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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Feasibility study of intelligent autonomous determination of the bladder voiding need to treat bedwetting using ultrasound and smartphone ML techniques
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Feasibility study of intelligent autonomous determination of the bladder voiding need to treat bedwetting using ultrasound and smartphone ML techniques

机译:使用超声波和智能手机ML技术来治疗欺诈性空缺的智能自主测定的可行性研究

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Unsatisfactory cure rates for the treatment of nocturnal enuresis (NE), i.e. bed-wetting, have led to the need to explore alternative modalities. New treatment methods that focus on preventing enuretic episodes by means of a pre-void alerting system could improve outcomes for children with NE in many aspects. No such technology exists currently to monitor the bladder to alarm before bed-wetting. The aim of this study is to carry out the feasibility of building, refining and evaluating a new, safe, comfortable and non-invasive wearable autonomous intelligent electronic device to monitor the bladder using a single-element low-powered low-frequency ultrasound with the help of Machine Learning techniques and to treat NE by warning the patient at the pre-void stage, enhancing quality of life for these children starting from the first use. The sensitivity and specificity values are 0.89 and 0.93 respectively for determining imminent voiding need. The results indicate that customised imminent voiding need based on the expansion of the bladder can be determined by applying a single-element transducer on a bladder in intermittent manner. The acquired results can be improved further with a comfortable non-invasive device by adding several more features to the current features employed in this pilot study.
机译:治疗夜间遗尿(NE)的治疗率不令人满意,即床润湿,导致需要探索替代模式。通过预先空白警报系统预防静脉内发作的新治疗方法可以在许多方面改善儿童的患者。目前没有这样的技术在床上润湿前监测膀胱以报警。本研究的目的是开展建筑,炼油和评估新,安全,舒适,无侵入性的自主智能智能电子设备的可行性,以使用单元素低功耗低频超声监测膀胱监控膀胱机器学习技术的帮助和治疗NE通过警告患者在预禁止阶段,从第一次使用开始为这些儿童的生活质量提高。敏感性和特异性值分别为0.89和0.93,用于确定即将到来的空隙需求。结果表明,基于膀胱的膨胀,可以通过以间歇性方式在囊上施加单元素换能器来确定迫在眉睫的空隙需求。通过向该试点研究中采用的当前特征添加几个功能,可以通过舒适的非侵入装置进一步提高所获得的结果。

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