暂无分享,去创建一个
[1] Yiwen Gao,et al. An empirical study of wearable technology acceptance in healthcare , 2015, Ind. Manag. Data Syst..
[2] Matthew S. Eastin,et al. Wearable fitness technology: A structural investigation into acceptance and perceived fitness outcomes , 2016, Comput. Hum. Behav..
[3] W. Thompson,et al. WORLDWIDE SURVEY OF FITNESS TRENDS FOR 2020 , 2019, ACSM'S Health & Fitness Journal.
[4] Andoni Beristain,et al. Challenges in Wearable Devices Based Pervasive Wellbeing Monitoring , 2015, 2015 International Conference on Identification, Information, and Knowledge in the Internet of Things (IIKI).
[5] Molly Follette Story,et al. The Universal Design File: Designing for People of All Ages and Abilities. Revised Edition. , 1998 .
[6] Bambang Parmanto,et al. Applying a User-Centered Approach to Building a Mobile Personal Health Record App: Development and Usability Study , 2019, JMIR mHealth and uHealth.
[7] Walter R. Thompson,et al. WORLDWIDE SURVEY OF FITNESS TRENDS FOR 2019 , 2018, ACSM'S Health & Fitness Journal.
[8] Keng Siau,et al. Factors Influencing the Adoption of Smart Wearable Devices , 2018, Int. J. Hum. Comput. Interact..
[9] Jan Gulliksen,et al. Universal design, inclusive design, accessible design, design for all: different concepts—one goal? On the concept of accessibility—historical, methodological and philosophical aspects , 2014, Universal Access in the Information Society.
[10] Akram Alomainy,et al. Challenges with Current Wearable Technology in Monitoring Health Data and Providing Positive Behavioural Support , 2015, EAI Endorsed Trans. Future Intell. Educ. Environ..
[11] L. Cadmus-Bertram,et al. Randomized Trial of a Fitbit-Based Physical Activity Intervention for Women. , 2015, American journal of preventive medicine.
[12] Sunny Ahmed,et al. Urbanears Ugglan - Studying Usercentered Designin Product Development , 2018 .
[13] Wolfgang F. E. Preiser. UNIVERSAL DESIGN: FROM POLICY TO ASSESSMENT RESEARCH AND PRACTICE , 2008 .
[14] Petar Popovski,et al. 5G Wireless Network Slicing for eMBB, URLLC, and mMTC: A Communication-Theoretic View , 2018, IEEE Access.
[15] Huantian Cao,et al. Development and testing of a stitched stretch sensor with the potential to measure human movement , 2018 .
[16] Huantian Cao,et al. Playskin Lift: Development and Initial Testing of an Exoskeletal Garment to Assist Upper Extremity Mobility and Function , 2015, Physical Therapy.
[17] Steve Mann,et al. An historical account of the 'WearComp' and 'WearCam' inventions developed for applications in 'personal imaging' , 1997, Digest of Papers. First International Symposium on Wearable Computers.
[18] Wei Liu,et al. Running guide: design of a marathon navigation system for visually impaired people , 2019 .
[19] Helena M. Mentis,et al. "But, I don't take steps": Examining the Inaccessibility of Fitness Trackers for Wheelchair Athletes , 2015, ASSETS.
[20] Peter Gregor,et al. “User sensitive inclusive design”— in search of a new paradigm , 2000, CUU '00.
[21] Vladimir Tomberg,et al. Applying Universal Design Principles to Themes for Wearables , 2015, HCI.
[22] Dong-Hee Shin,et al. An acceptance model for smart watches: Implications for the adoption of future wearable technology , 2015, Internet Res..
[23] Eunil Park,et al. Understanding the emergence of wearable devices as next-generation tools for health communication , 2016, Inf. Technol. People.
[24] Cliff Randell. Wearable Computing : A Review , 2006 .
[25] Aitor Cazón-Martín,et al. THE ROLE OF USER-CENTRED DESIGN IN SMART WEARABLE SYSTEMS DESIGN PROCESS , 2018 .
[26] A. Lymberis,et al. Intelligent biomedical clothing for personal health and disease management: state of the art and future vision. , 2003, Telemedicine journal and e-health : the official journal of the American Telemedicine Association.
[27] Federico Casalegno,et al. Safety++: Designing IoT and Wearable Systems for Industrial Safety through a User Centered Design Approach , 2017, PETRA.
[28] Ryan Integlia,et al. Advancement in Orthopedics Through an Accessible Wearable Device , 2019 .
[29] Shaun K. Kane,et al. Goby: A Wearable Swimming Aid for Blind Athletes , 2017, ASSETS.
[30] Vivian Genaro Motti,et al. Human Factors Considerations in the Design of Wearable Devices , 2014 .
[31] Vivian Genaro Motti,et al. Design recommendations to improve the user interaction with wrist worn devices , 2015, 2015 IEEE International Conference on Pervasive Computing and Communication Workshops (PerCom Workshops).
