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人胫骨骨髓:通过近红外光谱法定义一个用于研究血流动力学随年龄变化的模型。

Human tibia bone marrow: defining a model for the study of haemodynamics as a function of age by near infrared spectroscopy.

作者信息

Binzoni Tiziano, Leung Terence, Hollis Veronica, Bianchi Stefano, Fasel Jean H D, Bounameaux Henri, Hiltbrand Emile, Delpy Delpy

机构信息

Department of Radiology, Geneva University Hospital, Switzerland.

出版信息

J Physiol Anthropol Appl Human Sci. 2003 Sep;22(5):211-8. doi: 10.2114/jpa.22.211.

Abstract

A human model allowing the non-invasive study of bone marrow haemodynamics has been developed. A decrease in postischaemic tissue reperfusion capability (postischaemic hyperaemia) as a function of age (range 25-72 years) was observed both in the human tibia and tibialis anterior muscle. In the tibia bone marrow the reperfusion capability started to decrease after 50 years and was lower than for muscle for all the age range. Mean basal muscle O(2) saturation (80.8% at 25 years) decreases as a function of age (-0.35%+/-0.13% per year) whereas it remains constant for bone marrow (84.8+/-2.8%). A Monte Carlo simulation has been performed to evaluate the accuracy of the derived O(2) saturation measurements and has shown that this parameter is robust even in the presence of substantial noise. It has also been demonstrated that it is necessary to use a multi wavelength NIR spectrometer and a second derivative based fitting algorithm to obtain reliable measurements from the bone marrow, and that the tissue scattering changes occurring during the protocol do not allow the use of the standard near infrared spectroscopy algorithms. The human tibia bone marrow model presented here and the related measurement technique should enable access to new areas of physiological research.

摘要

已开发出一种可用于无创研究骨髓血流动力学的人体模型。在人类胫骨和胫骨前肌中,均观察到缺血后组织再灌注能力(缺血后充血)随年龄(范围为25 - 72岁)增长而下降。在胫骨骨髓中,再灌注能力在50岁后开始下降,且在所有年龄段均低于肌肉。平均基础肌肉氧饱和度(25岁时为80.8%)随年龄增长而下降(每年下降-0.35%±0.13%),而骨髓的氧饱和度保持恒定(84.8±2.8%)。已进行蒙特卡罗模拟以评估所推导的氧饱和度测量的准确性,结果表明即使存在大量噪声,该参数仍很稳健。还证明了有必要使用多波长近红外光谱仪和基于二阶导数的拟合算法来从骨髓中获得可靠测量值,并且在该方案过程中发生的组织散射变化不允许使用标准近红外光谱算法。此处介绍的人体胫骨骨髓模型及相关测量技术应能开启生理研究的新领域。

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