Abstract

Cilia-like sensitivity observer, at an adaptive treatment of a tumor recurrence in active soft matter, is built. Therefore, the activity of soft matter is shown as active colloidal chains with a cilia-like and flagella-like motility; the tumor recurrence, in active soft matter, is considered as run-away/quantum aging of soft matter; the adaptive treatment energy is defined as electromagnetic field energy, stabilizing or destabilizing life, and as energy of a force dipole. Information recovery at an adaptive treatment is fulfilled via two cilia-like quantum extremal islands. Information recovery is obtained for a mean maximum-tolerated dose of the adaptive treatment and cilia-like tumor growth in active soft matter. There are introduced four strategies for an adaptive treatment for run-away/quantum aging active soft matter with a mean maximum-tolerated dose at stabilized tumor/tumor diffusion. It is graphically determined, for each of these four strategies, the mean sensitivity of the adaptive treatment for three tumor types in 27 patients, according to a maximum-tolerated treatment dose and cilia-like tumor growth in active soft matter.

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