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Development of optical FBG force measurement system for the medical application

机译:用于医疗应用的光学FBG力测量系统的开发

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Haptic feedback plays a very important role in medical surgery. In minimally invasive surgery (MIS), however, very long and stiff bar of instruments take haptic feeling away from the surgeon. In minimally invasive robotic surgery (MIRS), moreover, haptic feelings are totally eliminated. Previous researchers have reported that the absence of force feedback increased the average force magnitude applied to the tissue by at least 50%, and increased the peakforce magnitude by at least a factor of two. Therefore, it is very important to provide haptic information in MIRS. Recently, many sensors are being developed for MIS or MIRS, but they have some obstacles in their application to real situations of medical surgery. The most critical problems are size limit and sterilizability. Optical fiber sensors are one of the most suitable sensors for this environment. Especially, optical fiber Bragg grating (FBG) sensor has one additional advantage than the other optical fiber sensors. FBG sensor is not influenced by intensity of light source. In this paper, we would like to present the initial results of study on the application of the FBG sensor to measure reflected forces in MIRS environments and then suggest the possibility of successful application to the MIRS systems.
机译:触觉反馈在医学手术中起着非常重要的作用。然而,在微创手术(MIS)中,非常长而僵硬的乐器患有远离外科医生的触觉感觉。此外,在微创机器人外科(MIRS)中,完全消除了触觉感受。以前的研究人员报道说,没有力反馈将施加到组织的平均力幅度增加至少50%,并将峰值幅度增加至少两倍。因此,在MIRS中提供触觉信息非常重要。最近,正在为MIS或MIR开发许多传感器,但它们在其应用于医疗手术的实际情况中存在一些障碍。最关键的问题是尺寸限制和灭菌性。光纤传感器是该环境中最合适的传感器之一。特别地,光纤布拉格光栅(FBG)传感器具有比其他光纤传感器的一个额外的优势。 FBG传感器不受光源强度的影响。在本文中,我们想提出关于MIR环境中的反射力的应用研究的初始研究结果,然后建议将应用于MIRS系统的可能性。

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