Personalised mechatronic valve time-schedule optimiser for hydrocephalus shunt

N. Al-Zubi, W. Al-Nuaimy, Mohammad Al-Hadidi
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引用次数: 1

Abstract

Hydrocephalus is an excessive accumulation of the cerebrospinal fluid (CSF) in the ventricles of the brain, without treatment it leads in brain damage. The usual treatment is a shunt procedure implanted into the ventricles of the brain to drain the excess fluid to another part of the body. Current shunts are controlled by a pressure dependent valve, while recent developed shunts are utilising mechatronic valves. Compared to the current differential pressure valves, mechatronic valves are regulated by time-based schedule rather than differential pressure across the valve. Therefore, it is important that this time schedule is chosen properly for each patient so that a normal ICP is preserved. Choosing proper time schedule for each patient is still one of the challenges facing the implementation of such valves. This work presents a new method to propose optimal valve time-schedule using an ICP dynamics model and patient's ICP traces, so that shunt valves can be configured accordingly. This method presents a precise and efficient way of how the ICP model can be utilised in evaluating the patient's ICP traces and hence proposing a personalised optimal valve time-schedule as a function of mean measured ICP for each individual patient that can keep the ICP within the normal levels.
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脑积水分流的个性化机电阀门时间表优化器
脑积水是脑脊液(CSF)在脑室的过度积聚,如果不进行治疗,就会导致脑损伤。通常的治疗方法是在脑室植入分流术,将多余的液体排出到身体的另一部分。电流分流由压力相关阀控制,而最近开发的分流使用机电阀。与目前的差压阀相比,机电阀是通过基于时间的调度来调节的,而不是通过阀上的压差。因此,为每位患者选择合适的时间安排以保留正常的ICP是很重要的。为每位患者选择合适的时间安排仍然是实施此类瓣膜所面临的挑战之一。本文提出了一种利用ICP动力学模型和患者的ICP轨迹来提出最佳瓣膜时间表的新方法,从而可以相应地配置分流阀。该方法提供了一种精确而有效的方法,如何利用ICP模型来评估患者的ICP轨迹,从而提出个性化的最佳瓣膜时间表,作为每个患者平均测量ICP的函数,可以将ICP保持在正常水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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