What Does a Mirror Really Reverse? — Visualization Through a Comparison of a Plane Reflection Map and the Rotated Coordinate System of a Person Standing Face-to-Face

This paper formulates a mirror image as a one-axis reversal along the normal to the mirror plane and visualizes how the direction of reversal is determined by the arrangements of the mirror and the person. Using body coordinate systems, it classifies mirror-person relationships into six arrangements and the resulting reversals into three types: front-back, left-right, and up-down. It further defines a "cognitive twist" as comparing the mirror image not with the present self facing the mirror directly in front, but with the front-facing image of the self obtained by a 180° yaw rotation, and proposes the hypothesis that this operation produces the perception of left-right reversal. A flowchart contrasts this "cognitive twist" with "correct cognition," in which the mirror image is compared with the present self. This is the English-language version of the author's Japanese paper.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-27
DOI
https://doi.org/10.5281/zenodo.22981543
Primary Topic
Spatial Cognition and Navigation
Type
preprint
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preprint

What Does a Mirror Really Reverse? — Visualization Through a Comparison of a Plane Reflection Map and the Rotated Coordinate System of a Person Standing Face-to-Face

Sankomenen
Zenodo (CERN European Organization for Nuclear Research)
Spatial Cognition and Navigation
preprint

What Does a Mirror Really Reverse? — Visualization Through a Comparison of a Plane Reflection Map and the Rotated Coordinate System of a Person Standing Face-to-Face

Sankomenen
preprint en

Abstract

This paper formulates a mirror image as a one-axis reversal along the normal to the mirror plane and visualizes how the direction of reversal is determined by the arrangements of the mirror and the person. Using body coordinate systems, it classifies mirror-person relationships into six arrangements and the resulting reversals into three types: front-back, left-right, and up-down. It further defines a "cognitive twist" as comparing the mirror image not with the present self facing the mirror directly in front, but with the front-facing image of the self obtained by a 180° yaw rotation, and proposes the hypothesis that this operation produces the perception of left-right reversal. A flowchart contrasts this "cognitive twist" with "correct cognition," in which the mirror image is compared with the present self. This is the English-language version of the author's Japanese paper.

Zenodo (CERN European Organization for Nuclear Research)
Reduced inequalities
Spatial Cognition and Navigation
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