ortho mobi

467
ortho mobi

Components Used

Powered byMouser Electronics
  • MPU6050 Gyroscope and Accelerometer

    MPU6050 (Gyroscope + Accelerometer + Temperature) is a combination of 3-axis Gyroscope, 3-axis Accelerometer and Temperature sensor with on-chip Digital Motion Processor (DMP). It is used in mobile devices, motion enabled games, 3D mice, Gesture (motion command) technology etc

    410-MPU-6050

  • NTC Thermistor

    NTC Thermistor

    NTCLE413E2103F520L

  • ADXL335 Accelerometer Module

    Accelerometer ADXL335 sensor measures acceleration of gravity. It is used to measure the angle of tilt or inclination in application systems such as in mobile devices, gaming applications, laptops, digital cameras, aeroplanes etc.

    474-SEN-09269

  • ESP32 WROOM

    WiFi Development Tools - 802.11 ESP32 General Development Kit, embeds ESP32-WROOM-32E, 4MB flash.

    356-ESP32-DEVKITC32E

  • EMG Sensor

    Multiple Function Sensor Development Tools Gravity: Analog EMG Sensor by OYMotion

    426-SEN0240

  • 12V Rechargeable Lithium Iron Battery

    LiFePO4 - Lithium Iron Phosphate Battery 12V 7.5Ah LiFePO4 5.95 x 2.56 x 3.70"

    5169-URB1270

  • Force Sensors

    Force Sensors & Load Cells FORCE SENSING RESISTOR

    588-FSR01DE

  • Flex Sensor

    Flex Sensor

    485-1070

 

Wearable health monitoring technology makes it possible to measure physiological indicators without interfering with daily activities and provides data that is indicative of a person's health and well-being. To acquire physiological data from the plantar aspect of the foot that may be evaluated to get insight into a
person's health, one such device can be placed in an insole, and the knee heals. An integrated understanding of a person's health and well-being can be achieved without interfering with daily activities by creating a system that can measure parameters such as PPD, gait characteristics, foot temperature, heart rate, and knee position. All the data are stored in the cloud. The proposed device can be used for a wide range of purposes, including the identification of pathologies, monitoring of medical conditions, and gait analysis. The data are processed using a machine learning - artificial neural network technique and stored in the cloud for later study. Real-time monitoring of the patient's schematic was done using the Unity software.


=> We first make sure the sensor is functioning effectively for our benefit before making the necessary alterations.
=> We must gather data from the sensors using the ESP-WROOM 32s microcontroller, manipulate the raw data, and transform it into real-time data.
=>The data transport to the website also used the same microcontroller. similar to https://friendly-dragon-0a92eb.netlify.app
=>We build the website using React JS and My SQL. which aids the physician's analysis.
=> We track the node using the ADXL335 Accelerometer and use the unity program to turn it into an animation. Animation is used to track the patent in a virtual environment.
=> The Force sensor, which helps to track the pressure of the leg at various locations, was mounted on the Feet.

Prototype kit of Otho Mobi:

PCB Board of the Ortho Mobi Project:

Website of the ortho Mobi Project

Description Video of the Ortho Mobi:

Demo Video of the Ortho Mobi:

Demo Video of the Unity Real-time Simulation:

 

RESULT: 

              Our Ortho Mobi kit was portable and reusable, our software was easy accessible and affordable in price. The kit was used on any surface and is easy to handle and more flexible. It will be very useful for diabetic patients and people in remote villages. Thus it will be very useful in the medical field which monitors patients regularly. To analyze the daily activities of patient who has ortho-related problems and diabetes-related in legs patients.

 

Comments2

Join the discussion — share a question or tip.

  • SRITHAP
    SRITHAP

    Real time Project for remote orthotic people...Great Work...

  • SA
    sathishkumars

    excellent work. better convert this into a product.