Bladder monitoring with time-frequency-difference electrical impedance tomography technique

IF 5.6 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY Measurement Pub Date : 2025-02-28 DOI:10.1016/j.measurement.2025.117162
Aiyada Phisaiphan, Phanpasorn Laor-Iam, Chamaiporn Sukjamsri, Anurak Dowloy, Taweechai Ouypornkochagorn
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Abstract

Patients experiencing urinary bladder dysfunction have difficulties sensing the bladder fullness and this affects their quality of life. Continuous bladder volume measurement assists in determining when voiding is necessary. Electrical Impedance Tomography (EIT) is a noninvasive technique that can be used for monitoring the bladder volume by producing images of conductivity distribution, and the time-difference EIT (tdEIT) is usually used. Even though the global conductivity obtained from the images is reported the possibility to reflect the volume, the investigations were restricted to well-controlled environments or short-term measurements where long-term measurements with moderate body movement allowed are practically expected. The movement, however, could immensely affect the image reconstruction. In this study, a time–frequency difference EIT (tfdEIT) is proposed. The tfdEIT was mainly based on frequency-difference imaging and adapted to use in the time-difference manner. The investigation was conducted on five female participants, allowing moderate movement of the lower body, and the measurement lasted for ∼1 h. Fabric electrodes were also developed for this purpose. The tfdEIT could serve long-term and movement-allowed measurement. Artifacts in the images were significantly reduced with the tfdEIT. The global conductivity of tfdEIT could reflect changes in bladder volume with a higher average correlation coefficient (r = 0.84) compared to tdEIT, where r was only 0.66. Fabric electrodes could handle long-term measurement with easy and firm attachment as well.
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利用时频差电阻抗断层扫描技术进行膀胱监测
患有膀胱功能障碍的患者很难感觉到膀胱充盈,这影响了他们的生活质量。连续测量膀胱容量有助于确定何时需要排尿。电阻抗断层扫描(EIT)是一种无创技术,可以通过产生电导率分布图像来监测膀胱体积,通常使用时差EIT (tdEIT)。尽管从图像中获得的全球电导率有可能反映体积,但调查仅限于控制良好的环境或短期测量,而实际上期望允许适度的身体运动进行长期测量。然而,这种运动可能会极大地影响图像的重建。本研究提出一种时频差分EIT (tfdEIT)。该方法主要以频差成像为基础,并适应于时差成像。调查对象为5名女性,允许下半身适度活动,测量时间为1小时。为此还开发了织物电极。tfdEIT可以用于长期和允许移动的测量。使用tfdEIT后,图像中的伪影明显减少。与tdEIT相比,tfdEIT的整体电导率可以反映膀胱体积的变化,其平均相关系数(r = 0.84)更高,而tdEIT的r仅为0.66。织物电极可以处理长期测量,并且易于牢固地连接。
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来源期刊
Measurement
Measurement 工程技术-工程:综合
CiteScore
10.20
自引率
12.50%
发文量
1589
审稿时长
12.1 months
期刊介绍: Contributions are invited on novel achievements in all fields of measurement and instrumentation science and technology. Authors are encouraged to submit novel material, whose ultimate goal is an advancement in the state of the art of: measurement and metrology fundamentals, sensors, measurement instruments, measurement and estimation techniques, measurement data processing and fusion algorithms, evaluation procedures and methodologies for plants and industrial processes, performance analysis of systems, processes and algorithms, mathematical models for measurement-oriented purposes, distributed measurement systems in a connected world.
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