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Phantom-based evaluation of near-infrared intracranial hematoma detector performance

机译:基于幻影的近红外颅内血肿检测器性能评估

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摘要

Near-infrared spectroscopy (NIRS) is emerging as a rapid, low-cost approach for point-of-care triage of hematomas resulting from traumatic brain injury. However, there remains a lack of standardized test methods for benchtop performance assessment of these devices and incomplete understanding of relevant light–tissue interactions. We propose a phantom-based test method for systems operating near the 800-nm oxy-/deoxy-hemoglobin isosbestic point and implement it to evaluate a clinical system. Semi-idealized phantom geometries are designed to represent epidural/subdural, subarachnoid, and intracerebral hemorrhages. Measurements of these phantoms are made with a commercial NIRS-based hematoma detector to quantify the effect of hematoma type, depth, and size, as well as measurement repeatability and detector positioning relative to the hematoma. Results indicated high sensitivity to epidural/subdural and subarachnoid hematomas. Intracerebral hematomas are detectable to a maximum depth of , depending on thickness and diameter. The maximum lateral detection area for the single-emitter/single-collector device studied here appears elliptical and decreases strongly with inclusion depth. Overall, this study provides unique insights into hematoma detector function and indicates the utility of modular polymer tissue phantoms in performance tests for emerging NIRS-based cerebral diagnostic technology.
机译:近红外光谱法(NIRS)成为一种快速,低成本的方法,用于对颅脑外伤造成的血肿进行即时分诊。然而,仍然缺乏用于这些设备的台式性能评估的标准化测试方法,以及对相关光组织相互作用的不完全了解。我们为在800-nm氧-/脱氧-血红蛋白等吸收点附近运行的系统提出了一种基于幻影的测试方法,并将其用于评估临床系统。半理想化的体模几何设计用于代表硬膜外/硬膜下,蛛网膜下腔和脑内出血。使用基于NIRS的商业血肿检测器对这些体模进行测量,以量化血肿类型,深度和大小以及相对于血肿的测量可重复性和检测器位置的影响。结果表明对硬膜外/硬膜下和蛛网膜下血肿高度敏感。根据厚度和直径,可检测到最大脑内血肿。此处研究的单发射器/单收集器设备的最大横向检测区域显示为椭圆形,并且随着包含深度的增加而大大减小。总体而言,这项研究提供了对血肿检测器功能的独特见解,并指出了模块化聚合物组织体模在新兴的基于NIRS的脑诊断技术的性能测试中的实用性。

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