2020
DOI: 10.1038/s41528-020-0068-y
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A tailored, electronic textile conformable suit for large-scale spatiotemporal physiological sensing in vivo

Abstract: The rapid advancement of electronic devices and fabrication technologies has further promoted the field of wearables and smart textiles. However, most of the current efforts in textile electronics focus on a single modality and cover a small area. Here, we have developed a tailored, electronic textile conformable suit (E-TeCS) to perform large-scale, multimodal physiological (temperature, heart rate, and respiration) sensing in vivo. This platform can be customized for various forms, sizes and functions using … Show more

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Cited by 116 publications
(106 citation statements)
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“…In general, part of the solution may be found in remote sensing and imaging tools (oil and gas pipelines 251 , leaves 252 , tree 253 canopy 254,255 , radiation 256 ). SEE or "sense everything everywhere" (paintbased computation 257 , sensors in fabrics 258 ) was a 'touchy-feely' mantra at the turn of the millenium buoyed by the principle of ubiquitous 259 computing 260 but stumbled in practice due to the cost 261 of computation 262 . Vinton Cerf's "I P on Everything" 263 (I pee on everything) was the witty clarion call for embedding the IPv6 264 standard 265 in all things 266 to enable "bit dribbling" between "digital" objects.…”
Section: Post-pandemic Public Health and Healthcare: Broad Spectrum Umentioning
confidence: 99%
“…In general, part of the solution may be found in remote sensing and imaging tools (oil and gas pipelines 251 , leaves 252 , tree 253 canopy 254,255 , radiation 256 ). SEE or "sense everything everywhere" (paintbased computation 257 , sensors in fabrics 258 ) was a 'touchy-feely' mantra at the turn of the millenium buoyed by the principle of ubiquitous 259 computing 260 but stumbled in practice due to the cost 261 of computation 262 . Vinton Cerf's "I P on Everything" 263 (I pee on everything) was the witty clarion call for embedding the IPv6 264 standard 265 in all things 266 to enable "bit dribbling" between "digital" objects.…”
Section: Post-pandemic Public Health and Healthcare: Broad Spectrum Umentioning
confidence: 99%
“…In addition, to increase stretchability, structures such as serpentine that are robust to external deformations have been implemented in circuit designs. [49,51,52,55,59,65,66] Recent studies have paved the way for actual applications by solving hysteresis, [53,63,67] conformability, [42,51,52,55,56,59,62,64,[68][69][70] sensitivity issues, [40,48,62] and so on. Examples of stretchable sensors are briefly shown in Table 1 and 2.…”
Section: Stretchable Sensors For Hmimentioning
confidence: 99%
“…Studies on stretchable mechanical sensors show that they outperform traditional rigid board sensors in terms of performance (conformability, stretchability, and sensitivity). Sensors such as stretchable strain, [40,48,49,60,61] pressure, [70,73] temperature sensors, [66,69,74] and integrated devices [41,50,54] with several stretchable mechanical sensors have been introduced, thereby making HMI possible.…”
Section: Mechanical Sensorsmentioning
confidence: 99%
“…There are already wearable non-textile products on the commercial market, for instance, smartwatches and wrist bands, which are used to monitor activity and the wearer's health parameters. But, electronic devices integrated into textiles can offer several advantages, such as enhanced mobility and comfort for the user [148]. Reliability, performance, consistency over time, and comfort are the most important features that smart textiles should fulfill to enable their applications in the commercial market.…”
Section: Smart Textiles For Monitoring and Sensing As Part Of The Telmentioning
confidence: 99%