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Kirigami Strain Sensing on Balloon Catheters with Temporary Tattoo Paper

机译:Kirigami菌株在球囊导管感觉与临时纹身纸

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The current state of the art of balloon catheters relies solely on the application of a predetermined quantity of mechanical strain to the balloon during diagnostic and therapeutic procedures. In some cases, the surgeons can use radioactive-contrasting agents and x-ray screening to identify the correct position and size of the inflated balloon. Otherwise, there is little information on the inflated size of the balloon catheter in the occluded lumen. This gap in quantitative feedback of the ballooning behavior needs to be addressed to ensure safe operation. With the advancement in technology and breakthrough in flexible electronics in recent years, kirigami, an ancient cutting, bending and folding technique, is explored in the stretchable sensing field due to its ability to transform 2D planar patterns 3D geometry structures. On top of that, kirigami can increase the mechanical strain by over 300% depending on the different cuts and folds and sensitivity over 80%. This manuscript will address this limitation of conventional balloon catheters by introducing strain sensing using kirigami technology to achieve a better, safer, and more efficient treatment procedure. Experimental results show that the change in normalized resistance of the sensor is directly proportional to the change in the size of the balloon.
机译:球囊导管的当前状态仅依赖于在诊断和治疗程序期间在球囊中施加预定量的机械应变。在某些情况下,外科医生可以使用放射性 - 对比剂和X射线筛选来识别膨胀气球的正确位置和尺寸。否则,有关闭塞式腔内球囊导管的膨胀尺寸几乎没有信息。需要解决膨胀行为的定量反馈的这种差距,以确保安全运行。随着近年来柔性电子产品的技术和突破的进步,由于其改变了2D平面图案3D几何结构的能力,在可拉伸传感领域探讨了Kirigami,古老的切割,弯曲和折叠技术。首先,基提米可以根据不同的切割和折叠和敏感性超过80%,以超过300%将机械应变增加超过300%。通过使用Kirigami技术引入菌株感测来实现更好,更安全,更有效的治疗程序,将解决传统球囊导管的这种限制。实验结果表明,传感器的归一化电阻的变化与球囊尺寸的变化成正比。

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