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Wireless Patient Monitoring System

Wireless Patient Monitoring System. Digital Health Section Professor: Patricia Mellodge. What is Digital Health?. The use of electronics; through the use in or on the body to assist medical professionals when treating various illnesses and ailments They would focus in three main areas

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Wireless Patient Monitoring System

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  1. Wireless Patient Monitoring System Digital Health Section Professor: Patricia Mellodge

  2. What is Digital Health? • The use of electronics; through the use in or on the body to assist medical professionals when treating various illnesses and ailments • They would focus in three main areas • Prevention • Diagnosis • Curing

  3. Project Selection Process • First Ideas: • Pollution Filter Mask • Oxygen Tank Flow Regulator • Orthopedic Shoes • Arthritic Glove • Voting: Ranked Projects 1-6, • top three projects were discussed • Weighed pros and cons • Overall compatibility as a class/group project

  4. Objective To construct a wireless system containing a hospital bed, computer monitor, and a patient sensor rig; which would alert an outside party of a patient’s position and medical status.

  5. Wireless Patient Monitoring System

  6. Project Schedule

  7. Bed Monitoring: Objective • Bed sensors determine if patient is in bed • Switches in a grid pattern are used to determine the patients location • Can be used in various hospice settings

  8. Bed: Materials 6’ x 2’ egg crate foam mattress pad 2 sheets of 6’ x 2’ plywood 12 contact switches Miscellaneous assembly hardware

  9. Bed: Materials • Contact Switches • The switches are constantly open unless depressed by a patient on the bed. • This will send a high(1) signal to the microcontroller

  10. Bed Monitoring: Design • One sheet of plywood serves as a base, while the switches are mounted on top of it. • The second sheet of plywood has holes drilled in it. • When the switches are depressed, they are flush with the top sheet of plywood. • Egg crate foam pad rests on top of the plywood to create a comfortable sleeping environment.

  11. Patient: Objective Prevention and awareness of danger to the patient through accurate monitoring of position, temperature and orientation

  12. How • Use a microcontroller to wirelessly transmit information from: • Temperature sensor • Accelerometer and tilt sensors • Indicate body orientation and location • Easy to maneuver and lightweight • iPod Armband

  13. Patient: Armband • Easy to maneuver and lightweight • iPod Armband Image obtained form: http://mp3.about.com/od/iPod-MP3-Player-Accessories/tp/Top-5-Ipod-Armbands-Listen-To-Digital-Music-On-Your-Ipod-While-You-Exercise.htm Altered iPod Armband will house enclosure

  14. Patient Accelerometer • Patient Rig • Supports mobility • Unobtrusive location • Lightweight design Tilt Sensors Armband Original image obtained from: http://www.mrprotocols.com/oldsite/MRI/information.htm

  15. Nurse’s Station: Objective • Through LabVIEW, we can make a presentable way to show the nurse the information on each patient that needs to be monitored. • We take data from the sensors taken from the other groups and present them in an organized manner • To do this, we use a wireless receiver in order to gather the data from their sensors

  16. Nurse’s Station: Parts • LabVIEW is used to display the information obtained from the patient and bed sensors • Transceiver will request and receive packets of data from all the sensors on the network

  17. Nurse’s Station: The Plan • LabVIEW will: • Receive data from transceiver • Parse the sensor data from the data packet • Utilize algorithms to filter accelerometer data • Display the patient's information to the user

  18. Nurse’s Station: LabView Demo

  19. Outline

  20. Budget < $300 • Goal was to shop efficiently • Buy only essential parts • Buy the cheapest compatible parts • Research each part individually • Write a proposal • Have it approved

  21. Parts List

  22. Advantages • A wireless system has several advantages such as: • Patient safety • Low maintenance • Ease of mobility for the caretaker/patient • Capacity for transmitting information • No need for a bulky monitoring station

  23. Advantages • Satisfies a demand for monitoring: • Unattended falls, heart attacks, fevers, and several other medical mishaps • Societal demand for this system due to staffing constraints • Applicable in a home setting

  24. Questions?

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