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一种用于玻璃体视网膜手术模拟器的力测量平台,该平台使用集成有石英晶体谐振器的人工眼模块。

A force measurement platform for a vitreoretinal surgical simulator using an artificial eye module integrated with a quartz crystal resonator.

作者信息

Taniguchi Yuta, Sugiura Hirotaka, Yamanaka Toshiro, Watanabe Shiro, Omata Seiji, Harada Kanako, Mitsuishi Mamoru, Shiraya Tomoyasu, Sugimoto Koichiro, Ueta Takashi, Totsuka Kiyohito, Araki Fumiyuki, Takao Muneyuki, Aihara Makoto, Arai Fumihito

机构信息

Department of Mechanical Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656 Japan.

Faculty of Advanced Science and Technology, Kumamoto University, 2-39-1 Kurokami, Chuo-ku, Kumamoto-shi, Kumamoto, 860-8555 Japan.

出版信息

Microsyst Nanoeng. 2022 Jul 5;8:74. doi: 10.1038/s41378-022-00417-8. eCollection 2022.

Abstract

To provide quantitative feedback on surgical progress to ophthalmologists practicing inner limiting membrane (ILM) peeling, we developed an artificial eye module comprising a quartz crystal resonator (QCR) force sensor and a strain body that serves as a uniform force transmitter beneath a retinal model. Although a sufficiently large initial force must be loaded onto the QCR force sensor assembly to achieve stable contact with the strain body, the highly sensitive and wide dynamic-range property of this sensor enables the eye module to detect the slight forceps contact force. A parallel-plate strain body is used to achieve a uniform force sensitivity over the 4-mm-diameter ILM peeling region. Combining these two components allowed for a measurable force range of 0.22 mN to 29.6 N with a sensitivity error within -11.3 to 4.2% over the ILM peeling area. Using this eye module, we measured the applied force during a simulation involving artificial ILM peeling by an untrained individual and compensated for the long-term drift of the obtained force data using a newly developed algorithm. The compensated force data clearly captured the characteristics of several types of motion sequences observed from video recordings of the eye bottom using an ophthalmological microscope. As a result, we succeeded in extracting feature values that can be potentially related to trainee skill level, such as the mean and standard deviation of the pushing and peeling forces, corresponding, in the case of an untrained operator, to 122.6 ± 95.2 and 20.4 ± 13.2 mN, respectively.

摘要

为了向进行内界膜(ILM)剥除术的眼科医生提供手术进展的定量反馈,我们开发了一种人工眼模块,该模块包括一个石英晶体谐振器(QCR)力传感器和一个应变体,该应变体在视网膜模型下方用作均匀的力传递器。尽管必须在QCR力传感器组件上施加足够大的初始力才能与应变体实现稳定接触,但该传感器的高灵敏度和宽动态范围特性使眼模块能够检测到轻微的镊子接触力。使用平行板应变体在直径4毫米的ILM剥除区域上实现均匀的力灵敏度。将这两个组件结合起来,在ILM剥除区域内可测量的力范围为0.22 mN至29.6 N,灵敏度误差在-11.3%至4.2%之间。使用该眼模块,我们在一名未经训练的人员进行人工ILM剥除模拟过程中测量了施加的力,并使用新开发的算法补偿了所获得力数据的长期漂移。补偿后的力数据清楚地捕捉到了使用眼科显微镜从眼底视频记录中观察到的几种运动序列的特征。结果,我们成功提取了可能与受训者技能水平相关的特征值,例如推和剥除力的平均值和标准差,对于未经训练的操作者,分别为122.6±95.2和20.4±13.2 mN。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdf0/9256705/e9a2e3af9978/41378_2022_417_Fig1_HTML.jpg

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