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ANDROID BASED PATIENT HEALTH MONITORING AND ABNORMALITIES DETECTION USING MOBILE NETWORK

Published In: 2ND INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING, ELECTRONICS AND ELECTRICAL TECHNOLOGY
Author(s): DOMINIQUE S. NIYO , M. R. ANJUM , ZHIWEN LIU

Abstract: Electrocardiogram (ECG) signal, peripheral oxygen saturation (SPO2) and blood pressure are among the most used physiological signals in patient monitoring. A portable medical terminal monitor all these signals and connect the user with the medical center which is an unparalleled convenient way for patients and doctors to save lives. In this paper, Android based medical terminal is developed. This medical terminal not only has the feature of monitoring of several physiological signals and constant detection of eventual abnormalities, but also has the ability to send recorded data to the cloud server for further processing and storage. Furthermore, if any abnormality is detected then it will store data are uploaded to the cloud server. Those data are sent with the patient location obtained by GPS. Moreover, doctor at the medical center can request the terminal to upload data if needed and send some reminds as well as suggestions. The performance of the developed software in heartbeats de

  • Publication Date: 21-Dec-2014
  • DOI: 10.15224/978-1-63248-034-7-103
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RADIATION TOLERANCE EXPERIMENT FOR A DYNAMICALLY RECONFIGURABLE VISION ARCHITECTURE

Published In: 2ND INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING, ELECTRONICS AND ELECTRICAL TECHNOLOGY
Author(s): MINORU WATANABE , SHOJI KAWAHITO

Abstract: Recently, autonomous vehicles and robots demand high-speed image recognition capability that is superior to that of the human eye, in addition to capability of recognizing various natural images just like humans can. However, to realize both, the bus bandwidth of current memories is insufficient. Such an embedded system necessitates the use of numerous highresolution template images on a memory. Although the amount of memory is always sufficient, the transfer speed of template images is insufficient. To increase the number of recognition images, the number of template images must be increased. In addition to realizing rapid recognition, numerous template images must be transferred to a processor. Then a matching operation must be executed within an extremely short period. However, achieving such high-speed real-time image recognition operation is difficult because of the bottleneck of the bus bandwidth between the memory and processor. A dynamically reconfigurable vision architecture i

  • Publication Date: 21-Dec-2014
  • DOI: 10.15224/978-1-63248-034-7-109
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