Lee Kyu Ho, Bin Hobeom, Kim KeunBae, Ahn So Young, Kim Bong-Ok, Bok Soo-Kyung
Department of Rehabilitation Medicine, Chungnam National University Hospital, Chungnam National University School of Medicine, Daejeon, Korea.
Department of Prosthetics and Orthotics, Chungnam National University Hospital, Daejeon, Korea.
Ann Rehabil Med. 2017 Oct;41(5):875-880. doi: 10.5535/arm.2017.41.5.875. Epub 2017 Oct 31.
The loss of an upper limb significantly limits the functional activities of daily living. A huge emphasis is placed on the manipulation, shape, weight, and comfort of a prosthesis, to enable its use as an inherent body part. Even with technological advances, customized upper-extremity myoelectric prosthesis remain heavy and expensive. The high cost of upper-extremity prosthesis is an especially steep economic barrier for patients. Three-dimensional (3D) printing is a promising avenue for reducing the cost of prosthesis. We applied 3D-printed pressure-sensored prosthetics to a traumatic transradial amputee, and compared the hand functions with a customized myoelectric prosthesis. The 3D-printed pressure-sensored prosthetics showed low grip strength and decreased dexterity compared to the conventional myoelectric prosthesis. Although there were a few limitations, the fabrication of prosthesis with 3D printing technology can overcome previous problems such as high production cost, long fabrication period and heavy weight.
上肢缺失会严重限制日常生活中的功能活动。人们非常重视假肢的操控性、形状、重量和舒适度,以使它能够像身体的固有部分一样被使用。即便有了技术进步,定制的上肢肌电假肢仍然很重且昂贵。上肢假肢的高昂成本对患者来说是一个特别严峻的经济障碍。三维(3D)打印是降低假肢成本的一条有前景的途径。我们将3D打印的压力感应假肢应用于一名创伤性经桡骨截肢患者,并将其手部功能与定制的肌电假肢进行比较。与传统肌电假肢相比,3D打印的压力感应假肢显示出握力较低且灵活性下降。尽管存在一些局限性,但利用3D打印技术制造假肢可以克服以前存在的诸如生产成本高、制造周期长和重量大等问题。