College of Communication Engineering, Chongqing University, Shapingba, Chongqing, 400044, China.
GIOME, Department of Surgery Prince of Wales Hospital, The Chinese University of Hong Kong, Shatin, NT, Hong Kong.
Ann Biomed Eng. 2019 Feb;47(2):576-589. doi: 10.1007/s10439-018-02149-1. Epub 2018 Oct 11.
During defecation, solid, semisolid or liquid stools are eliminated via the anus in a complex physiological process. Up to 25% of the population are affected by anorectal disorders that are poorly recognized and treated. We developed a new bionics device, a simulated stool named Fecobionics, to replace several current tests of anorectal function. Fecobionics was developed to simulate the defecation process that depends on rectal forces, the anorectal size angle, and anorectal size and sensitivity. Fecobionics provided axial pressure signatures, measurement of bending (anorectal angle) and geometric mapping in a single examination. It had the consistency and shape of normal stool. The device had a soft core with embedded electronics and a bag for distension. The paper describes the device development and validation. Furthermore, data were obtained in preliminary experiments in pigs, healthy human subjects and patients with focus on four important features of the system, i.e. measurements of pressure signatures, bending characteristics, impedance measurements and data transmission. Accurate pressure and orientation data as well as geometric profiles were successfully obtained on the bench as well as in vivo in pigs and human subjects during defecation. Fecobionics is a novel technology imitating defecation. The clinical future ultimately depends on its ability to impact on daily treatment of anorectal disorders. A potential long-term clinical application is use of the device for biofeedback training for dyssynergic defecation.
在排便过程中,固体、半固体或液体粪便通过肛门在一个复杂的生理过程中排出。多达 25%的人口受到肛肠疾病的影响,这些疾病未得到充分认识和治疗。我们开发了一种新的仿生学设备,一种名为 Fecobionics 的模拟粪便,以替代目前几种肛肠功能测试。Fecobionics 的开发是为了模拟依赖直肠力、肛肠大小角以及肛肠大小和敏感性的排便过程。Fecobionics 提供了轴向压力特征,可在单次检查中测量弯曲(肛肠角度)和几何映射。它具有正常粪便的一致性和形状。该设备具有一个带有嵌入式电子设备的软核和一个用于膨胀的袋子。本文描述了该设备的开发和验证。此外,我们还在猪、健康人体受试者和患者中进行了初步实验,获得了数据,重点关注该系统的四个重要特征,即压力特征、弯曲特性、阻抗测量和数据传输的测量。在排便过程中,我们成功地在 bench 以及猪和人体受试者中获得了准确的压力和方向数据以及几何轮廓。Fecobionics 是一种模仿排便的新技术。该技术的临床应用最终取决于其是否能够影响肛肠疾病的日常治疗。该设备的一个潜在长期临床应用是将其用于协同性排便的生物反馈训练。