Inspiration
what inspired me to that project is the hardness of hospital access in so many countries and even after we get hospital appointments we are only put into some fancy devices and get our test results but with the developing technology of IoT Systems and LLMs we are able to bring those medical devices inside our home get our results and send those results to the large language models specially created for that purpose
What it does
the IoT based spirometer i created uses mpx5010dp and uses bernoulli`s equations to find fev1 and fvc values with those values alone we are able to detect nearly all of the potential lung diseases that might occur or the diseases that are relevent at the moment. i also developed my own transformer based LLM that detects potential diseases according to test results that are retrieved from the IoT medical device i developed
How we built it
i created equations accordingly to bernoulli`s principle to find the volume of the air that is exhaled into the tube and then i created a special pcb in order to make more compact device without cables everywhere and created a pocket spirometer and then developed a mobile application for it, provided the connection with bluetooth low energy to retrieve data that will be retrieved from the IoT device i created
Challenges we ran into
the biggest challenge for me was to create bluetooth low energy connection and retrieve the data flow successfully because bluetooth low energy was a brand new technology for me at the moment
Accomplishments that we're proud of
at the huawei ict competition that project has won the third place at europe
What we learned
Creating IoT systems and connecting them to the devices around us and creating LLMs from scratch
What's next for Spiroble
we will make that devices sellable and give them to the doctors for each devices doctors sell they will get a commision and we will turn that project into something commerical
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