The Symphony of the Fractal Brain: Emergent Neurodynamics from Hausdorff Dimensions to Wavelet-Orchestrated Neural Intelligence
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| Format: | Recurso digital |
| Sprache: | Englisch |
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2025
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| _version_ | 1866902331238383616 |
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| author | Dr. Arsalan Zeyanli |
| author_facet | Dr. Arsalan Zeyanli |
| contents | <p>In the profound harmony of fractal geometry and neural symphonies, this research crafts a novel language to decipher the cosmic dance of the brain. Through the threads of wavelet mathematics and fractional derivatives, it interprets the dynamic architecture of neurons as a prism of infinite Hausdorff dimensions, where complexity is not a static numeral but a living melody of consciousness</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_15761601 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Symphony of the Fractal Brain: Emergent Neurodynamics from Hausdorff Dimensions to Wavelet-Orchestrated Neural Intelligence Dr. Arsalan Zeyanli Applied mathematics Computational Neuroscience Neural Biomedical Engineering Biomimetic Artificial Intelligence Nonlinear Dynamical Systems Biological Signal Processing Neurological Disorder Modeling Fractal Neurodynamics Dynamic Hausdorff Dimension (DHD) Wavelet-Resonance Circuits Fractional Calculus in Neuroscience Biomimetic Synapses Neuromorphic Engineering Neural Information Complexity Caputo Fractional Derivative Neurodegenerative Biomarkers Multiscale Signal Processing Mexican Hat Wavelet Cognitive Fractal Geometry Adaptive Neuro-AI Synaptic Plasticity Modeling Energy-Efficient Neural Networks Consciousness Dynamics Nonlocal Neural Memory Hodgkin-Huxley Fractional Model Brain-Inspired Computing Self-Similar Neural Architectures Dr. Arsalan Zeynali Arsalan Zeynali دکتر ارسلان زینالی ارسلان زینالی <p>In the profound harmony of fractal geometry and neural symphonies, this research crafts a novel language to decipher the cosmic dance of the brain. Through the threads of wavelet mathematics and fractional derivatives, it interprets the dynamic architecture of neurons as a prism of infinite Hausdorff dimensions, where complexity is not a static numeral but a living melody of consciousness</p> |
| title | The Symphony of the Fractal Brain: Emergent Neurodynamics from Hausdorff Dimensions to Wavelet-Orchestrated Neural Intelligence |
| topic | Applied mathematics Computational Neuroscience Neural Biomedical Engineering Biomimetic Artificial Intelligence Nonlinear Dynamical Systems Biological Signal Processing Neurological Disorder Modeling Fractal Neurodynamics Dynamic Hausdorff Dimension (DHD) Wavelet-Resonance Circuits Fractional Calculus in Neuroscience Biomimetic Synapses Neuromorphic Engineering Neural Information Complexity Caputo Fractional Derivative Neurodegenerative Biomarkers Multiscale Signal Processing Mexican Hat Wavelet Cognitive Fractal Geometry Adaptive Neuro-AI Synaptic Plasticity Modeling Energy-Efficient Neural Networks Consciousness Dynamics Nonlocal Neural Memory Hodgkin-Huxley Fractional Model Brain-Inspired Computing Self-Similar Neural Architectures Dr. Arsalan Zeynali Arsalan Zeynali دکتر ارسلان زینالی ارسلان زینالی |
| url | https://doi.org/10.5281/zenodo.15761601 |