排尿
医学
神经调节
泌尿科
泌尿系统
尿道
膀胱
生物医学工程
刺激
内科学
作者
Joong Hoon Lee,Tae‐Min Jang,Jeong‐Woong Shin,Bong Hee Lim,Kaveti Rajaram,Won Bae Han,Gwan‐Jin Ko,Seung Min Yang,Sungkeun Han,Dong‐Je Kim,Heeseok Kang,Jun Hyeon Lim,Kyu‐Sung Lee,Eun-Kyoung Park,Suk‐Won Hwang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-04-18
卷期号:17 (9): 8511-8520
被引量:8
标识
DOI:10.1021/acsnano.3c00755
摘要
Current standard clinical options for patients with detrusor underactivity (DUA) or underactive bladder─the inability to release urine naturally─include the use of medications, voiding techniques, and intermittent catheterization, for which the patient inserts a tube directly into the urethra to eliminate urine. Although those are life-saving techniques, there are still unfavorable side effects, including urinary tract infection (UTI), urethritis, irritation, and discomfort. Here, we report a wireless, fully implantable, and expandable electronic complex that enables elaborate management of abnormal bladder function via seamless integrations with the urinary bladder. Such electronics can not only record multiple physiological parameters simultaneously but also provide direct electrical stimulation based on a feedback control system. Uniform distribution of multiple stimulation electrodes via mesh-type geometry realizes low-impedance characteristics, which improves voiding/urination efficiency at the desired times. In vivo evaluations using live, free-moving animal models demonstrate system-level functionality.
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