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Development of Microelectromechanical Systems (MEMS) forceps for intraocular surgery.

机译:用于眼内手术的微机电系统(MEMS)钳的开发。

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AIM: To develop silicon microforceps for intraocular surgery using Microelectromechanical Systems (MEMS) technology, the application of microchip fabrication techniques for the production of controllable three dimensional devices on the micrometre scale. METHODS: Prototype MEMS forceps were designed and manufactured for intraocular surgery. Scanning electron microscopy was used to evaluate device tip construction. Designs using both thermal expansion actuators and conventional mechanical activation were tested in human cadaver eyes and in vivo rabbit eyes to assess functionality in standard vitreoretinal surgery. RESULTS: MEMS forceps were constructed with various tip designs ranging from 100 mum to 2 mm in length. Scanning electron microscopy confirmed accurate construction of micro features such as forceps teeth as small as tens of micrometres. In surgical testing, the silicon forceps tips were effective in surgical manoeuvres, including grasping retinal membranes and excising tissue. The mechanical actuator design on a 20 gauge handle was more operational in the intraocular environment than the thermal expansion actuator design. While handheld operation was possible, the precision of the forceps was best exploited when mounted on a three axis micromanipulator. CONCLUSION: MEMS microforceps are feasible for conventional vitreoretinal surgery, and offer advances in terms of small scale, operating precision, and construction tolerance.
机译:目的:使用微机电系统(MEMS)技术开发用于眼内手术的硅微镊子,将微芯片制造技术应用于微米级可控三维设备的生产。方法:设计并制造了用于眼内手术的原型MEMS钳。扫描电子显微镜用于评估装置尖端的构造。在人的尸体眼和体内兔眼中测试了同时使用热膨胀执行器和常规机械激活的设计,以评估标准玻璃体视网膜手术的功能。结果:MEMS镊子构造了各种尖端设计,长度从100毫米到2毫米不等。扫描电子显微镜证实了诸如小到几十微米的镊子牙齿的微观特征的准确构造。在外科手术测试中,硅镊子尖端可有效用于外科手术,包括抓紧视网膜膜和切除组织。与热膨胀执行器设计相比,在20号手柄上的机械执行器设计在眼内环境中更具操作性。虽然可以进行手持操作,但当将镊子安装在三轴微操作器上时,其精度最佳。结论:MEMS微型镊子对于常规的玻璃体视网膜手术是可行的,并且在小规模,操作精度和结构公差方面都取得了进步。

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