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Proof-of-Concept Prototype for Noninvasive Intracranial Pressure Monitoring Using Ocular Hemodynamics Under Applied Force

机译:在施加力的情况下使用眼部血流动力学进行无创颅内压监测的概念验证原型

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摘要

Studies have suggested that elevated cerebrospinal fluid (CSF) pressure can have a damaging effect on the optic nerve and visual acuity. There is need for a noninvasive CSF pressure measurement technique. A portable device for noninvasive intracranial pressure (ICP) monitoring would have a significant impact on clinical care. A proof-of-concept prototype is used to test the feasibility of a technique for monitoring ICP changes. The proposed methodology utilizes transcranial Doppler ultrasonography to monitor blood flow through the ophthalmic and central retinal arteries while forces are applied to the cornea by a controlled actuator. Control algorithms for the device were developed and tested using an integrated experimental platform. Preliminary results using tissue-mimicking materials show the ability to differentiate between materials of differing stiffness that simulates different levels of ICP. These experiments are an initial step toward a handheld noninvasive ICP monitoring device.
机译:研究表明,脑脊液(CSF)压力升高可能对视神经和视敏度造成损害。需要一种非侵入性的CSF压力测量技术。用于无创颅内压(ICP)监测的便携式设备将对临床护理产生重大影响。概念验证原型用于测试监视ICP变化的技术的可行性。所提出的方法利用经颅多普勒超声检查来监测流经眼科和视网膜中央动脉的血流,同时通过受控的执行器向角膜施加力。使用集成的实验平台开发并测试了该设备的控制算法。使用组织模拟材料的初步结果表明,可以区分具有不同刚度的材料,这些材料可以模拟ICP的不同水平。这些实验是迈向手持式非侵入式ICP监测设备的第一步。

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