Abstract Developmental biology commonly describes human maturation as the progressive acquisition of biological capacity: increasing strength, sensorimotor precision, coordination, endurance, balance, and behavioral adaptability. A previous paper in the Human Restoration Theory (HRT) corpus proposed that development expands not only physiological capability but also the organism's space of organizational possibilities. The present conceptual paper develops a broader and more mechanistic hypothesis: development changes the economics of stabilization. As physiological capacity expands, strategies that were previously unavailable, unaffordable, or too short-lived become biologically payable. This process is defined here as affordable stabilization. The central proposal is not that development inevitably produces chronic holding, nor that muscular co-contraction is pathological in itself. Rather, the paper argues that development progressively alters what forms of mechanical stabilization an organism can afford to maintain. Active muscular stabilization, including co-contraction, is treated as one important case within a broader hierarchy of stabilization strategies. Co-contraction is proposed as a low-barrier mechanical strategy because it can increase local stiffness, reduce uncertainty, and preserve immediate functional continuity without requiring structural reorganization, environmental change, or complex whole-body recalibration. The paper situates affordable stabilization in relation to dynamic systems theory, ecological psychology, motor development, impedance control, mechanobiology, allostasis, and HRT. It distinguishes between becoming capable of a strategy, selecting that strategy, and stabilizing it over developmental time. It further proposes that predictable environments may reduce penalties imposed on costly stabilization strategies, allowing them to persist when sufficiently successful, whereas variable environments may expose their inefficiency and require reorganization. The paper concludes with testable predictions concerning developmental biomechanics, co-contraction, stabilization hierarchy, motor variability, environmental reliability, organizational cost, and the distinction between immediate stability and long-term biological economy.
Israel Don (Sun,) studied this question.