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Showing 1 to 6 of 6 for “"IMPLANTABLE ELECTRONICS"”.

  1. An energy-efficient wireless data link for implantable electronics

    … are important for the development of long-term implantable neural prostheses. Furthermore, in implanted systems with many neural recording electrodes, the data rate of the wireless link will need to be quite high since each recording electrode can produce about 120 kbps of data. For low-power …

    mit Repository record for An energy-efficient wireless data link for implantable electronics (opens in a new tab)

  2. Biohybrid Peripheral Neural Interfaces: Combining Cell Transplantation and Flexible Electronics for Functional Neurological Restoration

    … challenges. However, a combinational approach of implantable electronics and stem cell-derived cells for functional neurological restoration could address these issues. The integration between implantable electronics and existing tissue is of paramount importance, this biohybrid strategy with the …

    cambridge Repository record for Biohybrid Peripheral Neural Interfaces: Combining Cell Transplantation and Flexible Electronics for Functional Neurological Restoration (opens in a new tab)

  3. Wireless Telemetry System for Implantable Sensors

    … has revealed two major limitations with wireless implantable systems: a) the current size of implantable electronics limits the physical size of the system to larger subjects; and b) the systems only interface with one sensor type (e.g., pressure sensor only). This research focuses on the design …

    uwo Repository record for Wireless Telemetry System for Implantable Sensors (opens in a new tab)

  4. Flexible, stretchable, and transient electronics for integration with the human body

    … neural interfaces, and (4) physically transient, implantable electronics, all with the capability of stable operation for long timeframes.

    uiuc Repository record for Flexible, stretchable, and transient electronics for integration with the human body (opens in a new tab)

  5. One-Dimensional Nanostructured Materials And Manufacturing of Deformable Electronics For Healthcare and Soft Robotics

    … drivers for emerging wearable health monitors, implantable electronics, AI-augmented bionic prosthetics and intelligent soft robotics. One dimensional (1D) nanostructures of electronic materials are promising material system for fabricating soft electronics due to their unique form factor. …

    houston Repository record for One-Dimensional Nanostructured Materials And Manufacturing of Deformable Electronics For Healthcare and Soft Robotics (opens in a new tab)

  6. Wet Adhesion and Bioadhesive Technology

    … for surgical repair and disease treatment to implantable electronics for monitoring and augmentation of bodily functions. Despite the recent advances, the interfacing between man-made devices and the human body – their interactions and communications – are still dominated by relatively …

    mit Repository record for Wet Adhesion and Bioadhesive Technology (opens in a new tab)