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A 3D Printed Implantable Device for Voiding the Bladder Using Shape Memory Alloy (SMA) Actuators

机译:使用形状记忆合金(SMA)作动器行膀胱的3D打印植入式设备

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摘要

Underactive bladder or detrusor underactivity (DU) is defined as a reduction of contraction strength or duration of the bladder wall. Despite the serious healthcare implications of DU, there are limited solutions for affected individuals. A flexible 3D printed implantable device driven by shape memory alloys (SMA) actuators is presented here for the first time to physically contract the bladder to restore voluntary control of the bladder for individuals suffering from DU. This approach is used initially in benchtop experiments with a rubber balloon acting as a model for the rat bladder to verify its potential for voiding, and that the operating temperatures are safe for the eventual implantation of the device in a rat. The device is then implanted and tested on an anesthetized rat, and a voiding volume of more than 8% is successfully achieved for the SMA‐based device without any surgical intervention or drug injection to relax the external sphincter.
机译:膀胱活动不足或逼尿肌活动不足(DU)定义为收缩强度或膀胱壁持续时间减少。尽管DU严重影响了医疗保健,但针对受影响个体的解决方案仍然有限。首次在此展示由形状记忆合金(SMA)致动器驱动的柔性3D打印可植入设备,以使膀胱物理收缩,恢复患有DU的个体对膀胱的自愿控制。这种方法最初是在台式实验中使用的,橡胶气球充当大鼠膀胱的模型,以验证其排尿的潜力,并且操作温度对于最终将设备植入大鼠是安全的。然后将该设备植入并在麻醉的大鼠上进行测试,基于SMA的设备无需任何手术干预或药物注射以使外部括约肌松弛的情况下,成功实现了超过8%的排尿量。

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