Fast production of customized three-dimensional-printed hand splints

Author:

Popescu Diana,Zapciu Aurelian,Tarba Cristian,Laptoiu Dan

Abstract

Purpose This paper aims to propose a new solution for producing customized three-dimensional (3D)-printed flat-shaped splints, which are then thermoformed to fit the patient’s hand. The splint design process is automated and is available to clinicians through an online application. Design/methodology/approach Patient anthropometric data measured by clinicians are associated with variables of parametric 3D splint models. Once these variables are input by clinicians in the online app, customized stereo lithography (STL) files for both splint and half mold, in the case of the bi-material splint, are automatically generated and become available for download. Bi-materials splints are produced by a hybrid manufacturing process involving 3D printing and overmolding. Findings This approach eliminates the need for 3D CAD-proficient clinicians, allows fast generation of customized splints, generates two-dimensional (2D) drawings of splints for verifying shape and dimensions before 3D printing and generates the STL files. Automation reduces splint design time and cost, while manufacturing time is diminished by 3D printing the splint in a flat position. Practical implications The app could be used in clinical practice. It meets the demands of mass customization using 3D printing in a field where individualization is mandatory. The solution is scalable – it can be extended to other splint designs or to other limbs. 3D-printed tailored splints can offer improved wearing comfort and aesthetic appearance, while maintaining hand immobilization, allowing visually controlled follow-up for edema and rapidly observing the need for revision if necessary. Originality/value An online application was developed for uploading patient measurements and downloading 2D drawings and STL files of customized splints. Different models of splints can be designed and included in the database as alternative variants. A method for producing bi-materials flat splints combining soft and rigid polymers represents another novelty of the research.

Publisher

Emerald

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference36 articles.

1. The role of timely intervention and physiotherapy in patients of hand injury;Journal of Biology and Medicine,2015

2. A critical analysis of a hand orthosis reverse engineering and 3D printing process;Applied Bionics and Biomechanics,2016

3. Three-dimensional printing in plastic and reconstructive surgery: a systematic review;Annals of Plastic Surgery,2016

4. Medical modeling, the application of advanced design and rapid prototyping techniques in medicine, orthotic rehabilitation applications,2015

5. Design of an orthopedic product by using additive manufacturing technology: the arm splint;Journal of Medical Systems,2018

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