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Optical force and distance sensing in intraoral devices for stroke rehabilitation: a distance calibration and force classification approach

机译:中风康复口内装置中的光学力和距离感测:距离校准和力分类方法

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Stroke survivors often suffer from oro-facial impairments, affecting swallowing function and speech production. Measuring tongue pressure and position intraorally can help to improve therapy for both symptoms, but space inside the oral cavity is extremely limited and such devices can easily be prohibitively large and obstructive if too many sensors are needed. In this work, we present our efforts to sense the force of the tongue exerted against the hard palate and the tongue-palate distance, using only optical proximity sensors. To explore the feasibility and accuracy of this approach and to evaluate the selected sensor, we conducted a study with 10 subjects and measured the sensor's response to 10 discrete distances ranging from 0mm to 30mmbetween tongue and sensor, and to a continuously increasing tongue force against the sensor from 0.1N to 8N. For distance measurements, an existing in-situ calibration method was applied and verified that yielded errors of less than 2mm for the estimated distances in nearly every case. For force measurements, a Bayesian classification approach was adopted to map sensor data to two force regions (below and above a certain boundary value), where up to 84.1% (average: 71.7 %) of ADC values were classified correctly within-sample.
机译:中风幸存者经常遭受奥罗面部障碍,影响吞咽功能和语音生产。测量舌胁迫和位置口服可以帮助改善两种症状的治疗,但口腔内的空间非常有限,如果需要太多的传感器,这种装置很容易过度且阻塞性。在这项工作中,我们努力使用仅使用光学接近传感器来感测施加舌头和舌腭距离的舌头的力量。为了探讨这种方法的可行性和准确性并评估所选传感器,我们进行了10个科目的研究,并测量了传感器对10mm至30mMbetwe舌和传感器的10个离散距离的响应,以及持续增加舌力传感器从0.1n到8n。对于距离测量,施加现有的原位校准方法并验证,在几乎每种情况下估计距离小于2mm的误差。对于力测量,采用贝叶斯分类方法将传感器数据映射到两个力区域(低于和高于一定的边值),其中在样品中正确分类了高达84.1%(平均:71.7%)的ADC值。

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