Involuntary Behavioral Inhibition: Taxonomies of Attentional Capture and Sensory Optimization
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2025
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| _version_ | 1866901743741173760 |
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| author | Fryson, Dion |
| author_facet | Fryson, Dion |
| contents | <p>This report establishes a taxonomy of <strong>Involuntary Behavioral Inhibition,</strong> analyzing the mechanics of <strong>Attentional Capture</strong> outside the scope of social anxiety or attraction. Utilizing ISCO data centered on the <strong>Alex-Jamie</strong> dyad, we identify a <strong>Core Involuntary Trigger</strong> where high-density sensory input precipitates a <strong>Compulsive Stop</strong> of the motor system. We delineate three distinct inhibition phases: the <strong>Processing Freeze</strong> (maximizing input for complex data), the <strong>High-Threat/Novelty Freeze</strong> (rapid assessment of critical signals), and the <strong>Aversion Freeze</strong> (suppression of socially damaging reactions). This study demonstrates that the "freeze" is a fundamental <strong>Sensory Optimization Protocol,</strong> where the brain hijacking motor control to reallocate metabolic resources to the visual and auditory processing centers.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18512215 |
| institution | Zenodo |
| language | |
| publishDate | 2025 |
| publisher | Zenodo |
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| spellingShingle | Involuntary Behavioral Inhibition: Taxonomies of Attentional Capture and Sensory Optimization Fryson, Dion Involuntary Behavioral Inhibition Attentional Capture Processing Freeze High-Threat Freeze Aversion Freeze Sensory Optimization Compulsive Stop ISCO --- <p>This report establishes a taxonomy of <strong>Involuntary Behavioral Inhibition,</strong> analyzing the mechanics of <strong>Attentional Capture</strong> outside the scope of social anxiety or attraction. Utilizing ISCO data centered on the <strong>Alex-Jamie</strong> dyad, we identify a <strong>Core Involuntary Trigger</strong> where high-density sensory input precipitates a <strong>Compulsive Stop</strong> of the motor system. We delineate three distinct inhibition phases: the <strong>Processing Freeze</strong> (maximizing input for complex data), the <strong>High-Threat/Novelty Freeze</strong> (rapid assessment of critical signals), and the <strong>Aversion Freeze</strong> (suppression of socially damaging reactions). This study demonstrates that the "freeze" is a fundamental <strong>Sensory Optimization Protocol,</strong> where the brain hijacking motor control to reallocate metabolic resources to the visual and auditory processing centers.</p> |
| title | Involuntary Behavioral Inhibition: Taxonomies of Attentional Capture and Sensory Optimization |
| topic | Involuntary Behavioral Inhibition Attentional Capture Processing Freeze High-Threat Freeze Aversion Freeze Sensory Optimization Compulsive Stop ISCO --- |
| url | https://doi.org/10.5281/zenodo.18512215 |