Irad geiger1/29/2024 ![]() In particular, when conducting a particular task in a high dose area, or a number of repair works within a radiation field, radiation dose monitoring is important for the health of the workers and the work efficiency. However, such devices used in radiation fields these days have no functions for communicating with other areas or the responsible personnel in real time. Some more » of them have functions that generate audible or visible alarms to radiation workers in a real working area. The radiation workers at a nuclear facility should hold personal dosimeters such as a Thermo-Luminescence Dosimeter (TLD), an Optically Stimulated Luminescence Dosimeter (OSL), pocket ionization chamber dosimeters, an Electronic Personal Dosimeter (EPD), or an alarm dosimeter on their body. Our project focuses on the interconnection of radiation dosimetry and IoT technology. In particular, our lives are now becoming integrated with a lot of items around the 'smart-phone' with IoT, including Bluetooth, Near Field Communication (NFC), Beacons, WiFi, and Global Positioning System (GPS). Internet of things (IoT) technology has recently shown a large flow of IT trends in human life. We strive to create a mobile app that will allow a nuclear field worker to have a faster and more efficient health monitoring method. The people this app can help include nuclear power plant workers, radiology technicians, hazardous materials removal workers, and nuclear medicine technologists. The combination of those functions will allow workers to measure their more » heart rate and blood pressure conveniently and within short periods of time. This app's Bluetooth Geiger counter and heart rate/blood pressure monitor features would prove beneficial to individuals in the nuclear industry who are exposed to various levels of radiation. This allows a user to transfer radiation readings from the Geiger counter to an iOS device while being able to monitor their health as they are exposed to radiation. The personal dosimeter Bluetooth connection function is being developed by another student group at Texas A and M University-Kingsville. The overall goal to integrate this heart rate and blood pressure monitoring app with a personal dosimeter to build a comprehensive health monitoring app. This enables anyone to have an understanding of their health issues if any are present. The app will be designed to read the heart rate through blood flow, and because blood flow is directly proportional with blood pressure, this app will also allow the user to get a blood pressure estimate. ![]() The objective of this research project is to create a heart rate monitor mobile application (app) that allows the user to receive an accurate heart rate reading by placing their finger on the camera for about fifteen seconds. ![]()
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