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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Limits and Opportunities for Miniaturizing Ultrasonic Surgical Devices Based on a Langevin Transducer
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Limits and Opportunities for Miniaturizing Ultrasonic Surgical Devices Based on a Langevin Transducer

机译:基于Langevin换能器的小型化超声波外科手术装置的限制和机遇

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摘要

Minimally invasive surgery offers opportunities for reduced morbidities, faster postoperative recovery, and reduced costs, and is a major focus of surgical device innovation. For ultrasonic surgical devices, which offer benefits of high precision, low force, and tissue selectivity in surgical procedures, there exist laparoscopic ultrasonic shears for minimally invasive surgeries that combine tissue cutting with vessel hemostasis and sealing functions. Another approach to laparoscopy that could enable new procedures, and increase the sites of surgeries that could be reached by an ultrasonic device, involves integrating a miniature ultrasonic tool with a flexible surgical robot. However, miniaturization presents challenges in delivering the ultrasonic vibrational energy required to cut hard and soft tissues, partly due to the concomitant small volume of piezoelectric material. This article aims to provide insights into the trade-offs between transducer size, volume of piezoceramic material, resonance frequency, and the achievable displacement amplitude of devices that, consistent with current ultrasonic surgical tools, are based on a bolted Langevin transducer (BLT) and tip. Different configurations of BLTs are studied, including a cascaded version, simple bar versions, and BLTs with different front mass geometries. Results show that a BLT with a larger number of piezoceramic rings exhibits a higher coupling coefficient k(eff) but with the compromise of a lower mechanical Q and stronger nonlinear response at increasing excitation levels. Displacement amplitude is reduced considerably when a BLT is excited at a higher harmonic, where the PZT rings are maintained at a nodal plane, and the resonance frequency shift at increasing excitation levels increases significantly. The electromechanical and dynamic characteristics of a cascaded transducer excited in its third longitudinal mode (L3) are almost equivalent to a much shorter version of a BLT driven at the same frequency but in its first longitudinal mode (L1), showing that a cascaded BLT can be a realistic proxy for studying the dynamics of small BLT devices. A new figure of merit is proposed that is the product of Q, k(eff)(2), and gain, which accounts for the gain of cylindrical BLTs which is shown not to be unity. It also proves effective as it incorporates the key factors affecting the achievable displacement amplitude of a BLT, including for BLTs with gain profiles in the front mass. The order of highest to lowest amplitude of a series of six gain-profile BLTs matches the order estimated by the figure of merit. It is shown that a BLT with a stepped profile front mass can achieve displacement that has the potential to cut hard or soft tissue and exhibits the smallest shifts in resonance frequency at increasing excitation levels.
机译:微创手术,为降低病态,更快的术后回收和降低成本提供了机会,是手术设备创新的主要重点。对于超声手术器件,提供高精度,低力和组织选择性的益处,存在腹腔镜超声剪切,用于微创手术,将组织切割与血管止血和密封功能相结合。腹腔镜检查的另一种方法可以实现新程序,并增加超声波装置可以达到的手术部位,涉及与柔性外科机器人集成微型超声波工具。然而,小型化呈现挑战,在提供切割硬质和软组织所需的超声波振动能量,部分原因是由于伴随的小体积的压电材料。本文旨在为换能器大小,压电陶瓷材料体积,共振频率和可实现的设备的折叠幅度之间的权衡提供见解,这些设备的一致性超声外科手术工具一致地基于螺栓Langevin换能器(BLT)和提示。研究了不同的BLT配置,包括级联版本,简单的栏版本,以及具有不同前方质量几何形状的BLT。结果表明,具有较大数量的压电陶瓷环的BLT表现出更高的耦合系数K(EFF),但随着较低的机械Q和较强的非线性响应在增加的激发水平时,具有折衷方型。当在更高的谐波处激发BLT时,位移幅度显着减小,其中PZT环保持在节点平面上,并且在增加激发水平时的谐振频率偏移显着增加。在其第三纵向模式(L3)中激发的级联换能器的机电和动态特性几乎相当于以相同频率驱动的BLT的更短的版本,而是在其第一纵向模式(L1)中,显示级联的BLT可以是研究小型电机设备动态的现实代理。提出了一种新的优点图,即Q,K(EFF)(2)和增益的乘积,其占圆柱形BLT的增益,其被示出不为单位。它还证明了一种有效的作用,因为它结合了影响到可实现的BLT的位移幅度的关键因素,包括前质量中具有增益型材的BLT。一系列六个增益型BLT的最高幅度最高的顺序与Merit图估计的顺序匹配。结果表明,具有阶梯式轮廓前质量的BLT可以实现具有切割硬或软组织的电势的位移,并且在增加激发水平时显示出谐振频率的最小变换。

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