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Tongue Pressure Sensing Array Integrated with a System-on-Chip Embedded in a Mandibular Advancement Splint

机译:舌压感测阵列与嵌入在下颌前倾夹板中的片上系统集成

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Obstructive sleep apnea (OSA), which is caused by obstructions of the upper airway, is a syndrome with rising prevalence. Mandibular advancement splints (MAS) are oral appliances for potential treatment of OSA. This work proposes a highly-sensitive pressure sensing array integrated with a system-on-chip (SoC) embedded in a MAS. The device aims to measure tongue pressure distribution in order to determine the efficacy of the MAS for treating OSA. The flexible sensing array consists of an interdigital electrode pair array assembled with conductive polymer films and an SoC capable of retrieving/storing data during sleep, and transmitting data for analysis after sleep monitoring. The surfaces of the conductive polymer films were patterned with microdomed structures, which effectively increased the sensitivity and reduced the pressure sensing response time. The measured results also show that the crosstalk effect between the sensing elements of the array was negligible. The sensitivity of the sensing array changed minimally after the device was submerged in water for up to 100 h.
机译:由上呼吸道阻塞引起的阻塞性睡眠呼吸暂停(OSA)是一种患病率上升的综合征。下颌前倾夹板(MAS)是用于潜在治疗OSA的口腔器械。这项工作提出了一种高度敏感的压力感测阵列,该阵列与嵌入在MAS中的片上系统(SoC)集成在一起。该设备旨在测量舌头压力分布,以确定MAS治疗OSA的功效。柔性传感阵列由一个叉指电极对阵列和一个SoC组成,该叉指电极对阵列与导电聚合物薄膜组装在一起,该SoC可以在睡眠过程中检索/存储数据,并在睡眠监视后传输数据以进行分析。导电聚合物薄膜的表面采用微孔结构构图,有效地提高了灵敏度并减少了压力感应响应时间。测量结果还表明,阵列传感元件之间的串扰效应可忽略不计。将设备浸入水中长达100小时后,传感阵列的灵敏度变化很小。

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