A New Double Uniform Radial Clamping Artificial Anal Sphincter Device

ABSTRACT Objectives Artificial anal sphincters are an important option for patients with severe anal incontinence. However, existing artificial anal sphincters still present safety and effectiveness concerns in animal experiments and clinical applications. Based on these problems, a novel double uniform radial clamping artificial anal sphincter device was proposed. Methods In this study, a novel double uniform radial clamping artificial anal sphincter device was designed. The constant‐force characteristics of the device and its mechanical interaction with intestinal tissue were evaluated using finite element analysis. Results The simulation results showed that the maximum equivalent stresses on the outer and inner surfaces of the intestinal wall were approximately 147 and 159 kPa, respectively. Regions of elevated equivalent stress were mainly localized near the bilateral clamping regions. The reaction force of the shape memory alloy constant‐force mechanism reached a peak value of 6.23 N at a displacement of 2.48 mm. Over the displacement range of 3.25–6.35 mm, the reaction force remained between 5.78 and 6.07 N, with a mean value of approximately 5.89 N, indicating an approximately constant‐force plateau. Conclusions The proposed artificial anal sphincter provides a novel double uniform radial clamping design. Finite element analysis characterized the local mechanical response of the intestinal wall and the constant‐force behavior of the device, providing preliminary mechanical information for further experimental optimization and in vivo validation.

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Publication Details

Journal
Artificial Organs
Published
2026-09-21
DOI
https://doi.org/10.1111/aor.70253
Primary Topic
Pelvic floor disorders treatments
Type
article
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article

A New Double Uniform Radial Clamping Artificial Anal Sphincter Device

Yinhao Wang, Minghui Wang, Siyuan Chen, Hongliu Yu
Artificial Organs
Pelvic floor disorders treatments
article

A New Double Uniform Radial Clamping Artificial Anal Sphincter Device

Yinhao Wang, Minghui Wang, Siyuan Chen, Hongliu Yu
article en

Abstract

ABSTRACT Objectives Artificial anal sphincters are an important option for patients with severe anal incontinence. However, existing artificial anal sphincters still present safety and effectiveness concerns in animal experiments and clinical applications. Based on these problems, a novel double uniform radial clamping artificial anal sphincter device was proposed. Methods In this study, a novel double uniform radial clamping artificial anal sphincter device was designed. The constant‐force characteristics of the device and its mechanical interaction with intestinal tissue were evaluated using finite element analysis. Results The simulation results showed that the maximum equivalent stresses on the outer and inner surfaces of the intestinal wall were approximately 147 and 159 kPa, respectively. Regions of elevated equivalent stress were mainly localized near the bilateral clamping regions. The reaction force of the shape memory alloy constant‐force mechanism reached a peak value of 6.23 N at a displacement of 2.48 mm. Over the displacement range of 3.25–6.35 mm, the reaction force remained between 5.78 and 6.07 N, with a mean value of approximately 5.89 N, indicating an approximately constant‐force plateau. Conclusions The proposed artificial anal sphincter provides a novel double uniform radial clamping design. Finite element analysis characterized the local mechanical response of the intestinal wall and the constant‐force behavior of the device, providing preliminary mechanical information for further experimental optimization and in vivo validation.

Artificial Organs
University of Shanghai for Science and Technology (CN)
Openalex Percentile: Top 10%
Pelvic floor disorders treatments
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A New Double Uniform Radial Clamping Artificial Anal Sphincter Device — Yinhao Wang, Minghui Wang, et al. · Artificial Organs (2026) | TGRS Research Map | TGRS