Core clinical engineering and protocols for Magnetic Propulsion Physics.
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.
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.