• Title/Summary/Keyword: Healthcare wearable device

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A Study on the Factors Affecting the Purchase of Healthcare Smart Bands (헬스 케어 스마트 밴드 구매에 영향을 미치는 요인에 관한 연구)

  • Choi, Seong-Hun;Kim, Seung-In
    • Journal of the Korea Convergence Society
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    • v.8 no.7
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    • pp.175-181
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    • 2017
  • The purpose of this study is to investigate what factors buyers buy in smart band purchasing. Especially, The study was conducted the perception of smart bands, focusing on personal healthcare, which is one of the biggest concern of today's people, and investigating the needs of users. SmartBand is the product with the highest market share in the wearable device market. It is an indicator of how much modern people are interested in their healthcare. Therefore, this study investigates non-users who are not currently using smart bands, and what factors to consider when buying smart bands. As a result, it was found that the design of the product and the hardware performance are more important than the smart band's personal health care function in purchasing the smart band, and fundamentally, the smart band itself was not needed. Especially, people aged 20-30 years have been burdened with using smart bands continuously.

Development of Mobile Healthcare System Using ECG Measurement (심전도 측정을 이용한 모바일 헬스케어 시스템 개발)

  • Kim, Seong-Woo;Shin, Seung-Chul
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.18 no.8
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    • pp.2008-2016
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    • 2014
  • With the increased attention about health care and management of heart diseases, ubiquitous healthcare services and related devices have been actively developed recently. In this paper we developed a mobile healthcare system which consists of smartphone and patch-type ECG measuring device. This system is capable of monitoring, storing, and sending bio signals such as ECG, heart rate, heart rate variability as well as exercise management functions through heart rate zones. With monitoring bio signal continuously by mobile healthcare system and wearable device like us, people can prevent chronic disease and maintain good health. Here we report our implementation results on real platforms.

Development of Wearable Physical Activity Monitoring System (웨어러블 신체 생체 활동 모니터링 시스템 개발)

  • Park, Eun-Ju;Park, Do-Young
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.11 no.1
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    • pp.34-39
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    • 2018
  • Along with the development of ICT technology, wearable devices of various sizes and shapes have been developed. In addition, performance and specifications are rebuilt with IOT fusion products so that they can connect with the current smartphone. This is one of the general-purpose technologies of the 4th industrial revolution, which is spot-lighted with technology that changes the quality and environment of our lives. Along with this, as new technology products combining health care technology increases, various functions are provided to users who need it. Wearable technology is ongoing trend of technology development. It also sells products developed as products in the form of smart watches. At present, various related products are made in various ways, and it is recommended to use the Arduino processor in accordance with the application. In this study, we developed wearable physical activity monitoring system using open source hardware based TinyDuino. TinyDuino is an ultra-compact Arduino compatible board made on the basis of Atmega process Board, and it can be programmed in open source integrated development environment(named Sketch). The physical activity monitoring system of the welfare body can be said to be a great advantage, as a smart u-Healthcare system that can perform daily health management.

3D-Porous Structured Piezoelectric Strain Sensors Based on PVDF Nanocomposites (PVDF 나노 복합체 기반 3차원 다공성 압전 응력 센서)

  • Kim, Jeong Hyeon;Kim, Hyunseung;Jeong, Chang Kyu;Lee, Han Eol
    • Journal of Sensor Science and Technology
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    • v.31 no.5
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    • pp.307-311
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    • 2022
  • With the development of Internet of Things (IoT) technologies, numerous people worldwide connect with various electronic devices via Human-Machine Interfaces (HMIs). Considering that HMIs are a new concept of dynamic interactions, wearable electronics have been highlighted owing to their lightweight, flexibility, stretchability, and attachability. In particular, wearable strain sensors have been applied to a multitude of practical applications (e.g., fitness and healthcare) by conformally attaching such devices to the human skin. However, the stretchable elastomer in a wearable sensor has an intrinsic stretching limitation; therefore, structural advances of wearable sensors are required to develop practical applications of wearable sensors. In this study, we demonstrated a 3-dimensional (3D), porous, and piezoelectric strain sensor for sensing body movements. More specifically, the device was fabricated by mixing polydimethylsiloxane (PDMS) and polyvinylidene fluoride nanoparticles (PVDF NPs) as the matrix and piezoelectric materials of the strain sensor. The porous structure of the strain sensor was formed by a sugar cube-based 3D template. Additionally, mixing methods of PVDF piezoelectric NPs were optimized to enhance the device sensitivity. Finally, it is verified that the developed strain sensor could be directly attached onto the finger joint to sense its movements.

Public Awareness of Digital Healthcare Services (디지털 헬스케어 서비스에 대한 일반인의 인식)

  • Mun, SeYeon;Yun, Young Mi;Han, Tae Hwa;Lee, Sang Eun;Chang, Hyuk Jae;Song, Si Young;Kim, Hyeon Chang
    • Journal of Digital Contents Society
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    • v.18 no.4
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    • pp.621-629
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    • 2017
  • According to the rapid population aging and the increase of the number of people with chronic diseases, the digital healthcare services are getting more and more attention. Recent improvement in information technology has expanded the consumers of digital healthcare service from the patients to the general population. Therefore, there is a growing need for studies on the status and needs of digital healthcare users in general. This study conducted a survey of 1,000 people on their perception and attitude about four areas of digital healthcare: internet health information service, smartphone healthcare application, wearable device, and u-health. The questionnaire asked the respondents about their past experience of using digital healthcare services, the purpose of use and point to be improved. The respondents were also asked about new type and contents of digital healthcare service which they would like to use. The survey results will help developers of digital healthcare service by improving their understanding and identifying unmet needs from the general population.

