Conception and evaluation of a washable multimodal smart textile
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N. Lahmann | U. Müller-Werdan | Simone Kuntz | Jürgen Klingehöfer-Noe | Fabian Jaenicke | Sandra Strube-Lahmann
[1] G. Courtine,et al. Structured nanoscale metallic glass fibres with extreme aspect ratios , 2020, Nature Nanotechnology.
[2] Wei Yan,et al. High-efficiency super-elastic liquid metal based triboelectric fibers and textiles , 2020, Nature Communications.
[3] Insoo Kim,et al. Challenges in Design and Fabrication of Flexible/Stretchable Carbon- and Textile-Based Wearable Sensors for Health Monitoring: A Critical Review , 2020, Sensors.
[4] G. M. Nazmul Islam,et al. Textile sensors for wearable applications: a comprehensive review , 2020, Cellulose.
[5] Jun Chen,et al. Single-layered ultra-soft washable smart textiles for all-around ballistocardiograph, respiration, and posture monitoring during sleep. , 2020, Biosensors & bioelectronics.
[6] Shan Jiang,et al. Thermally drawn advanced functional fibers: New frontier of flexible electronics , 2020 .
[7] Carson I. Tucker,et al. A tailored, electronic textile conformable suit for large-scale spatiotemporal physiological sensing in vivo , 2020, npj Flexible Electronics.
[8] N. C. Das,et al. A Multifunctional Smart Textile Derived from Merino Wool/Nylon Polymer Nanocomposites as Next Generation Microwave Absorber and Soft Touch Sensor. , 2020, ACS applied materials & interfaces.
[9] Y. Fink,et al. Recent Progress and Perspectives of Thermally Drawn Multimaterial Fiber Electronics , 2019, Advanced materials.
[10] Emiliano Schena,et al. Wearable System Based on Flexible FBG for Respiratory and Cardiac Monitoring , 2019, IEEE Sensors Journal.
[11] Jorge Bondia,et al. Enhanced Accuracy of Continuous Glucose Monitoring during Exercise through Physical Activity Tracking Integration , 2019, Sensors.
[12] Emiliano Schena,et al. Cardio-Respiratory Monitoring in Archery Using a Smart Textile Based on Flexible Fiber Bragg Grating Sensors , 2019, Sensors.
[13] X. Tao,et al. Smart Textile‐Integrated Microelectronic Systems for Wearable Applications , 2019, Advanced materials.
[14] N. Kim,et al. Evolution of Smart Health Wearables: Novel Application for Detection of Arrhythmia , 2019, Korean circulation journal.
[15] Zihao Wang,et al. Engineering Graphene Flakes for Wearable Textile Sensors via Highly Scalable and Ultrafast Yarn Dyeing Technique , 2019, ACS nano.
[16] T. Shin,et al. Machine-Washable Smart Textiles with Photothermal and Antibacterial Activities from Nanocomposite Fibers of Conjugated Polymer Nanoparticles and Polyacrylonitrile , 2018, Polymers.
[17] Li Zhang,et al. Smart Wearables in Healthcare: Signal Processing, Device Development, and Clinical Applications , 2018, Journal of healthcare engineering.
[18] Michiko Nishiyama,et al. Smart Textile Using Hetero-Core Optical Fiber for Heartbeat and Respiration Monitoring , 2018, IEEE Sensors Journal.
[19] Chi Cuong Vu,et al. Human Motion Recognition by Textile Sensors Based on Machine Learning Algorithms , 2018, Sensors.
[20] Steve J. A. Majerus,et al. Sensors Selection for Continuous Monitoring of Bowel State and Activity , 2018, 2018 40th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[21] R. Pailes-Friedman. Electronics and Fabrics: The Development of Garment‐Based Wearables , 2018, Advanced Materials Technologies.
[22] Manisha Desai,et al. Effect of a wearable patient sensor on care delivery for preventing pressure injuries in acutely ill adults: A pragmatic randomized clinical trial (LS-HAPI study). , 2018, International journal of nursing studies.
[23] Wudan Yan,et al. Toward Better Management for Asthma: From Smart Inhalers to Injections to Wearables, Researchers Are Finding New Ways to Improve Asthma Treatment , 2018, IEEE Pulse.
[24] J. Sosnoff,et al. Novel sensing technology in fall risk assessment in older adults: a systematic review , 2018, BMC Geriatrics.
[25] C. Guo,et al. Thermal, Waterproof, Breathable, and Antibacterial Cloth with a Nanoporous Structure. , 2018, ACS applied materials & interfaces.
[26] Miguel López-Benítez,et al. Wearable Internet of Things - from human activity tracking to clinical integration , 2017, 2017 39th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[27] Stéphane Hallé,et al. Validation of a Wearable Biometric System’s Ability to Monitor Heart Rate in Two Different Climate Conditions under Variable Physical Activities , 2017 .
[28] Hooman Mohseni,et al. An Optical-Fiber-Based Smart Textile (Smart Socks) to Manage Biomechanical Risk Factors Associated With Diabetic Foot Amputation , 2017, Journal of diabetes science and technology.
[29] Xuyuan Tao,et al. How to Make Reliable, Washable, and Wearable Textronic Devices , 2017, Sensors.
[30] I. Jerman,et al. Embedment of silver into temperature- and pH-responsive microgel for the development of smart textiles with simultaneous moisture management and controlled antimicrobial activities. , 2017, Carbohydrate polymers.
[31] Itthipon Jeerapan,et al. Stretchable Biofuel Cells as Wearable Textile-based Self-Powered Sensors. , 2016, Journal of materials chemistry. A.
[32] Xuemei Sun,et al. Smart Electronic Textiles. , 2016, Angewandte Chemie.
[33] Emiliano Schena,et al. Medical Smart Textiles Based on Fiber Optic Technology: An Overview , 2015, Journal of functional biomaterials.
[34] Jan Vanfleteren,et al. Integration of stretchable and washable electronic modules for smart textile applications , 2012 .
[35] Javier Bajo,et al. Applying wearable solutions in dependent environments , 2010, IEEE Transactions on Information Technology in Biomedicine.
[36] Robert Puers,et al. Smart textiles. , 2008, Studies in health technology and informatics.
[37] S S Bruce-Low,et al. Effect of wearing personal protective clothing and self-contained breathing apparatus on heart rate, temperature and oxygen consumption during stepping exercise and live fire training exercises , 2007, Ergonomics.
[38] G M Lyons,et al. Long-term mobility monitoring of older adults using accelerometers in a clinical environment , 2004, Clinical rehabilitation.
[39] Michael L. Burns,et al. Medical Trauma Assessment Through the Use of Smart Textiles. , 1995 .
[40] N. Davies. WEARABLES, IMPLANTS AND APPS, Oh My! SMART TECHNOLOGY FOR DIABETES SELF-CARE. , 2016, Diabetes self-management.
[41] Christl Lauterbach,et al. Integrated Microelectronics for Smart Textiles , 2005, Ambient Intelligence.
[42] S Park,et al. The Wearable Motherboard: a flexible information infrastructure or sensate liner for medical applications. , 1999, Studies in health technology and informatics.