A cardiac scaffold designed according to V=N/D replicates an alternator-integrated architecture at a biological scale, generating bioelectric potential without external power.
This theoretical or preclinical model proposes a self-sustaining cardiac scaffold design that generates its own bioelectric potential, potentially eliminating the need for external power sources.
This paper demonstrates that a cardiac scaffold designed according to V=N/D replicates the automobile alternator-integrated architecture at biological scale. Density gradient drives spiral motion; motion compresses biomimetic electrocyte layers; compression generates bioelectric potential; potential maintains ionic gradients. The loop closes. External power becomes architecturally unnecessary — the body's ionic environment is both fuel and medium.
Yoshimitsu Katayama (Mon,) reported a other. V=N/D cardiac scaffold design was evaluated. A cardiac scaffold designed according to V=N/D replicates an alternator-integrated architecture at a biological scale, generating bioelectric potential without external power.