“Applied Medi-Brain Energy-Tronic Treatment Method” for the Medical Treatments of SMA – Spinal Muscular Atrophy Disease, Paralyzed Patients, ALS Patients, MPS, SSPE, DMD Patients with the Biomechanical Analysis of Bionic Prosthetic Robotic Artificial Hand Design

Authors

  • Emin Taner Elmas Assistant Professor Dr, Vocational School of Higher Education for Technical Sciences, Division of Motor Vehicles and Transportation Technologies, Department of Automotive Technology, Iğdır University, Turkey & Graduate School of Natural and Applied Sciences - Major Science Department of Bioengineering and Bio-Sciences, Iğdır University, Turkey Author https://orcid.org/0000-0002-7290-2308

DOI:

https://doi.org/10.47363/JEAST/2025(7)335

Keywords:

SMA, Spinal Muscular Atrophia, Atrophy, SMA Patients, Paralyzed Patients, ALS Patients, MPS, SSPE, DMD Patients, Muscle Disease, Neuro-Engineering, Neural Engineering, Neuro-Science, Motor Neuron, Neuron, BCI, Brain-Computer Interface, Baringate, EEG–Electroencephalography, EMG-Electromyography, Neural Conduction, Pediatric Disease, Energy, Energy Transfer, Thermodynamics, Fluid Mechanics, Heat Transfer, Energy Conversion, Energy Efficiency, Mathematics, Medicine, Bioengineering, Health Science, ELMAS’s Theory of Thermodynamics, Medical Thermodynamics, Medical Technique, Medical Engineering

Abstract

This article explains “Applied Medi-Brain Energy-Tronic Treatment Method” for the Medical Treatments of SMA – Spinal Muscular Atrophy Disease, Paralyzed Patients, ALS patients, MPS, SSPE, DMD Patients with the Biomechanical Analysis of Bionic Prosthetic Robotic Artificial Hand Design.

For many people, artificial limbs are devices that replace a lost organ or limb. The purpose of artificial limbs is to replace the lost limb and perform functions in daily life and increase the individual's quality of life. These limbs use advanced mechanisms, sensors and motors to mimic natural limbs. While traditional prosthetics often offer limited flexibility and functionality, artificial limbs are becoming more personalized, functional and aesthetically better thanks to 3D printers.

The design to be discussed in this project will be an artificial hand prototype produced with PLA filament using 3D printers. The artificial hand design will aim to fulfill basic functions such as independent movement of the fingers, holding and grasping in a way that will comply with the biomechanical structure of the human hand.

This “Applied Medi-Brain Energy-Tronic Treatment Method” is completely original and unique to the corresponding author of this article, Emin Taner ELMAS and then the system is integrated with the “Applied Medi-Brain Energy-Tronic Treatment Method”. This “Applied Medi-Brain Energy-Tronic Treatment Method” is not a treatment that has been applied so far, it was invented, first thought and designed by the author of this article, Emin Taner ELMAS, and can be put into practice with step-by-step development stages.

The project contains the theory of a method tried to be developed that can treat SMA (Spinal Muscular Atrophy)disease and other similar neurological diseases. In the study, brain data will be examined with a 14-channel EEG Electroencephalography device. With this device, the signals in the brain will be examined and these signals will be transmitted to the patients’ muscles. Many physical and sensory functions cannot be performed in SMA patients. Coughing, swallowing, breathing, chewing, walking, hand, arm, leg and other muscle movements cannot occur. With this EEG device, the signals in the brain will be able to be seen as waves. By means of the special software of EEG device it is possible to manipulate the cube on the computer screen just by brain thinking and it is possible to simulate facial movements and facial expressions on the computer screen, as well.

Author Biography

  • Emin Taner Elmas, Assistant Professor Dr, Vocational School of Higher Education for Technical Sciences, Division of Motor Vehicles and Transportation Technologies, Department of Automotive Technology, Iğdır University, Turkey & Graduate School of Natural and Applied Sciences - Major Science Department of Bioengineering and Bio-Sciences, Iğdır University, Turkey

    Emin Taner Elmas, Assistant Professor Dr, Vocational School of Higher Education for Technical Sciences, Division of Motor Vehicles and Transportation Technologies, Department of Automotive Technology, Iğdır University, Turkey & Graduate School of Natural and Applied Sciences - Major Science Department of Bioengineering and Bio-Sciences, Iğdır University, Turkey

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Published

2025-12-12