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首页> 外文期刊>Physics in medicine and biology. >A haemodynamic model for the physiological interpretation of in vivo measurements of the concentration and oxygen saturation of haemoglobin
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A haemodynamic model for the physiological interpretation of in vivo measurements of the concentration and oxygen saturation of haemoglobin

机译:血液动力学模型,用于对血红蛋白浓度和氧饱和度进行体内测量的生理解释

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摘要

We present a model that describes the effect of physiological parameters such as the speed of blood flow, local oxygen consumption, capillary recruitment, and vascular dilation/constriction on the concentration and oxygen saturation of haemoglobin in tissue. This model can be used to guide the physiological interpretation of haemodynamic and oximetric data collected in vivo with techniques such as optical imaging, near-infrared spectroscopy and functional magnetic resonance imaging. In addition to providing a formal description of well-established results (exercise-induced hyperemia, reperfusion hyperoxia, decrease in the concentration of deoxyhaemoglobin induced by brain activity, measurement of arterial saturation by pulse oximetry, etc.), this model suggests that the superposition of asynchronous contributions from the arterial, capillary and venous haemoglobin compartments may be at the origin of observed out-of-phase oscillations of the oxyhaemoglobin and deoxyhaemoglobin concentrations in tissue.
机译:我们提出了一个模型,该模型描述了诸如血流速度,局部耗氧量,毛细血管募集和血管扩张/收缩等生理参数对组织中血红蛋白浓度和氧饱和度的影响。该模型可用于指导通过光学成像,近红外光谱和功能磁共振成像等技术对体内血液动力学和血氧定量数据进行生理解释。除了提供正式结果的正式描述(运动引起的充血,再灌注性高氧,脑活动引起的脱氧血红蛋白浓度降低,通过脉搏血氧饱和度测定动脉饱和度等)之外,该模型还建议进行叠加来自动脉,毛细血管和静脉血红蛋白区室的异步作用的产生可能是观察到的组织中氧合血红蛋白和脱氧血红蛋白浓度异相振荡的起源。

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