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A Review: Functional Near Infrared Spectroscopy Evaluation in Muscle Tissues using Monte Carlo Simulation

机译:综述:使用Monte Carlo仿真在肌肉组织中的功能近红外光谱评价

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Monte Carlo Simulation has advanced their quantification based on number of the photon counting to solve the propagation of light inside the tissues including the absorption, scattering coefficient and act as preliminary study for functional near infrared application. The goal of this paper is to identify the optical properties using Monte Carlo simulation for non-invasive functional near infrared spectroscopy (íNIRS) evaluation of penetration depth in human muscle. This paper will describe the NIRS principle and the basis for its proposed used in Monte Carlo simulation which focused on several important parameters include ATP, ADP and relate with blow flow and oxygen content at certain exercise intensity. This will cover the advantages and limitation of such application upon this simulation. This result may help us to prove that our human muscle is transparent to this near infrared region and could deliver a lot of information regarding to the oxygenation level in human muscle. Thus, this might be useful for non-invasive technique for detecting oxygen status in muscle from living people either athletes or working people and allowing a lots of investigation muscle physiology in future.
机译:Monte Carlo模拟基于光子计数的数量来解决它们的定量,以解决包括吸收,散射系数和充当近红外应用近型功能的初步研究的光的传播。本文的目标是使用Monte Carlo模拟来识别用于非侵入性功能的近红外光谱(ínirs)渗透深度的非侵入性功能的光学性质。本文将描述NIRS原理和建议在蒙特卡罗模拟中使用的基础,其专注于若干重要参数包括ATP,ADP并在某些运动强度下与吹血和氧含量相关。这将涵盖在该模拟时这些应用的优缺点。这种结果可以帮助我们证明我们的人体肌肉对这近红外区域透明,并且可以提供关于人体肌肉中氧合水平的大量信息。因此,这可能对非侵入性技术有用,用于检测来自活人员或劳动人员的肌肉中的氧气状态,并允许未来大量调查肌肉生理学。

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