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March 12, 20260 citationsOpen Access

Haptic Flow as a Symmetry-Bearing Invariant in Skilled Human Movement: A Screw-Theoretic Extension of Gibson’s Optic Flow

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WKWangdo Kim

Key Points

  • The research aims to define haptic flow as an invariant associated with skilled human movement in relation to body-object interactions.
  • Analyzed motion capture data from a proficient and a novice golfer.
  • Utilized instantaneous screw axes (ISA) and pitch evolution.
  • Applied cylindroid geometry derived from a linear line-complex formulation.
  • The proficient golfer showed convergence of ISAs into a coherent bundle.
  • Screw pitch stabilized through impact in the proficient golfer.
  • The novice golfer displayed fragmented ISA organization and higher pitch variability.

Abstract

Gibson’s concept of optic flow established that perception is grounded in lawful structure generated by action. However, no formal mechanical framework has described the invariant structure of action-generated kinesthetic information during skilled manipulation. This study introduces haptic flow as a screw-theoretic invariant defined by the coupled rotational–translational organization of a body–object system. Motion capture data from a two-case comparison (one proficient and one novice golfer) were analyzed using instantaneous screw axes (ISA), pitch evolution, and cylindroid geometry derived from a linear line-complex formulation. The proficient golfer exhibited (1) progressive convergence of ISAs toward a coherent bundle, (2) stabilization of screw pitch through impact, and (3) co-cylindrical alignment of harmonic screws consistent with inertial–restoring conjugacy. In contrast, the novice golfer showed fragmented ISA organization and elevated pitch variability. These differences were descriptive rather than inferential and do not imply population-level generalization. The findings suggest that skilled manipulation is characterized by stabilization of symmetry-bearing screw invariants rather than by independent joint control. Interpreted ecologically, haptic flow is proposed as a mechanically specified candidate invariant generated by lawful body–object coupling. The present study establishes a geometric framework for quantifying such invariants while identifying the need for cross-task and perceptual validation.

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Cite This Study

Wangdo Kim (2026) studied this question.

synapsesocial.com/papers/69b25b5496eeacc4fcec9e6chttps://doi.org/10.3390/sym18030471
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