When Broken Wings Learn to Fly Again: If the body can't move, let the mind travel first.

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Auteur principal: Avancha, Krishna Mohan
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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author Avancha, Krishna Mohan
author_facet Avancha, Krishna Mohan
contents <p dir="ltr">This paper proposes a multidimensional neurotechnological rehabilitation framework integrating Brain–Machine Interfaces (BMI), bird-inspired drone telepresence, 3D immersive visual systems, somatosensory body-mapping, and therapeutic frequency-based neuromodulation to support paralyzed and bedridden patients. The system is designed not merely as assistive technology, but as a neuro-psychological reactivation ecosystem that restores agency, purpose, employability, and hope.</p> <p><strong>Unlike conventional rehabilitation that treats paralysis as an endpoint, this framework treats it as a neuroplastic transition state. By enabling patients to “fly” via BMI-controlled drones—experiencing spatial freedom, mission responsibility, and economic participation—the intervention targets motor cortex re-engagement, dopaminergic motivation loops, and depression reversal, while simultaneously creating a government-supported employment pathway in surveillance, environmental monitoring, and disaster response.</strong></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18295622
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle When Broken Wings Learn to Fly Again: If the body can't move, let the mind travel first.
Avancha, Krishna Mohan
Brain–Machine Interface (BMI)
Neuroplasticity
Drone Telepresence
Paralysis Rehabilitation
Frequency Therapy
Depression Recovery
Assistive Neurotechnology
Embodied Cognition
<p dir="ltr">This paper proposes a multidimensional neurotechnological rehabilitation framework integrating Brain–Machine Interfaces (BMI), bird-inspired drone telepresence, 3D immersive visual systems, somatosensory body-mapping, and therapeutic frequency-based neuromodulation to support paralyzed and bedridden patients. The system is designed not merely as assistive technology, but as a neuro-psychological reactivation ecosystem that restores agency, purpose, employability, and hope.</p> <p><strong>Unlike conventional rehabilitation that treats paralysis as an endpoint, this framework treats it as a neuroplastic transition state. By enabling patients to “fly” via BMI-controlled drones—experiencing spatial freedom, mission responsibility, and economic participation—the intervention targets motor cortex re-engagement, dopaminergic motivation loops, and depression reversal, while simultaneously creating a government-supported employment pathway in surveillance, environmental monitoring, and disaster response.</strong></p>
title When Broken Wings Learn to Fly Again: If the body can't move, let the mind travel first.
topic Brain–Machine Interface (BMI)
Neuroplasticity
Drone Telepresence
Paralysis Rehabilitation
Frequency Therapy
Depression Recovery
Assistive Neurotechnology
Embodied Cognition
url https://doi.org/10.5281/zenodo.18295622