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An Intraoperative Visualization System Using Hyperspectral Imaging to Aid in Brain Tumor Delineation

机译:术中可视化系统使用高光谱成像帮助脑肿瘤的描绘。

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摘要

Hyperspectral imaging (HSI) allows for the acquisition of large numbers of spectral bands throughout the electromagnetic spectrum (within and beyond the visual range) with respect to the surface of scenes captured by sensors. Using this information and a set of complex classification algorithms, it is possible to determine which material or substance is located in each pixel. The work presented in this paper aims to exploit the characteristics of HSI to develop a demonstrator capable of delineating tumor tissue from brain tissue during neurosurgical operations. Improved delineation of tumor boundaries is expected to improve the results of surgery. The developed demonstrator is composed of two hyperspectral cameras covering a spectral range of 400–1700 nm. Furthermore, a hardware accelerator connected to a control unit is used to speed up the hyperspectral brain cancer detection algorithm to achieve processing during the time of surgery. A labeled dataset comprised of more than 300,000 spectral signatures is used as the training dataset for the supervised stage of the classification algorithm. In this preliminary study, thematic maps obtained from a validation database of seven hyperspectral images of in vivo brain tissue captured and processed during neurosurgical operations demonstrate that the system is able to discriminate between normal and tumor tissue in the brain. The results can be provided during the surgical procedure (~1 min), making it a practical system for neurosurgeons to use in the near future to improve excision and potentially improve patient outcomes.
机译:高光谱成像(HSI)允许在整个电磁频谱中(在可视范围之内和之外)相对于传感器捕获的场景表面获取大量的光谱带。使用此信息和一组复杂的分类算法,可以确定每种像素中都存在哪种物质或物质。本文提出的工作旨在利用HSI的特性,开发出一种能够在神经外科手术过程中从脑组织中描绘出肿瘤组织的演示器。肿瘤边界的改善描述有望改善手术效果。研发的演示器由两台高光谱相机组成,涵盖了400-1700 nm的光谱范围。此外,连接到控制单元的硬件加速器用于加速高光谱脑癌检测算法,以在手术期间实现处理。包含超过300,000个光谱特征的标记数据集被用作分类算法监督阶段的训练数据集。在这项初步研究中,从在神经外科手术中捕获并处理的体内脑组织的七个高光谱图像的验证数据库中获得的专题图表明,该系统能够区分大脑的正常组织和肿瘤组织。可以在手术过程中(约1分钟)提供结果,使其成为神经外科医师在不久的将来使用的实用系统,以改善切除效果并可能改善患者预后。

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