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利用漫射光学直接测量组织血流和代谢。

Direct measurement of tissue blood flow and metabolism with diffuse optics.

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2011 Nov 28;369(1955):4390-406. doi: 10.1098/rsta.2011.0232.

Abstract

Diffuse optics has proven useful for quantitative assessment of tissue oxy- and deoxyhaemoglobin concentrations and, more recently, for measurement of microvascular blood flow. In this paper, we focus on the flow monitoring technique: diffuse correlation spectroscopy (DCS). Representative clinical and pre-clinical studies from our laboratory illustrate the potential of DCS. Validation of DCS blood flow indices in human brain and muscle is presented. Comparison of DCS with arterial spin-labelled MRI, xenon-CT and Doppler ultrasound shows good agreement (0.50<r<0.95) over a wide range of tissue types and source detector distances, corroborating the potential of the method to measure perfusion non-invasively and in vivo at the microvasculature level. All-optical measurements of cerebral oxygen metabolism in both rat brain, following middle cerebral artery occlusion, and human brain, during functional activation, are also described. In both situations, the use of combined DCS and diffuse optical spectroscopy/near-infrared spectroscopy to monitor changes in oxygen consumption by the tissue is demonstrated. Finally, recent results spanning from gene expression-induced angiogenic response to stroke care and cancer treatment monitoring are discussed. Collectively, the research illustrates the capability of DCS to quantitatively monitor perfusion from bench to bedside, providing results that match up both with literature findings and with similar experiments performed with other techniques.

摘要

扩散光学已被证明可用于定量评估组织氧合和脱氧血红蛋白浓度,并且最近还可用于测量微血管血流。在本文中,我们重点介绍血流监测技术:漫射相关光谱(DCS)。来自我们实验室的代表性临床前和临床研究说明了 DCS 的潜力。本文介绍了在人体大脑和肌肉中对 DCS 血流指数进行验证的结果。DCS 与动脉自旋标记 MRI、氙 CT 和多普勒超声的比较显示,在广泛的组织类型和源探测器距离范围内,相关性良好(0.50<r<0.95),这证实了该方法具有在微血管水平上进行无创和体内灌注测量的潜力。本文还描述了在大鼠大脑中动脉闭塞后和人类大脑在功能激活期间,对大脑氧代谢的全光学测量。在这两种情况下,都使用 DCS 和漫射光学光谱/近红外光谱的组合来监测组织的耗氧量变化。最后,还讨论了从基因表达诱导的血管生成反应到中风治疗和癌症治疗监测的最新研究结果。总的来说,这项研究说明了 DCS 从实验台到临床的定量监测灌注的能力,其结果与文献结果以及使用其他技术进行的类似实验相吻合。

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