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基于电容式力传感器的实时热塑性面罩压力监测系统的开发

Development of a Real-Time Thermoplastic Mask Compression Force Monitoring System Using Capacitive Force Sensor.

作者信息

Kim Tae-Ho, Cho Min-Seok, Shin Dong-Seok, Shin Dong Ho, Kim Siyong

机构信息

Proton Therapy Center, National Cancer Center, Goyang, South Korea.

Department of Radiation Oncology, Yongin Severance Hospital, Yongin, South Korea.

出版信息

Front Robot AI. 2022 Jul 6;9:778594. doi: 10.3389/frobt.2022.778594. eCollection 2022.

Abstract

Thermoplastic masks keep patients in an appropriate position to ensure accurate radiation delivery. For a thermoplastic mask to maintain clinical efficacy, the mask should wrap the patient's surface properly and provide uniform pressure to all areas. However, to our best knowledge, no explicit method for achieving such a goal currently exists. Therefore, in this study, we intended to develop a real-time thermoplastic mask compression force (TMCF) monitoring system to measure compression force quantitatively. A prototype system was fabricated, and the feasibility of the proposed method was evaluated. The real-time TMCF monitoring system basically consists of four force sensor units, a microcontroller board (Arduino Bluno Mega 2560), a control PC, and an in-house software program. To evaluate the reproducibility of the TMCF monitoring system, both a reproducibility test using a micrometer and a setup reproducibility test using a head phantom were performed. Additionally, the reproducibility tests of mask setup and motion detection tests were carried out with a cohort of six volunteers. The system provided stable pressure readings in all 10 trials during the sensor unit reproducibility test. The largest standard deviation (SD) among trials was about 36 gf/cm (∼2.4% of the full-scale range). For five repeated mask setups on the phantom, the compression force variation of the mask was less than 39 gf/cm (2.6% of the full-scale range). We were successful in making masks together with the monitoring system connected and demonstrated feasible utilization of the system. Compression force variations were observed among the volunteers and according to the location of the sensor (among forehead, both cheekbones, and chin). The TMCF monitoring system provided the information in real time on whether the mask was properly pressing the human subject as an immobilization tool. With the developed system, it is possible to monitor the effectiveness of the mask in real time by continuously measuring the compression force between the mask and patient during the treatment. The graphical user interface (GUI) of the monitoring system developed provides a warning signal when the compression force of the mask is insufficient. Although the number of volunteers participated in the study was small, the obtained preliminary results suggest that the system could ostensibly improve the setup accuracy of a thermoplastic mask.

摘要

热塑性面罩可使患者保持在适当位置,以确保准确的放射治疗。为使热塑性面罩保持临床疗效,面罩应妥善包裹患者体表,并对所有区域提供均匀压力。然而,据我们所知,目前尚无实现这一目标的明确方法。因此,在本研究中,我们旨在开发一种实时热塑性面罩压缩力(TMCF)监测系统,以定量测量压缩力。制作了一个原型系统,并评估了所提方法的可行性。实时TMCF监测系统主要由四个力传感器单元、一个微控制器板(Arduino Bluno Mega 2560)、一台控制计算机和一个内部软件程序组成。为评估TMCF监测系统的可重复性,进行了使用千分尺的可重复性测试和使用头部模型的设置可重复性测试。此外,对六名志愿者进行了面罩设置的可重复性测试和运动检测测试。在传感器单元可重复性测试的所有10次试验中,该系统均提供了稳定的压力读数。各次试验中的最大标准差(SD)约为36 gf/cm(约为满量程范围的2.4%)。在模型上进行五次重复的面罩设置时,面罩的压缩力变化小于39 gf/cm(满量程范围的2.6%)。我们成功地将面罩与监测系统连接在一起,并证明了该系统的可行应用。在志愿者之间以及根据传感器位置(前额、双侧颧骨和下巴)观察到了压缩力变化。TMCF监测系统实时提供了关于面罩作为固定工具是否正确压迫人体受试者的信息。利用所开发的系统,在治疗期间通过持续测量面罩与患者之间的压缩力,可以实时监测面罩的有效性。所开发的监测系统的图形用户界面(GUI)在面罩压缩力不足时会发出警告信号。尽管参与该研究的志愿者数量较少,但所获得的初步结果表明,该系统表面上可以提高热塑性面罩的设置精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f25/9298856/3e67b87541f5/frobt-09-778594-g001.jpg

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