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ELECTRICAL INHIBITOR FOR TOCOLYSIS

机译:溶菌抑制剂

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Preterm birth (PTB) is one of the leading causes of neonatal morbidities and mortalities. Limited methods are available to physicians for mitigating PTB, thus posing an urgent need to develop effective methods for its prevention. In prior research, a benchtop electronic uterine control device (EUCD) was developed for tocolysis through injection of current pulses. However, the benchtop version is wall tethered and constrains patients to hospitals, i.e., it is unsuitable for deployment in outpatient or home settings. This paper focuses on the development of a mechatronics-based, low-cost, battery-powered, portable, and reproducible EUCD, which is suitable for use in home and clinical environments. The developed mechatronic version is validated for electrical performance with resistive load-tests, which indicate that the mechatronic device can generate current pulses similar to the existing benchtop EUCD. Furthermore, the signals generated from the device are evaluated for repeatability using coefficient of variation (CV) analysis and the results indicate that the mechatronic version can produce repeatable frequency (1-100Hz), amplitude (1-17mA), and pulse width (1-120ms) modulated current signals. An internet of medical things (/oMT) methodology is discussed to enable seamless transition of the developed device from a clinical environment to a home-based setting for remote use by the patients.
机译:早产(PTB)是新生儿发病和死亡的主要原因之一。对于医生而言,用于缓解PTB的方法有限,因此迫切需要开发有效的预防方法。在先前的研究中,开发了台式电子子宫控制设备(EUCD),用于通过注入电流脉冲进行宫缩。然而,台式版本是束缚在墙壁上的,并且将患者约束到医院,即,它不适合在门诊或家庭环境中部署。本文重点研究基于机电一体化,低成本,电池供电,便携式和可复制的EUCD的开发,该产品适用于家庭和临床环境。所开发的机电一体化版本已通过电阻负载测试验证了电气性能,这表明机电一体化设备可以产生类似于现有台式EUCD的电流脉冲。此外,使用变异系数(CV)分析评估从设备产生的信号的可重复性,结果表明,机电一体化版本可产生可重复的频率(1-100Hz),幅度(1-17mA)和脉冲宽度(1 -120ms)调制电流信号。讨论了医疗物联网(/ oMT)方法,以使已开发的设备从临床环境无缝过渡到基于家庭的环境,以供患者远程使用。

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