Governing Micro-Scale Locomotion in Blood Microcirculation at Low Reynolds Numbers

Core clinical engineering and protocols for Magnetic Propulsion Physics.

The Physics of Swimming in the Microvascular World

At the scale of hundred-nanometer medical robots, blood behaves like thick molasses: inertia is negligible, and viscous forces dominate (low Reynolds number regime). Reciprocal swimming strokes produce zero net motion according to Purcell's Scallop Theorem.

Electromagnetic Helical Propulsion

HealthNanorobots models non-reciprocal corkscrew flagellar locomotion: external tri-axial magnetic coils generate rotating magnetic fields that induce rotation in helical magnetic nanostructures, converting rotational torque into forward linear propulsion capable of overcoming arterial blood flow.

헬스케어 도메인 포트폴리오 살펴보기