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  1. The Fe electrodes were selected as the conductive material due to their bioresorbable nature, favorable corrosion resistance in physiological environments, and mechanical robustness compared to other …

  2. Here we place bior-esorbable electrodes with a brain-matched shear modulus—made from water-dispersed nanoparticles in the brain in the targeted area using a capillary — thinner than a human hair.

  3. Abstract Polyimide based shaft electrodes were coated with a bioresorbable layer to stiffen them for intracortical insertion and to reduce the mechanical mismatch between the target tissue and the …

  4. Nov 26, 2025 · Bioresorbable electrodes are continuously evolving and aiming to reach the levels of functionality comparable to or beyond their non-degradable counterparts. The progress in in vivo …

  5. These latest intracortical electrodes incorporate “bioactive” components. These electrode designs use standard electrically conductive materials in combina-tion with biologically active species in an effort …

  6. These systems consist of bioresorbable forms of PA and SiON configured into multilayer assemblies. Films of PA result from spin-coating a monomer solution followed by ultraviolet (UV)-initiated thiol …

  7. Sep 21, 2024 · ACCESS ABSTRACT: Bioresorbable implantable electronics require power sources that are also bioresorbable with controllable electrical output and lifetime. In this paper, we report a …