The Neuro-Aesthetic Field Theory of Smooth Sonic Gradients and Neural Stabilization

This paper presents a novel, unified neurobiological framework asserting that the sensation of pleasure in music is achieved through two diametrically opposed mechanical pathways. The first, characteristic of Western musical paradigms, relies on a transactional loop of engineered neurological stress, transient sensory discontinuity, and subsequent dopamine-mediated resolution—a process that carries a long-term allostatic and neurochemical cost. The second, characteristic of Indian classical music systems, operates as a neural stabilization engine. By utilizing unbroken frequency, amplitude, and rhythmic gradients, Indian classical music satisfies the brain’s intrinsic requirement for pattern-learning while systematically preventing the activation of the sympathetic nervous system, thereby delivering a metabolic and physiological state of sustained well-being without systemic debt.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-03
DOI
https://doi.org/10.5281/zenodo.23116806
Primary Topic
Neuroscience and Music Perception
Type
article
Field-Weighted Citation Impact
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article

The Neuro-Aesthetic Field Theory of Smooth Sonic Gradients and Neural Stabilization

Dr. King Swamy Satyapriya
Zenodo (CERN European Organization for Nuclear Research)
Neuroscience and Music Perception
article

The Neuro-Aesthetic Field Theory of Smooth Sonic Gradients and Neural Stabilization

Dr. King Swamy Satyapriya
article en

Abstract

This paper presents a novel, unified neurobiological framework asserting that the sensation of pleasure in music is achieved through two diametrically opposed mechanical pathways. The first, characteristic of Western musical paradigms, relies on a transactional loop of engineered neurological stress, transient sensory discontinuity, and subsequent dopamine-mediated resolution—a process that carries a long-term allostatic and neurochemical cost. The second, characteristic of Indian classical music systems, operates as a neural stabilization engine. By utilizing unbroken frequency, amplitude, and rhythmic gradients, Indian classical music satisfies the brain’s intrinsic requirement for pattern-learning while systematically preventing the activation of the sympathetic nervous system, thereby delivering a metabolic and physiological state of sustained well-being without systemic debt.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 10%
Neuroscience and Music Perception
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