Kang Byeong-Il, Kim Aram, Kim Sehwan
Department of Biomedical Engineering, Beckman Laser Institute Korea, School of Medicine, Dankook University, Cheonan, Korea.
MEDiThings Co., Ltd., Seoul, Korea.
Int Neurourol J. 2023 May;27(Suppl 1):S27-33. doi: 10.5213/inj.2346100.050. Epub 2023 May 31.
Current guidelines recommend clean intermittent catheterization (CIC) at regular time intervals for patients with spinal cord injuries; however, many patients experience difficulties. Performing time-based CIC outside the home is a significant burden for patients. In this study, we aimed to overcome the limitations of the current guidelines by developing a digital device to monitor bladder urine volume in real-time.
The optode sensor is a near-infrared spectroscopy (NIRS)-based wearable device intended to be attached to the skin of the lower abdomen where the bladder is located. The sensor's primary function is to detect changes in urine volume within the bladder. An in vitro study was conducted using a bladder phantom that mimicked the optical properties of the lower abdomen. To validate the data in the human body at the proof-of-concept level, one volunteer attached the device to the lower abdomen to measure the light intensity between the first voiding and immediately before the second voiding.
The degree of attenuation at the maximum test volume was equivalent across experiments, and the optode sensor with multiplex measurements demonstrated robust performance for patient diversity. Moreover, the symmetric feature of the matrix was deemed a potential parameter for identifying the accuracy of sensor localization in a deep-learning model. The validated feasibility of the sensor showed almost the same results as an ultrasound scanner, which is routinely used in the clinical field.
The optode sensor of the NIRS-based wearable device can measure the urine volume in the bladder in real-time.
当前指南建议脊髓损伤患者定期进行清洁间歇性导尿(CIC);然而,许多患者存在困难。在家庭以外的地方进行基于时间的CIC对患者来说是一项重大负担。在本研究中,我们旨在通过开发一种数字设备来实时监测膀胱尿量,以克服当前指南的局限性。
光极传感器是一种基于近红外光谱(NIRS)的可穿戴设备,旨在附着于膀胱所在的下腹部皮肤。该传感器的主要功能是检测膀胱内尿量的变化。使用模拟下腹部光学特性的膀胱模型进行了一项体外研究。为了在概念验证层面验证人体数据,一名志愿者将该设备附着在下腹部,以测量第一次排尿和第二次排尿前即刻之间的光强度。
在最大测试体积下的衰减程度在各实验中相当,具有多重测量功能的光极传感器对患者个体差异表现出稳健的性能。此外,矩阵的对称特征被认为是在深度学习模型中识别传感器定位准确性的一个潜在参数。该传感器经过验证的可行性显示出与临床常规使用的超声扫描仪几乎相同的结果。
基于NIRS的可穿戴设备的光极传感器能够实时测量膀胱内的尿量。