[32] Michele Magno,et al. Kinetic energy harvesting: Toward autonomous wearable sensing for Internet of Things , 2016, 2016 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM).
[33] Luca Chittaro,et al. MOPET: A context-aware and user-adaptive wearable system for fitness training , 2008, Artif. Intell. Medicine.
[34] Damian Anzaldo,et al. Wearable sports technology - Market landscape and compute SoC trends , 2015, 2015 International SoC Design Conference (ISOCC).
[35] Weiyang Deng,et al. Development of a Wearable Sensor Algorithm to Detect the Quantity and Kinematic Characteristics of Infant Arm Movement Bouts Produced across a Full Day in the Natural Environment. , 2017, Technologies.
[36] Mike Krey,et al. Wearable Device Technology in Healthcare - Exploring Constraining and Enabling Factors , 2019, ICICT.
[37] Joyce M Lee,et al. A Maker Movement for Health: A New Paradigm for Health Innovation. , 2017, JAMA pediatrics.
[38] David Harrison,et al. Review on Wearable Technology Sensors Used in Consumer Sport Applications , 2019, Sensors.
[39] Sebastian Müller,et al. Haptically augmented remote speech communication: a study of user practices and experiences , 2012, NordiCHI.
[40] Constantine Stephanidis,et al. User Interfaces for All: New Perspectives into Human- Computer Interaction , 2001 .
[41] B. Hu,et al. Cellular Polypropylene Piezoelectret for Human Body Energy Harvesting and Health Monitoring , 2015 .
[42] Qian Zhang,et al. Wearables Can Afford: Light-weight Indoor Positioning with Visible Light , 2015, MobiSys.
[43] Venere Ferraro,et al. Designing wearable technologies through a user centered approach , 2011, DPPI.
[44] Vladimir Tomberg,et al. Designing Wearables with People in Mind , 2019 .
[45] Lieven De Couvreur,et al. Expect the unexpected: the co-construction of assistive artifacts , 2012 .
[46] Birgit Penzenstadler,et al. Crafting Usable Quantified Self-wearable Technologies for Older Adult , 2018, Advances in Human Factors in Wearable Technologies and Game Design.
[47] Lucy E. Dunne,et al. Theory and characterization of a top-thread coverstitched stretch sensor , 2012, 2012 IEEE International Conference on Systems, Man, and Cybernetics (SMC).
[48] Sumin Helen Koo,et al. Explorations of wearable technology for tracking self and others , 2018, Fashion and Textiles.
[49] Thea van der Geest,et al. Wearables for all: development of guidelines to stimulate accessible wearable technology design , 2016, W4A.
[50] Martha L. Hall,et al. Design and development of the first exoskeletal garment to enhance arm mobility for children with movement impairments , 2018, Assistive technology : the official journal of RESNA.
[51] Leah Findlater,et al. Toward accessible health and fitness tracking for people with mobility impairments , 2016, PervasiveHealth.
[52] Krishna Murthy Jatavallabhula,et al. Maxxyt: An Autonomous Wearable Device for Real-Time Tracking of a Wide Range of Exercises , 2015, 2015 17th UKSim-AMSS International Conference on Modelling and Simulation (UKSim).
[53] Elena Mugellini,et al. Designing a desirable smart bracelet for older adults , 2013, UbiComp.
[54] Alejandro Rodríguez-Molinero,et al. A Human-Centered Design Methodology to Enhance the Usability, Human Factors, and User Experience of Connected Health Systems: A Three-Phase Methodology , 2017, JMIR human factors.
[55] Andreas Bulling,et al. Wearable eye tracking for mental health monitoring , 2012, Comput. Commun..
[56] Yukun Bao,et al. Acceptance and use predictors of fitness wearable technology and intention to recommend , 2019, Ind. Manag. Data Syst..
[57] Dan Morris,et al. RecoFit: using a wearable sensor to find, recognize, and count repetitive exercises , 2014, CHI.
[58] Gérard G. Medioni,et al. RGB-D camera based wearable navigation system for the visually impaired , 2016, Comput. Vis. Image Underst..
[59] Tim Lüth,et al. Quantitative evaluation of Parkinson's disease using sensor based smart glove , 2011, 2011 24th International Symposium on Computer-Based Medical Systems (CBMS).
[60] Robert F. Erlandson,et al. Universal and Accessible Design for Products, Services, and Processes , 2007 .
[61] Mahbub Hassan,et al. A Survey of Wearable Devices and Challenges , 2017, IEEE Communications Surveys & Tutorials.
[62] Hao Liu,et al. Towards mental stress detection using wearable physiological sensors , 2011, 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[63] Vladimir Tomberg,et al. Universal Design Based Evaluation Framework for Design of Wearables , 2017 .
[64] K. B. Letaief,et al. A Survey on Mobile Edge Computing: The Communication Perspective , 2017, IEEE Communications Surveys & Tutorials.