This study describes a theoretical model of brain cooling by intracarotid cold saline infusion which takes into account redistribution of cold perfusate through the circle of Willis (CoW) and cold venous return (VR) from the head. This model is developed in spherical coordinates on a four tissue layer hemispherical geometrical configuration. Temperature evolution is modeled according to the Pennes bioheat transfer equation. Simulations were run over a 1 hour period and 30 ml/min of freezing cold saline with the baseline model (no VR, no CoW), VR model (without CoW), and CoW model (with VR). The VR model demonstrates continuing temperature drop in the treatment region of the brain not observed in the baseline model and its final mean ipsilateral anterior temperature was approximately 31 degC. The temperature effect in the CoW model was present but less robust in the ipsilateral anterior region, as final temperature was 32 degC. However, cooling was also achieved in contralateral and posterior brain regions. This model continues to demonstrate the feasibility of intracarotid cold saline infusion for ischemic stroke therapy.
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机译:这项研究描述了一种通过颈动脉内冷盐水输注进行脑冷却的理论模型,该模型考虑了冷灌注液通过Willis圆(CoW)和从头部返回的冷静脉回流(VR)的重新分布。该模型是在四个组织层半球形几何构型上的球形坐标中开发的。温度变化根据Pennes生物传热方程建模。使用基线模型(无VR,无CoW),VR模型(无CoW)和CoW模型(有VR),在1小时内以30 ml / min的冷冻冷盐水进行模拟。 VR模型表明在基线模型中未观察到大脑治疗区域的持续温度下降,其最终平均同侧前部温度约为31摄氏度。由于最终温度为32℃,因此在CoW模型中存在温度效应,但在同侧前部区域的温度效应较弱。然而,在对侧和后脑区域也实现了冷却。该模型继续证明了颈动脉冷盐水输注治疗缺血性中风的可行性。
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