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Development of ultrasonically activated bending scalpel using a link mechanism

机译:利用连杆机构开发超声波激活弯刀

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Ultrasonically activated scalpels are used clinically to provide hemostatic cutting in endoscopic surgery. To assist the physician during endoscopic surgery, we have developed an ultrasonically activated bending scalpel constructed of super elasticity alloy (SEA in short). We analyzed the vibration characteristics of the probe in the bending state by the finite element method. And the proposed active bending mechanism is prototyped. Moreover the vibration characteristics were measured to examine its effectiveness. Also, a cutting experiment was conducted. We demonstrate that ultrasonic vibration of the proposed scalpel is possible using a conventional vibration controller, since the change of the natural frequency due to the bend is negligible. In the prototyping, we realized the bending mechanism by using a linkage. The range of the bending angles varies from 0° to 60° .
机译:超声手术刀在临床上用于在内窥镜手术中提供止血切割。为了在内窥镜手术中为医师提供帮助,我们开发了一种由超弹性合金(简称SEA)制成的超声激活弯曲手术刀。我们通过有限元方法分析了弯曲状态下探头的振动特性。并提出了主动弯曲机构的原型。此外,还测量了振动特性以检验其有效性。另外,进行了切割实验。我们证明了使用常规的振动控制器可以对建议的手术刀进行超声振动,因为弯曲导致的固有频率变化可以忽略不计。在原型制作中,我们通过使用连杆机构来实现弯曲机制。弯曲角度的范围从0°到60°不等。

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