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  1. With the objective of improving efficacy and morbidity, device manufacturers incorporate chemicals or drugs into medical implants. Using multiple reservoirs of discrete drug doses, microchips represent a new technology capable of on-demand release of various drugs over long periods of time.

  2. As semiconductor devices become increasingly ubiquitous in healthcare, the health sector has in turn grown highly dependent on the semiconductor industry. This relationship is not always symbiotic, and even mild turbulence in the semiconductor industry has the potential to derail patient care.

  3. 9 mar 2017 · In this Perspective, we introduce the concept of medical-device-on-a-chip (MDoC), highlight possible applications and discuss the potential of microfluidic high-throughput technologies...

  4. 20 maj 2024 · The next generation of industry-leading organizations will be those that realize value creation is migrating towards companies that can design and integrate complex, system-level chip solutions using concepts like advanced packaging.

  5. Using multiple reservoirs of discrete drug doses, microchips represent a new technology capable of on-demand release of various drugs over long periods of time. Herein, we review drug delivery systems, how microchips work, recent investigations, and future applications in various fields of medicine. Publication types. Review. MeSH terms.

  6. Following the advancements in microfluidics and lab-on-a-chip (LOC) technologies, a novel biomedical application for microfluidic based devices has emerged in recent years and microengineered cell culture platforms have been created.

  7. 9 sie 2023 · The CHIPS and Science Act included $52 billion in investments and incentives to bolster domestic manufacturing of semiconductor chips, which AdvaMed has championed since the onset of the pandemic and in the face of the growing supply chain challenges facing the medtech industry.

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