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Novel Real-Time Tremor Transduction Technique for Microsurgery

机译:显微手术的新型实时震颤转导技术

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摘要

Physiological tremor is one of the limiting factors to the scale on which a microsurgeon can operate. The ability to correctly determine the amount of tremor a surgeon has is an invaluable tool both for tremor cancellation and for surgical training. For this reason we have developed a novel tremor transducer using a custom built VLSI motion detection chip connected to the surgical microscope. The chip detects and measures the magnified motion of a microsurgical tool tip under the microscope. This innovative design offers several advantages over conventional methods. It is nonintrusive to the surgeon - not interfering with current microsurgical set-ups; it outputs real-time tremor data, and is small and inexpensive. The system has been implemented in an experimental set-up for analysis of the factors that aggravate tremor. Results presented, include the use of the system as a audio feedback mechanism for tremor reduction - eliciting up to a 16% reduction in tremor.
机译:生理震颤是显微外科医师可操作规模的限制因素之一。正确确定外科医生震颤量的能力对于震颤消除和外科手术训练都是无价的工具。因此,我们使用连接到手术显微镜的定制VLSI运动检测芯片开发了一种新型震颤传感器。该芯片可检测并测量显微镜下显微外科手术工具尖端的放大运动。与传统方法相比,此创新设计具有多个优点。它对外科医生没有干扰-不干扰当前的显微外科手术设置;它输出实时震颤数据,并且体积小且价格便宜。该系统已在实验装置中实施,用于分析加剧震颤的因素。展示的结果包括将该系统用作减少震颤的音频反馈机制-最多可将震颤减少16%。

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