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用于检测分流失败的多模式传感能力。

Multimodal Sensing Capabilities for the Detection of Shunt Failure.

机构信息

Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX 77843, USA.

Department of Neurosurgery, Barrow Neurological Institute, Phoenix, AZ 85013, USA.

出版信息

Sensors (Basel). 2021 Mar 3;21(5):1747. doi: 10.3390/s21051747.

Abstract

Hydrocephalus is a medical condition characterized by the abnormal accumulation of cerebrospinal fluid (CSF) within the cavities of the brain called ventricles. It frequently follows pediatric and adult congenital malformations, stroke, meningitis, aneurysmal rupture, brain tumors, and traumatic brain injury. CSF diversion devices, or shunts, have become the primary therapy for hydrocephalus treatment for nearly 60 years. However, routine treatment complications associated with a shunt device are infection, obstruction, and over drainage. Although some (regrettably, the minority) patients with shunts can go for years without complications, even those lucky few may potentially experience one shunt malfunction; a shunt complication can require emergency intervention. Here, we present a soft, wireless device that monitors distal terminal fluid flow and transmits measurements to a smartphone via a low-power Bluetooth communication when requested. The proposed multimodal sensing device enabled by flow sensors, for measurements of flow rate and electrodes for measurements of resistance in a fluidic chamber, allows precision measurement of CSF flow rate over a long time and under any circumstances caused by unexpected or abnormal events. A universal design compatible with any modern commercial spinal fluid shunt system would enable the widespread use of this technology.

摘要

脑积水是一种医学病症,其特征是脑腔(称为脑室)中的脑脊液(CSF)异常积聚。它通常继发于儿科和成人先天性畸形、中风、脑膜炎、动脉瘤破裂、脑肿瘤和外伤性脑损伤。CSF 引流装置(即分流器)已成为脑积水治疗的主要方法,至今已有近 60 年的历史。然而,与分流器相关的常规治疗并发症包括感染、阻塞和过度引流。尽管一些(遗憾的是,是少数)分流器患者多年没有并发症,但即使是这些幸运的少数人也可能会出现一次分流器故障;分流器并发症可能需要紧急干预。在这里,我们提出了一种柔软、无线的装置,该装置可监测远端终端的流体流动,并在请求时通过低功耗蓝牙通信将测量结果传输到智能手机。该设备采用流量传感器来实现多模态传感,用于测量流量率,以及采用电极来测量流道中的电阻,可在长时间内精确测量 CSF 流量,并且可以在任何情况下对意外或异常事件做出响应。与任何现代商业性脑脊液分流系统兼容的通用设计将使这项技术得到广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae4c/7959456/ae4fa587b1c5/sensors-21-01747-g001.jpg

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