首页> 外文会议>IEEE EMBS Asian-Pacific Conference on Biomedical Engineering >IN VIVO NEAR INFRA-RED SPECTROSCOPY INSTRUMENTATION COMBINING SPATIALLY-RESOLVED AND INTENSITY MODULATION TECHNIQUES
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IN VIVO NEAR INFRA-RED SPECTROSCOPY INSTRUMENTATION COMBINING SPATIALLY-RESOLVED AND INTENSITY MODULATION TECHNIQUES

机译:在靠近红外光谱仪器附近的vivo结合了空间分辨和强度调制技术

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Near infra-red spectroscopy is of great interest for chemical and structural analysis in cells, tissues and organs. The requirements for instrumentation suitable for quantitative measurement are considered here. Problems due to optical scatter make absolute quantitative chemical analysis difficult. In clinical applications semi-quantitative analysis can be achieved by monitoring change within one subject. Approaches to achieve absolute quantitation involve the determination of absorption and scattering parameters of the target sample. Such methods require theoretical models of photon propagation upon which to base a measurement and analysis strategy and these are considered. This includes Transport theory and Diffusion theory. Implementation of the theoretically-based measurement techniques in practice is influenced by the characteristics of light sources and detectors and by digital processing hardware and software. The laboratory use of fcmto/pico second Ti-Sapphire lasers with streak camera detectors has its place in research, whilst simpler lower cost frequency domain instruments were thought to be more suitable for routine clinical use. However, recent advances in fast laser diodes and fast detectors allow the time-domain method to be re-considered. A system combining spatially-resolved techniques with intensity modulation is described.
机译:在近红外光谱附近对细胞,组织和器官的化学和结构分析非常关注。这里考虑适用于定量测量的仪器的要求。光学散射由于光散射的问题使绝对的定量化学分析难。在临床应用中,通过在一个主题内监测变化可以实现半定量分析。实现绝对定量的方法涉及测定靶样品的吸收和散射参数。这些方法需要在施加测量和分析策略的情况下的光子传播的理论模型,并且考虑这些方法。这包括运输理论和扩散理论。实践中基于理论上的测量技术的实现是受光源和探测器的特性以及数字处理硬件和软件的影响。使用条纹相机探测器的FCMTO / Pico第二Ti-Sapphire激光器的实验室使用具有其在研究中的位置,而更简单的降低成本域仪器被认为更适合常规临床用途。然而,快速激光二极管和快速检测器的最近进步允许重新考虑时域方法。描述了一种组合具有强度调制的空间解析技术的系统。

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