Department of Physical Medicine and Rehabilitation, Department of Mechanical Engineering, University of Kentucky, Lexington, Kentucky, USA.
Department of Statistics, University of Kentucky, Lexington, Kentucky, USA.
Assist Technol. 2023 Nov 2;35(6):513-522. doi: 10.1080/10400435.2023.2177774. Epub 2023 Feb 28.
The rise of 3D printing allows unprecedented customization of rehabilitation devices, and with an ever-expanding library of 3D printable (3DP) materials, the spectrum of attenable rehabilitation devices is likewise expanding. The current pilot study explores feasibility of using 3DP elastic materials to create dynamic hand orthoses for stroke survivors. A dynamic orthosis featuring a replaceable finger component was fabricated using 3DP elastic materials. Duplicates of the finger component were printed using different materials ranging from low stiffness (low elastic modulus) to relatively high stiffness (high elastic modulus). Five stroke survivors with predominantly moderate hand impairment were recruited to evaluate usability and impact of orthoses on upper extremity function and biomechanics. No significant differences in usability were found between 3D-printed orthoses and a commercial orthosis. Increases in stiffness of the 3DP material reduced pincer force ( = .0041) and the BBT score ( = .043). In comparison, the commercial orthosis did not reduce pincer force but may reduce BBT score to a degree that is clinically significant ( = .0002). While preliminary, these findings suggest that a dynamic orthosis is a feasible clinical application of 3DP elastic materials, and future study is warranted.
3D 打印技术的兴起使得康复设备的定制化程度达到前所未有的水平,而随着 3D 打印材料库的不断扩大,可实现的康复设备种类也在不断增加。本初步研究探索了使用 3D 弹性材料为中风幸存者制作动态手部矫形器的可行性。使用 3D 弹性材料制造了一种具有可更换手指部件的动态矫形器。使用不同材料(从低刚度(低弹性模量)到相对高刚度(高弹性模量))打印了手指部件的副本。招募了 5 名手部功能主要中度受损的中风幸存者来评估矫形器的可用性以及对上肢功能和生物力学的影响。在可用性方面,3D 打印矫形器和商业矫形器之间没有发现显著差异。3D 打印材料的刚度增加会降低( = .0041)和 BBT 评分( = .043)。相比之下,商业矫形器不会降低夹持力,但可能会降低 BBT 评分,达到具有临床意义的程度( = .0002)。虽然初步研究,但这些发现表明,动态矫形器是 3D 弹性材料在临床应用中的一个可行方向,需要进一步研究。