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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Inducing therapeutic hypothermia via selective brain cooling: a finite element modeling analysis
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Inducing therapeutic hypothermia via selective brain cooling: a finite element modeling analysis

机译:通过选择性脑冷却诱导治疗性低温:有限元建模分析

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摘要

Therapeutic hypothermia is a treatment method to reduce brain injuries after stroke, especially for cerebral ischemia. This study investigates in the temperature distribution of the head within selective brain cooling (SBC). Anatomically accurate geometries based on CT images of head and neck regions are used to develop the 3D geometry and physical model for the finite element modeling. Two cooling methods, the direct head surface cooling strategy and the combination cooling strategy of both head and neck, are evaluated to analyze the inducing hypothermia. The results show that for direct head surface cooling, the scalp and skull temperatures decrease significantly as the blood perfusion rate is constrained, but it is hard to affect the brain core temperature. To achieve a lower cerebral temperature, combination cooling strategy of both head and neck is an effective method in improving deep brain cooling. In normal condition, the cerebral temperature is reduced by about 0.12 degrees C in 60min of hypothermia, while the temperature drop is approximately 0.98 degrees C in ischemic condition.
机译:治疗性低温是一种治疗方法,以减少脑卒中后的脑损伤,特别是对于脑缺血。本研究调查了选择性脑冷却(SBC)内的头部的温度分布。基于头部和颈部区域CT图像的解剖学准确的几何形状用于开发用于有限元建模的3D几何和物理模型。两种冷却方法,直接头表面冷却策略和头部和颈部的组合冷却策略,分析诱导体温过低。结果表明,对于直接头表面冷却,随着血液灌注速率受到约束,头皮和颅骨温度显着降低,但很难影响脑核心温度。为了实现较低的脑温度,头部和颈部的组合冷却策略是改善深脑冷却的有效方法。在正常情况下,脑温在60min的体温下减少约0.12℃,而温度下降在缺血性条件下约为0.98℃。

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