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首页> 外文期刊>Advances in Experimental Medicine and Biology >Hyperspectral Imaging of the Hemodynamic and Metabolic States of the Exposed Cortex: Investigating a Commercial Snapshot Solution
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Hyperspectral Imaging of the Hemodynamic and Metabolic States of the Exposed Cortex: Investigating a Commercial Snapshot Solution

机译:暴露皮层的血流动力学和代谢状态的高光谱成像:研究商业快照解决方案

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摘要

Hyperspectral imaging (HSI) systems have the potential to retrieve in vivo hemodynamic and metabolic signals from the exposed cerebral cortex. The use of multiple narrow wavelength bands in the near infrared (NIR) range theoretically allows not only to image brain tissue oxygenation and hemodynamics via mapping of hemoglobin concentration changes, but also to directly quantify cerebral metabolism via measurement of the redox states of mitochondrial cytochrome-c-oxidase (CCO). The aim of this study is to assess the possibility of performing hyperspectral imaging of in vivo cerebral oxyhemoglobin (HbO(2)), deoxyhemoglobin (HHb) and oxidized CCO (oxCCO) using commercially available HSI devices. For this reason, a hyperspectral snapshot solution based on Cubert GmbH technology (S185 FireflEYE camera) has been tested on the exposed cortex of mice during normoxic, hypoxic and hyperoxic conditions. The system allows simultaneous acquisition of 138 wavelength bands between 450 and 998 nm, with spectral sampling and resolution of similar to 4 to 8 nm. From the hyperspectral data, relative changes in concentration of hemoglobin and oxCCO are estimated and hemodynamic and metabolic maps of the imaged cortex are calculated for two different NIR spectral ranges. Spectroscopic analysis at particular regions of interest is also performed, showing typical oxygen-dependent hemodynamic responses. The results highlight some of the potentials of the technology, but also the limitations of the tested commercial solution for such specific application, in particular regarding spatial resolution.
机译:高光谱成像(HSI)系统具有从暴露的脑皮层中的体内血流动力学和代谢信号中检索。在理论上,在近红外(NIR)范围内的多个窄波长带不仅可以通过血红蛋白浓度的变化的映射来绘制脑组织氧合和血液动力学,而且还通过测量线粒体细胞色素的氧化还原状态直接量化脑代谢C-氧化酶(CCO)。本研究的目的是评估使用市售的HSI器件进行体内脑氧中(HBO(2)),脱氧葡萄球菌(HHB)和氧化CCO(Oxcco)的高光谱成像的可能性。因此,基于Cubert GmbH技术(S185 Firefleye摄像机)的高光谱快照解决方案已经在常见的常氧,缺氧和高氧化条件下对小鼠的暴露皮质进行了测试。该系统允许在450和998nm之间同时采集138波长带,其光谱采样和分辨率类似于4至8nm。根据高光谱数据,估计血红蛋白和胃肠血红蛋白和胃肠的相对变化,并且对两种不同的NIR光谱范围计算成像皮质的血流动力学和代谢图。还进行了特定地区的光谱分析,显示出典型的氧依赖性血液动力学反应。结果突出了该技术的一些潜力,还突出了测试的商业解决方案对这种特定应用的限制,特别是关于空间分辨率。

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