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Assessment and in vitro experiment of artificial anal sphincter system based on rebuilding the rectal sensation function

机译:基于直肠感觉功能重建的人工肛门括约肌系统评估与体外实验

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摘要

In this paper, a novel artificial anal sphincter (AAS) system based on rebuilding the rectal sensation function is proposed to treat human fecal incontinence. The executive mechanism of the traditional AAS system was redesigned and integrated for a simpler structure and better durability. The novel executive mechanism uses a sandwich structure to simulate the basic function of the natural human anal sphincter. To rebuild the lost rectal sensation function caused by fecal incontinence, we propose a novel method for rebuilding the rectal sensation function based on an Optimal Wavelet Packet Basis (OWPB) using the Davies-Bouldin (DB) index and a support vector machine (SVM). OWPB using a DB index is used for feature vector extraction, while a SVM is adopted for pattern recognition. Furthermore, an in vitro experiment with the AAS system based on rectal sensation function rebuilding was carried out. Experimental results indicate that the novel executive mechanism can simulate the basic function of the natural human anal sphincter, and the proposed method is quite effective for rebuilding rectal sensation in patients.
机译:本文提出了一种基于重建直肠感觉功能的新型人工肛门括约肌(AAS)系统,用于治疗人类大便失禁。重新设计和集成了传统AAS系统的执行机构,以简化结构并提高耐用性。新颖的执行机构使用三明治结构来模拟天然人类肛门括约肌的基本功能。为了重建由大便失禁引起的直肠感觉功能丧失,我们提出了一种基于最佳小波包基础(OWPB),使用戴维斯-布尔丁(DB)指数和支持向量机(SVM)重建直肠感觉功能的新方法。 。使用DB索引的OWPB用于特征向量提取,而SVM用于模式识别。此外,还进行了基于直肠感觉功能重建的AAS系统的体外实验。实验结果表明,这种新颖的执行机制可以模拟人类天然肛门括约肌的基本功能,并且该方法对于重建患者的直肠感觉非常有效。

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