Wang Shengming, Yang Luoqi, Jiang Haofei, Xia Jie, Li Wenjuan, Zhang Zujuan, Zhang Shaomin, Jin Hao, Luo Jikui, Dong Shurong, Yu Yanlan, Xie Zhenwei
Key Lab. of Advanced Micro/Nano Electronic Devices & Smart Systems of Zhejiang, College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou 310027, China.
Department of Gynecology, Women's Hospital, Zhejiang University School of Medicine, Hangzhou 310006, China.
Diagnostics (Basel). 2023 Mar 17;13(6):1158. doi: 10.3390/diagnostics13061158.
The pelvic floor dysfunction (PFD) has become a serious public health problem. Accurate diagnosis of regional pelvic floor muscle (PFM) malfunctions is vitally important for the prevention and treatment of PFD. However, there is a lack of reliable diagnostic devices to evaluate and diagnose regional PFM abnormality. In this work, we developed a multifunctional evaluation technology (MET) based on a novel airbag-type stretchable electrode array probe (ASEA) for the diagnosis of malfunctions of regional PFM. The inflatable ASEA has specifically distributed 32 electrodes along the muscles, and is able to adapt to different human bodies for tight contact with the muscles. These allow synchronous collection of high-quality multi-channel surface electromyography (MC-sEMG) signals, and then are used to diagnose regional PFM malfunctions and evaluate inter-regional correlation. Clinical trial was conducted on 15 postpartum stress urinary incontinence (PSUI) patients and 15 matched asymptomatic women. Results showed that SUI patients responded slowly to the command and have symptoms of muscle strength degeneration. The results were consistent with the relevant clinical manifestations, and proved the reliability of MET for multifunctional PFM evaluation. Furthermore, the MET can diagnose malfunctions of regional PFM, which is inaccessible with existing technology. The results also showed that the dysfunction of PSUI patients is mainly located in iliococcygeus, pubococcygeus, and urethral sphincter regions, and there is a weak correlation between these specific regions and nearby regions. In conclusion, MET provides a point-of-care diagnostic method for abnormal function of regional PFM, which has a potential for the targeted point-to-point electrical stimulation treatment and PFD pathology research.
盆底功能障碍(PFD)已成为一个严重的公共卫生问题。准确诊断局部盆底肌肉(PFM)功能障碍对于PFD的预防和治疗至关重要。然而,目前缺乏可靠的诊断设备来评估和诊断局部PFM异常。在这项工作中,我们基于一种新型气囊式可拉伸电极阵列探头(ASEA)开发了一种多功能评估技术(MET),用于诊断局部PFM功能障碍。可充气的ASEA沿肌肉特定分布有32个电极,能够适应不同人体与肌肉紧密接触。这使得能够同步采集高质量的多通道表面肌电图(MC-sEMG)信号,进而用于诊断局部PFM功能障碍并评估区域间的相关性。对15名产后压力性尿失禁(PSUI)患者和15名匹配的无症状女性进行了临床试验。结果显示,SUI患者对指令反应迟缓,并有肌肉力量退化的症状。结果与相关临床表现一致,证明了MET用于多功能PFM评估的可靠性。此外,MET能够诊断现有技术无法触及的局部PFM功能障碍。结果还表明,PSUI患者的功能障碍主要位于髂尾肌、耻骨尾骨肌和尿道括约肌区域,这些特定区域与附近区域之间的相关性较弱。总之,MET为局部PFM功能异常提供了一种即时诊断方法,具有针对性点对点电刺激治疗和PFD病理学研究的潜力。