Temporal Progression Resistance is the measurable capacity of biological systems to actively counteract the inevitable decline in functional reserve and structural integrity that occurs over time. This concept, central to longevity science, refers to the physiological resilience that minimizes the rate of biological aging and maintains peak functional capacity further into the lifespan. It is the quantifiable outcome of successful degradation resistance strategies.
Origin
The term is a sophisticated synthesis of “Temporal Progression,” referring to the passage of time and its biological effects, and “Resistance,” implying an active counterforce. It is rooted in biogerontology, the field dedicated to understanding and intervening in the aging process. The term moves beyond simply slowing chronological time to actively resisting the physiological effects of time on the body’s systems.
Mechanism
The mechanism involves maintaining high levels of cellular repair processes, such as DNA repair and protein turnover, which are often supported by optimized levels of growth hormone and DHEA. It also relies on the continuous clearance of senescent cells and the maintenance of telomere length. Effectively, Temporal Progression Resistance functions by ensuring that the rate of biological maintenance and repair consistently outpaces the rate of molecular damage accumulation.
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