The specialized cells within the Atomic Furnace biological organ were like individual energy converters, possessing unique membrane structures and enzyme systems.
Various special protein channels and receptors were embedded in these cell membranes, selectively absorbing High-Energy Particles and electromagnetic radiation.
When Energy Particles bound to receptors on the cell membrane, they triggered a series of intracellular Cell Signaling processes, ultimately converting the energy into Bio-energy that the cells could use.
This Bio-energy was stored and transported in the form of ATP. ATP was the cell's energy "currency," capable of powering the various physiological activities in Connors's body.
This Bio-energy could not only maintain Connors's body's normal functioning, but also grant him tremendous strength and Life Force.
In terms of strength, the Bio-energy acted on Connors's muscle cells, allowing his Muscle Fibers to contract and relax more efficiently.
Judging by his muscular structure, Connors's muscles contained a large number of Special Muscle Fibers. These Muscle Fibers were not ordinary muscle tissue; under the special stimulation of Bio-energy, they could unleash power that far exceeds that of ordinary organisms.
Take Connors's leg muscles, for example. Driven by Bio-energy, they were like precise yet powerful energy engines.
When he prepared to jump, the Special Muscle Fibers in his legs rapidly contracted, generating immense energy. This energy was transmitted to the bones and joints in his legs, allowing him to easily leap hundreds of meters into the air.
Or run several kilometers at high speed without feeling fatigued.
In terms of Life Force, Bio-energy participated in cellular repair and regeneration.
Connors's body was constantly suffering radiation damage from Radioactive Material, but the Bio-energy generated by the Atomic Furnace activated the repair mechanisms within his cells.
The DNA Repair Enzymes within his cells, driven by Bio-energy, repaired damaged DNA, reducing the risk of genetic mutations