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逆向工程与增材制造显微手术器械原型的验证

Validation of Reverse-Engineered and Additive-Manufactured Microsurgical Instrument Prototype.

作者信息

Singh Ramandeep, Suri Ashish, Anand Sneh, Baby Britty

机构信息

Indian Institute of Technology Delhi, New Delhi, India.

All India Institute of Medical Sciences, New Delhi, India

出版信息

Surg Innov. 2016 Dec;23(6):606-612. doi: 10.1177/1553350616656282. Epub 2016 Jun 28.

Abstract

With advancements in imaging techniques, neurosurgical procedures are becoming highly precise and minimally invasive, thus demanding development of new ergonomically aesthetic instruments. Conventionally, neurosurgical instruments are manufactured using subtractive manufacturing methods. Such a process is complex, time-consuming, and impractical for prototype development and validation of new designs. Therefore, an alternative design process has been used utilizing blue light scanning, computer-aided designing, and additive manufacturing direct metal laser sintering (DMLS) for microsurgical instrument prototype development. Deviations of DMLS-fabricated instrument were studied by superimposing scan data of fabricated instrument with the computer-aided designing model. Content and concurrent validity of the fabricated prototypes was done by a group of 15 neurosurgeons by performing sciatic nerve anastomosis in small laboratory animals. Comparative scoring was obtained for the control and study instrument. T test was applied to the individual parameters and P values for force (P < .0001) and surface roughness (P < .01) were found to be statistically significant. These 2 parameters were further analyzed using objective measures. Results depicts that additive manufacturing by DMLS provides an effective method for prototype development. However, direct application of these additive-manufactured instruments in the operating room requires further validation.

摘要

随着成像技术的进步,神经外科手术正变得高度精确且微创,因此需要开发新的符合人体工程学且美观的器械。传统上,神经外科器械是使用减材制造方法制造的。这样的过程复杂、耗时,并且对于新设计的原型开发和验证来说不切实际。因此,一种替代设计过程被用于利用蓝光扫描、计算机辅助设计和增材制造直接金属激光烧结(DMLS)来进行显微外科器械原型开发。通过将制造器械的扫描数据与计算机辅助设计模型叠加,研究了DMLS制造器械的偏差。由一组15名神经外科医生在小型实验动物上进行坐骨神经吻合术,对制造的原型进行内容效度和同时效度评估。对对照器械和研究器械进行比较评分。对各个参数应用t检验,发现力(P <.0001)和表面粗糙度(P <.01)的P值具有统计学意义。使用客观测量方法对这两个参数进行了进一步分析。结果表明,DMLS增材制造为原型开发提供了一种有效方法。然而,这些增材制造的器械在手术室中的直接应用需要进一步验证。

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