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A micro ultrasonic scalpel with sensing function

机译:具有传感功能的微型超声波手术刀

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A micro ultrasonic scalpel based on a piezoelectric film transducer can cut very soft and small objects with slight deformation and monitor the vibration condition during operation. The micro ultrasonic scalpel has longitudinal vibration component and also lateral vibration component for effective cutting performance. The coupled vibration mode was effectively generated by a micro-notch at the largest stress part of an exponential horn in the longitudinal mode from the result of the finite element method(FEM). Cutting performance with the coupled vibration mode was tried out by sticking the micro ultrasonic scalpel into bovine liver, while it was vibrating or not. When the micro ultrasonic scalpel was vibrating, it could be stuck smoothly. But when it wasn't vibrating, it was stuck with rapid deformation on bovine liver's surface. So cutting performance was denoted. From the result of the FEM, we also realized that the ratio of the vibration velocity in lateral direction to that in longitudinal direction was about 0.6. It is expected that the micro ultrasonic scalpel will be built into surgical tool in an endoscope.
机译:基于压电薄膜换能器的微型超声波立方体可以通过轻微变形,在操作期间切割非常柔软和小物体并监测振动状态。微型超声波手术刀具有纵向振动部件,以及用于有效切割性能的横向振动部件。通过有限元方法(FEM)的结果,通过在纵向模式下的指数喇叭的最大应力部分的微缺口有效地产生耦合振动模式。通过将微量超声波胶片粘在牛肝中,尝试使用耦合振动模式进行切割性能,而振动或不振动。当微型超声波手术刀振动时,它可能会平稳地卡。但是,当它没有振动时,牛肝脏表面迅速变形。所以切割性能表示为。从FEM的结果,我们也意识到横向方向上的振动速度与纵向方向上的比率约为0.6。预计微型超声波手术刀将内置在内窥镜中的手术工具中。

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