Abstract. DICOM(Digital Imaging and Communications in Medicine) which is standard of PACS(Picture Archiving Communication System) is set up as draft international standard for the purpose of collection and exchange the data and i mage among main medical display equipments. Currently most of latest medical display equipments(CT, MR, DSA, CR(Computed Radiology, etc) support t he image as DICOM standard form. These medical display equipments is n ormally utilized as connected feature with surgery monitoring devices like endoscope, X-lay camera.
<p>Smart and efficient agricultural production or smart farming using IoT sensors, big-data and cloud service has proven its value for a decade but the effect depends on the agricultural environment of the country or society. In Korea, the population of urban farmers who utilizes small, possibly shared area in farming. Urban farming uses rooftop of the building or even indoor for cropping and many urban farmers may not have sufficient professional farming experiences. However, with information technology like cloud service, many critical farming process can be automated and requires minimal human intervention in monitoring and controlling sensors. In this paper, we propose a smart urban farming model which modifies TTA smart greenhouse standard such that cloud service us integrated with IoT sensors. The hardware design of integrated controller and subsequent software services are specified. This new model can be used to enhance smart urban farming which is one of top 10 agricultural policy of the government.</p>
Abstract. The standardization and interoperability become central issues among researchers and the business market in Personal Health Monitoring and U-Health support systems. In this paper, we developed a HDP Manager that can be used for personal health monitoring with smart phones based on Bluetooth HDP through HDP agent simulator based on ISO/IEEE 11073 PHD. The system is designed for applying to all PHDs based on Bluetooth HDP authorized by CHA (Continua Health Alliance). While there has been a great amount of efforts and corresponding results in this area after ISO/IEEE 11073 data standards and Bluetooth HDP are announced, Android smart phone systems allow only after ICS version announced in 2012 thus this effort is to enhance the interoperability between HDP and smart phones.
Recent medical industry has been developed from therapy-centered medicals to health advance and anti-aging materials. In the t-Healthcare industry through these active developments, engineers are focused on investigations about monitoring of patient states and various bio-signals for such objective. One of general examples is that the arterial blood volume of general bio-signals is observed by using the photoplethysmogram (PPG) monitoring systems. This paper presents an novel equipment with low power, high degree of precision, and miniaturization by Programmable System-on-Chip (PSoC) technique which includes both analog circuits and microprocessor functions, in order to measure such PPG signal..
The standardization and interoperability become central issues among researchers and the business market in Personal Health Monitoring and U-Health support systems. ISO/IEEE11073 gives a good cost efficient standardization medium for that matter. In this paper, we developed a smart phone based health monitoring system under ISO/IEEE11073 and Bluetooth HDP. Here we report the implementation details of HDP Manager that can be used for personal health monitoring with smart phones based on Bluetooth HDP through HDP agent simulator based on ISO/IEEE 11073 PHD. The gateway in our system is based on HL7 converter. The system is designed for applying to all PHDs based on Bluetooth HDP authorized by CHA (Continua Health Alliance). While there has been a great amount of similar efforts to build a health monitoring system under ISO/IEEE 11073, Android smart phone systems allow only after ICS version announced in 2012 thus this effort is to enhance the interoperability between HDP and smart phones.
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