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用于安全微创机器人手术的医学应用光纤布拉格光栅力反射传感器系统的开发。

Development of optical fiber Bragg grating force-reflection sensor system of medical application for safe minimally invasive robotic surgery.

作者信息

Song Hoseok, Kim Kiyoung, Lee Jungju

机构信息

Mechanical Engineering Department, KAIST, 335 Gwahak-ro, Yuseong-gu, Daejeon 305-701, South Korea.

出版信息

Rev Sci Instrum. 2011 Jul;82(7):074301. doi: 10.1063/1.3606502.

Abstract

Force feedback plays a very important role in medical surgery. In minimally invasive surgery (MIS), however, the very long and stiff bars of surgical instruments greatly diminish force feedback for the surgeon. In the case of minimally invasive robotic surgery (MIRS), force feedback is 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 peak force magnitude by at least a factor of two. Therefore, it is very important to provide force information in MIRS. Recently, many sensors are being developed for MIS and MIRS, but some obstacles to their application in actual medical surgery must be surmounted. The most critical problems are size limit and sterilizability. Optical fiber sensors are among the most suitable sensors for the surgical environment. The optical fiber Bragg grating (FBG) sensor, in particular, offers an important additional advantage over other optical fiber sensors in that it is not influenced by the intensity of the light source. In this paper, we present the initial results of a study on the application of a FBG sensor to measure reflected forces in MIRS environments and suggest the possibility of successful application to MIRS systems.

摘要

力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,手术器械非常长且僵硬的杆极大地削弱了外科医生所感受到的力反馈。在微创机器人手术(MIRS)的情况下,力反馈则完全被消除。先前的研究人员报告称,力反馈的缺失使施加到组织上的平均力大小增加了至少50%,并使峰值力大小增加了至少两倍。因此,在MIRS中提供力信息非常重要。最近,许多传感器正在为MIS和MIRS开发,但在实际医学手术中的应用还必须克服一些障碍。最关键的问题是尺寸限制和可消毒性。光纤传感器是最适合手术环境的传感器之一。特别是光纤布拉格光栅(FBG)传感器,相对于其他光纤传感器具有一个重要的额外优势,即它不受光源强度的影响。在本文中,我们展示了一项关于在MIRS环境中应用FBG传感器测量反射力的研究的初步结果,并提出了成功应用于MIRS系统的可能性。

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