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Microscale sensors and actuators have been widely explored by the scientific community to augment the functionality of conventional medical implants. However, despite the many innovative concepts proposed, a negligible fraction has successfully made the leap from concept to clinical translation. This shortfall is primarily due to the considerable disparity between academic research prototypes and market-ready products. As such, it is critically important to examine the lessons learned in successful commercialization efforts to inform early-stage translational research efforts. Here, we review the regulatory prerequisites for market approval and provide a comprehensive analysis of commercially available microimplants from a device design perspective. Our objective is to illuminate both the technological advances underlying successfully commercialized devices and the key takeaways from the commercialization process, thereby facilitating a smoother pathway from academic research to clinical impact.more » « lessFree, publicly-accessible full text available February 6, 2026
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Barrera, Nikolas D; Pawlik, Jacob T; Long, Christian J; Orloff, Nathan D; Booth, James C; Meng, Ellis; Stelson, Angela C (, IEEE)Free, publicly-accessible full text available June 29, 2026
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The Influence of Intrinsic Water and Ion Permeation on the Dielectric Properties of Parylene C FilmsPawlik, Jacob T.; Barrera, Nikolas D.; Yoon, Eugene J.; Booth, James C.; Long, Christian J.; Orloff, Nathan D.; Meng, Ellis; Stelson, Angela C. (, IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology)
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