EMG controlled myoelectric upper limb prosthetic

A prosthetic is an artificial device that substitutes for a missing limb of an amputee. The development of prosthetic hands aims to give people the ability to recover the functionality needed to manipulate objects in their daily environment. An advanced way to control a prosthetic limb is known as t

2025-06-28 16:26:59 - Adil Khan

Project Title

EMG controlled myoelectric upper limb prosthetic

Project Area of Specialization Biomedical EngineeringProject Summary

A prosthetic is an artificial device that substitutes for a missing limb of an amputee. The development of prosthetic hands aims to give people the ability to recover the functionality needed to manipulate objects in their daily environment. An advanced way to control a prosthetic limb is known as the myoelectric method. Myoelectric prostheses are powered by the muscle electric signals taken of the remnant limb. They have a microcontroller that reads these muscle signals and translate them into different movements by means of motors. Usually each finger of the prosthesis has a motor, allowing the hand to move and grip in a natural and coordinated manner. The prosthetics are designed to perform everyday activities, such as eating, opening doors, turning on lights etc. but  the main drawback with commercial prosthesis is their high acquisition costs (unit cost of between US $ 25,000 - $35,000 in USA and Pakistan made prosthesis are approx. $2000 or more), which makes them nearly inaccessible for most of the potential users.

In this project, we will be utilizing a commercial muscle sensor to pick the signals from the body, an Arduino module to process these signals, software to classify these signals and convert them into hand movements by controlling the movement of the artificial hand within an adequate performance range. Generally, an adult human hand has a weight of 598g-600g. We aim to design a lighter trans-radial prosthetic hand keeping this weight range in mind so that it is better for people with high-level amputations, who otherwise find it cumbersome due to the power and weight constraints of the entire prosthetic arm.

Project Objectives Project Implementation Method Benefits of the Project

Myoelectric prosthesis are the most promising devices for restoring some of the missing limb’s functions. The core benefits of the project would be,

Technical Details of Final Deliverable Final Deliverable of the Project HW/SW integrated systemCore Industry HealthOther Industries IT , Medical Core Technology RoboticsOther Technologies 3D/4D Printing, Wearables and ImplantablesSustainable Development Goals Good Health and Well-Being for PeopleRequired Resources
Item Name Type No. of Units Per Unit Cost (in Rs) Total (in Rs)
Total in (Rs) 67300
3D Model Equipment11500015000
Arduino Uno Equipment115001500
Servo Motors (SG90) Equipment55002500
Brush Less DC Motors Equipment110001000
Strings/Fishing Line Equipment110001000
Lithium ion batteries Equipment125002500
Bluetooth IC Equipment1500500
Myo arm band Equipment13500035000
Wires connectors and jumper Equipment110001000
VGA Cable Equipment1300300
VGA convertor Equipment110001000
USB(32GB) Equipment110001000
Report Printing Miscellaneous 120002000
Poster printing Miscellaneous 130003000

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