Page 37 - Read Online
P. 37
Huang et al. Soft Sci 2024;4:40 https://dx.doi.org/10.20517/ss.2024.37 Page 35 of 35
228. Ali S, Khan S, Khan A, Bermak A. Developing conductive fabric threads for human respiratory rate monitoring. IEEE Sensors J
2021;21:4350-6. DOI
229. Takamatsu S, Lonjaret T, Crisp D, Badier JM, Malliaras GG, Ismailova E. Direct patterning of organic conductors on knitted textiles
for long-term electrocardiography. Sci Rep 2015;5:15003. DOI PubMed PMC
230. Kim H, Rho S, Lim D, Jeong W. Characterization of embroidered textile-based electrode for EMG smart wear according to stitch
technique. Fash Text 2023;10:351. DOI
231. Tseghai GB, Malengier B, Fante KA, Van Langenhove L. Dry electroencephalography textrode for brain activity monitoring. IEEE
Sensors J 2021;21:22077-85. DOI
232. Ha H, Suryaprabha T, Choi C, et al. Recent research trends in textile-based temperature sensors: a mini review. Nanotechnology
2023;34:422001. DOI
233. Zhang X, Tang S, Ma R, et al. High-performance multimodal smart textile for artificial sensation and health monitoring. Nano Energy
2022;103:107778. DOI
234. Nicolò A, Massaroni C, Schena E, Sacchetti M. The importance of respiratory rate monitoring: from healthcare to sport and exercise.
Sensors 2020;20:6396. DOI PubMed PMC
235. Feng Z, He Q, Qiu J, et al. Iontronic textile-based capacitive pressure sensor for unconstrained respiration and heartbeat monitoring.
Adv Mater Technol 2023;8:2300949. DOI
236. Lin Z, Nie S, He Q, et al. Wearable and flexible helical pressure sensor for noninvasive respiratory monitoring. ACS Appl Eng Mater
2023;1:2765-71. DOI
237. Khan A, Haque MN, Kabiraz DC, et al. A review on advanced nanocomposites materials based smart textile biosensor for healthcare
monitoring from human sweat. Sensor Actuat A Phys 2023;350:114093. DOI
238. Liu L, Ahn JH, Wang B. Wearable plasmonic biofluid sensors as your photonic skin. Soft Sci 2023;3:6. DOI
239. Brasier N, Niederberger C, Salvatore GA. The sweat rate as a digital biomarker in clinical medicine beyond sports science. Soft Sci
2024;4:6. DOI
240. Zhao G, Li Z, Huang X, Zhang Q, Liu Y, Yu X. Recent advances of sweat sampling, sensing, energy-harvesting and data-display
toward flexible sweat electronics. Soft Sci 2024;4:18. DOI
241. Li X, Dai B, Wang L, Yang X, Xu T, Zhang X. Radiative cooling and anisotropic wettability in E-textile for comfortable biofluid
monitoring. Biosens Bioelectron 2023;237:115434. DOI
242. Peng J, Cheng H, Liu J, et al. Superhydrophobic MXene-based fabric with electromagnetic interference shielding and thermal
management ability for flexible sensors. Adv Fiber Mater 2023;5:2099-113. DOI
243. Zhou Z, Padgett S, Cai Z, et al. Single-layered ultra-soft washable smart textiles for all-around ballistocardiograph, respiration, and
posture monitoring during sleep. Biosens Bioelectron 2020;155:112064. DOI
244. Bing Y, Xue H, Li F, Zhao H, Lin X, Zhang T. Real-time sleep apnea monitoring system enabled by high-performance strain sensors
based on elastic E-fibers. IEEE Sensors J 2024;24:19756-62. DOI
245. Hwang S, Kang M, Lee A, et al. Integration of multiple electronic components on a microfibre towards an emerging electronic textile
platform. Nat Commun 2022;13:3173. DOI PubMed PMC
246. Yang W, Lin S, Gong W, et al. Single body-coupled fiber enables chipless textile electronics. Science 2024;384:74-81. DOI
247. Wang P, Ma X, Lin Z, et al. Well-defined in-textile photolithography towards permeable textile electronics. Nat Commun
2024;15:887. DOI PubMed PMC
248. Hoofnagle CJ, van der Sloot B, Borgesius FZ. The European Union general data protection regulation: what it is and what it means.
Inf Commun Technol L 2019;28:65-98. DOI
249. Bhutani P, Joshi G, Raja N, et al. U.S. FDA approved drugs from 2015-June 2020: a perspective. J Med Chem 2021;64:2339-81.
DOI PubMed

