测血管的敏感性分析

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A brain needle biopsy procedure is performed for suspected brain lesions in order to sample tissue that is subsequently analysed using standard histopathology techniques. A common complication resulting from this procedure is brain hemorrhaging from blood vessels clipped off during tissue extraction. Interstitial optical tomography (iOT) has recently been introduced by our group as a mean to assess the presence of blood vessels in the vicinity of the needle. The clinical need to improve safety requires the detection of blood vessels within 2 mm from the outer surface of the needle, since this distance is representative of the volume of tissue that is aspirated durirng tissue extraction. Here, a sensitivity analysis is presented to establish the intrinsic detection limits of iOT based on simulations and experiments using brain tissue phantoms. It is demonstrated that absorbers can be detected with diameters >300 μm located up to >2 mm from the biopsy needle core for bulk optical properties consistent with brain tissue.
机译:对可疑的脑损伤进行脑针活检,以采集组织样本,随后使用标准组织病理学技术对其进行分析。由该程序引起的常见并发症是在组织提取过程中从被切断的血管引起的脑出血。间质性光学层析成像(iOT)是我们小组最近引入的一种手段,用于评估针头附近血管的存在。提高安全性的临床需求要求在距针头外表面2毫米以内的范围内检测血管,因为该距离代表组织抽取过程中抽吸的组织体积。在这里,基于使用脑组织体模的模拟和实验,提出了灵敏度分析以建立iOT的固有检测极限。结果表明,可以检测到直径大于300μm且距活检针芯最大> 2 mm的吸收体,以获得与脑组织一致的整体光学特性。

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