Medical Electronics

    Engineering the Interface: Integrating Electronics into Biocompatible Materials for Next-Generation Medical Devices

    By Falgun Jani, Business Head – India Region, Freudenberg Medical – FRCCI The history of bioelectronics is visually characterised by a transition from early “animal...

    When Silicon Meets the Human Nervous System: A Deep Dive Into Neural Interfaces

    Before examining the challenges and opportunities in bioelectronics, it is essential to understand how electronics and the human body converge. The human body—intrinsically organic...

    Autonomous Plants — The Rise of Agentic Manufacturing in MedTech

    Courtesy: L&T Technology Services Picture a medical device plant in the quiet hours before sunrise. Laser welders, injection moulding lines, and sterile packaging units run...

    Sustenance Engineering and Innovation in Medical Devices: Revitalizing Product

    Courtesy: L&T Technology Services Innovation is redefining the global medical device industry. Recent reports indicate that in 2023, the FDA’s published list of approved algorithms...

    Simulating a Valveless Micropump Mechanism

    Courtesy: COMSOL Microfluidic systems manipulate fluids through microchannels that are often smaller than a human hair. Micropumps are key components of these systems, with applications...

    Modeling Nonidealities in Electrochemical Impedance Spectroscopy

    Courtesy: COMSOL Electrochemical impedance spectroscopy (EIS) is widely used for studying electrochemical systems. It reveals key electrochemical processes like charge transfer, mass transport, and surface...

    Raising the Bar for Cybersecurity in Connected Medical Devices

    Courtesy: NXP Semiconductors The modern healthcare industry has fully embraced a digital revolution. Today’s hospitals and clinical environments now fully rely on connected medical devices...

    MedTech NPI: Where Product Value Is Won or Lost

    Courtesy: Starfish Medical In MedTech, success rarely comes from invention alone. Plenty of promising technologies make it through verification and early clinical work, only to...

    The Heart of Modern Diagnostics: Unpacking Benefits and Tech Behind IVD

    Courtesy: Arrow Electronics In vitro diagnostic (IVD) devices execute precise analyses of biological samples - such as blood, urine, and tissue - to enable health...

    Enhancing clinical outcomes within ultrasound’s digital ecosystem

    Courtesy: GE HealthCare Ultrasound imaging is one of the most used diagnostic procedures in the healthcare field. The technology plays a critical role in timely diagnosis,...

    3D Printed Medical Devices: FDA Guidance on Additive Manufacturing

    Courtesy: Starfish Medical Additive Manufacturing (AM) or 3D printing – offers new and exciting ways to integrate parts not only for prototypes, but for final products....

    Simulate to innovate: Why simulation is key to mastering medical device design

    Courtesy: Siemens As an engineer in the medical device industry, you’re no stranger to the mounting pressures of today’s development landscape. Devices are becoming increasingly...

    3 Ways AI Will Improve Clinical Care

    Courtesy: Eko Healthcare organisations have long strategised on how to improve clinician and patient experiences, patient outcomes, and overhead. Artificial intelligence is a tool that...

    Breakthrough 3D-Printed Material Revolutionizes Soft Robotics and Biomedical Devices

    Researchers at Penn State have developed a new 3D-printed material designed to advance soft robotics, skin-integrated electronics, and biomedical devices. This material is soft,...

    Page EEPROM in hearing aid or why smart medical devices need new memory architectures

    Author : STMicroelectronics Medical devices aren’t immune to the latest machine learning opportunities, but the existing components don’t always satisfy the new engineering needs, which...

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