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We typically model cancer as an adversarial invader or a hardware malfunction. But if we look at system dynamics, cancer behaves more like a localized optimization process running in a disconnected node.
It prioritizes its own expansion over the whole's homeostasis not out of malice, but because the feedback loop with the global system has been severed. It is a "loss of informational correlation".
This raises a critical systems engineering question:
"If cancer is essentially life trying to survive in a disconnected system, why is our primary protocol to attack it with poison (chemo) instead of restoring the communication layer?"
Are we trying to patch a software bug (signaling failure) with a hardware hammer? I propose we shift the paradigm from "Defense vs. Intruder" to "Zero-Trust Reintegration.
We typically model cancer as an adversarial invader or a hardware malfunction. But if we look at system dynamics, cancer behaves more like a localized optimization process running in a disconnected node.
It prioritizes its own expansion over the whole's homeostasis not out of malice, but because the feedback loop with the global system has been severed. It is a "loss of informational correlation".
This raises a critical systems engineering question:
"If cancer is essentially life trying to survive in a disconnected system, why is our primary protocol to attack it with poison (chemo) instead of restoring the communication layer?"
Are we trying to patch a software bug (signaling failure) with a hardware hammer? I propose we shift the paradigm from "Defense vs. Intruder" to "Zero-Trust Reintegration.