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February 9, 2026Bioengineering0 citationsOpen Access

A Novel, Low-Cost, 3D-Printed Motorized Injector for Retinal Sheet Transplantation

JLJerald LimFUF UngSMSamir Malhotra

Key Points

  • The central aim is to develop a motorized injector that enhances placement accuracy for retinal sheet transplantation.
  • Designed a 3D-printed motorized retinal sheet injector with an Arduino-controlled foot pedal.
  • Conducted frame-by-frame motion analysis to compare the motorized injector against manual methods.
  • Performed in vitro gelatin trials to assess placement accuracy of both the motorized and manual injectors.
  • The motorized injector reduced tip variance by approximately threefold compared to manual methods.
  • It demonstrated significantly higher placement accuracy in in vitro trials than the manual injector.
  • Manual methods experienced occasional complete misplacements during trials.

Abstract

Retinal transplantation offers promise for restoring vision in advanced retinal degeneration. However, manual delivery of retinal sheets is often hindered by imprecise placement and collateral tissue damage resulting from instrument instability. We introduce a novel, 3D-printed, motorized retinal sheet injector designed to enhance placement accuracy and minimize tissue injury. The motorized injector features an Arduino-controlled foot pedal with three discrete actuator positions (“Min”, “Mid”, “Max”). When compared via frame-by-frame motion analysis, the motorized system reduced tip variance by approximately threefold over manual methods. In addition, in in vitro gelatin trials, the motorized injector achieved significantly higher placement accuracy versus the manual injector, which suffered from occasional complete misplacements. The novel motorized retinal sheet injector markedly improves stability and placement accuracy relative to manual methods, potentially reducing complications associated with subretinal delivery. Safer subretinal delivery can pave the way for innovative research and advanced treatment for retinal disease.

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Cite This Study

Lim et al. (2026) studied this question.

synapsesocial.com/papers/698979b9f0ec2af6756e7a3dhttps://doi.org/10.3390/bioengineering13020188
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