Design of Real-time Vital-Sign Encryption Module for Wearable Personal Healthcare Device (착용형 개인 건강관리 장치를 위한 실시간 생체신호 암호화 모듈의 설계)

  • Kim, Jungchae;Yoo, Sun Kook
    • Journal of the Institute of Electronics and Information Engineers
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    • v.50 no.2
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    • pp.221-231
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    • 2013
  • Exchanging personal health information(PHI) is an essential process of healthcare services using information and communication technology. But the process have the inherent risk of information disclosure, so the PHI should be protected to ensure the reliability of healthcare services. In this paper, we designed encryption module for wearable personal health devices(PHD). A main goal is to guarantee that the real-time encoded and transmitted PHI cannot be allowed to be read, revised and utilized without user's permission. To achieve this, encryption algorithms as DES and 3DES were implemented in modules operating in Telos Rev B(16bit RISC, 8Mhz). And the experiments were performed in order to evaluate the performance of encryption and decryption using vital-sign measured by PHD. As experimental results, an block encryption was measured the followings: DES required 1.802 ms and 3DES required 6.683 ms. Also, we verified the interoperability among heterogeneous devices by testing that the encrypted data in Telos could be decoded in other machines without errors. In conclusion, the encryption module is the method that a PHD user is given the powerful right to decide for authority of accessing his PHI, so it is expected to contribute the trusted healthcare service distribution.

A Study on the Persistence Reduction of Healthcare Wearable Device Users (헬스케어 웨어러블 디바이스 사용자들의 지속 사용성 감소에 대한 연구)

  • Lee, Do-Gyun;Jang, Jong-Wook
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.10a
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    • pp.80-81
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    • 2018
  • 헬스케어 웨어러블 디바이스(Healthcare Wearrable Device)는 신체에 부착하거나 신체의 한 부분으로 결합시켜 인체의 건강에 대하여 사용자의 의지에 따라 관리 할 수 있도록 돕는 모든 기기를 의미하며 한때 웨어러블 기기에 대한 소비자들의 관심이 높아 많은 종류의 디바이스 개발 및 상품이 나왔으나 사용자들의 사용빈도와 새로운 사용자의 감소가 이루어지고 있다. 이에 사용자로써 감소에 대한 원인 분석 및 대책 방안 마련을 위한 연구이다.

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A Implementation of Smart Band and Data Monitoring System available of Measuring Skin Moisture and UV based on ICT (ICT기반의 피부 수분 및 자외선 측정이 가능한 스마트 밴드 및 데이터 모니터링 시스템 구현)

  • Jung, Se-Hoon;Sim, Chun-Bo;You, Kang-Soo;So, Won-Ho
    • The Journal of the Korea institute of electronic communication sciences
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    • v.12 no.4
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    • pp.715-724
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    • 2017
  • Today all kinds of smart devices are being developed with various researches on wearable devices that support smart computing on the human body. Skin diseases continue to rise including freckles, pimples, atopy, and scalp trouble due to the environmental and genetic factors, and people pay bigger medical bills to treat their skin diseases. There is thus a need to develop a smart-phone or table-based smart healthcare imaging system of high portability and diagnostic accuracy capable of analyzing and managing various skin problems related to skin care. This study proposed an integrated system combining the Smart Mi Band, a wearable device using moisture and UV sensors based on IoT, on the hardware part with the sensor information monitoring software.

User Motion Recognition Healthcare System Using Smart-Band (스마트밴드를 이용한 사용자 모션인식 헬스 케어 시스템 구현)

  • Park, Jin-Tae;Hwang, Hyun-Seo;Yun, Jun-Soo;Park, Gyung-Soo;Moon, Il-Young
    • Journal of Advanced Navigation Technology
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    • v.18 no.6
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    • pp.619-624
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    • 2014
  • Nowadays there are various smart devices and development with the development of smart phones and that can be attached to the human body wearable computing device has been in the spotlight. In this paper, we proceeded developing wearable devices in watch type which can detect user's movement and developing a system which connects the wearable devices to smart TVs, or smart phones so that users can save and manage their physical information in those devices. Health care wearable devices already existing save information by connecting their systems to smart phones. And, smart TV health applications usually include motion detecting systems using cameras. However, there is a limit when connecting smart phone systems to different devices from various companies. Also, in case of smart TV, because some devices may not have cameras, there can be a limit for users who wants to connect their devices to smart TVs. Wearable device and user information collected by using the smart phone and when it is possible to exercise and manage anywhere. This information can also be confirmed by the smart TV applications. By using this system will be able to take advantage of the study of the behavior of the future work of the user more accurately be measured in recognition technology and other devices.

Danger Situations Alert System based U-Healthcare (유헬스케어 기반의 위험상황 알림 시스템)

  • Park, Byungdon;Yu, Donggyun;Jung, Hoekyung
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.21 no.1
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    • pp.193-198
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    • 2017
  • Recently, as interest in health increases, various wearable devices such as smart watch and smart band which can measure user's biometric information are being studied. Conventional wearable devices service the measured biometric information in a form that provides simple monitoring, disease prevention, and exercise amount. However, the user is Lack to deal with the dangerous situation. In this paper, we propose a hazard notification system to address these problems. The biometric information measured by the acceleration sensor and the heart rate sensor is transmitted to the application through the Arduino in real time. It identifies the risk situation through sensor priority measurement and risk situation identification algorithm. If a dangerous situation occurs, a notification message is sent to the guardian indicating the current location of the user. Therefore, it can be expected that if a dangerous situation occurs to a user who needs protection, he can respond promptly.