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1.
Nat Commun ; 14(1): 4335, 2023 07 19.
Artículo en Inglés | MEDLINE | ID: mdl-37468458

RESUMEN

Implanted bioelectronic devices can form distributed networks capable of sensing health conditions and delivering therapy throughout the body. Current clinically-used approaches for wireless communication, however, do not support direct networking between implants because of signal losses from absorption and reflection by the body. As a result, existing examples of such networks rely on an external relay device that needs to be periodically recharged and constitutes a single point of failure. Here, we demonstrate direct implant-to-implant wireless networking at the scale of the human body using metamaterial textiles. The textiles facilitate non-radiative propagation of radio-frequency signals along the surface of the body, passively amplifying the received signal strength by more than three orders of magnitude (>30 dB) compared to without the textile. Using a porcine model, we demonstrate closed-loop control of the heart rate by wirelessly networking a loop recorder and a vagus nerve stimulator at more than 40 cm distance. Our work establishes a wireless technology to directly network body-integrated devices for precise and adaptive bioelectronic therapies.


Asunto(s)
Prótesis e Implantes , Textiles , Animales , Humanos , Porcinos , Tecnología Inalámbrica , Ondas de Radio , Diseño de Equipo
2.
Nat Biomed Eng ; 5(10): 1217-1227, 2021 10.
Artículo en Inglés | MEDLINE | ID: mdl-34654900

RESUMEN

Monitoring surgical wounds post-operatively is necessary to prevent infection, dehiscence and other complications. However, the monitoring of deep surgical sites is typically limited to indirect observations or to costly radiological investigations that often fail to detect complications before they become severe. Bioelectronic sensors could provide accurate and continuous monitoring from within the body, but the form factors of existing devices are not amenable to integration with sensitive wound tissues and to wireless data transmission. Here we show that multifilament surgical sutures functionalized with a conductive polymer and incorporating pledgets with capacitive sensors operated via radiofrequency identification can be used to monitor physicochemical states of deep surgical sites. We show in live pigs that the sutures can monitor wound integrity, gastric leakage and tissue micromotions, and in rodents that the healing outcomes are equivalent to those of medical-grade sutures. Battery-free wirelessly operated bioelectronic sutures may facilitate post-surgical monitoring in a wide range of interventions.


Asunto(s)
Dehiscencia de la Herida Operatoria , Herida Quirúrgica , Animales , Técnicas de Sutura , Suturas , Porcinos , Cicatrización de Heridas
3.
Nat Commun ; 11(1): 444, 2020 01 23.
Artículo en Inglés | MEDLINE | ID: mdl-31974376

RESUMEN

Networks of sensors placed on the skin can provide continuous measurement of human physiological signals for applications in clinical diagnostics, athletics and human-machine interfaces. Wireless and battery-free sensors are particularly desirable for reliable long-term monitoring, but current approaches for achieving this mode of operation rely on near-field technologies that require close proximity (at most a few centimetres) between each sensor and a wireless readout device. Here, we report near-field-enabled clothing capable of establishing wireless power and data connectivity between multiple distant points around the body to create a network of battery-free sensors interconnected by proximity to functional textile patterns. Using computer-controlled embroidery of conductive threads, we integrate clothing with near-field-responsive patterns that are completely fabric-based and free of fragile silicon components. We demonstrate the utility of the networked system for real-time, multi-node measurement of spinal posture as well as continuous sensing of temperature and gait during exercise.


Asunto(s)
Vestuario , Monitoreo Ambulatorio/instrumentación , Monitoreo Ambulatorio/métodos , Tecnología Inalámbrica , Suministros de Energía Eléctrica , Fenómenos Electromagnéticos , Diseño de Equipo , Ejercicio Físico/fisiología , Humanos , Rodilla , Postura/fisiología , Columna Vertebral/fisiología , Temperatura , Caminata/fisiología , Tecnología Inalámbrica/instrumentación
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