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Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
by
Johnson, Megan
, Ross, Ethan C.
, Bakall, Jakob A.
, Gonzales, David A.
, Barron Villalobos, Efren
, Gutruf, Philipp
, Burton, Alex
, Peralta, Roberto
, Kasper, Kevin Albert
, Szivek, John A.
, Cai, Le
, Margolis, David S.
, Azami, Amirhossein
in
142/136
/ 147/135
/ 639/166/985
/ 639/166/987
/ 64/86
/ 9/10
/ Animal models
/ Animals
/ Bioelectricity
/ Biomedical materials
/ Bone growth
/ Bones
/ Calcium phosphates
/ Computer architecture
/ Electric Power Supplies
/ Electromagnetic Phenomena
/ Electronics
/ Electronics - instrumentation
/ Electronics - methods
/ Form factors
/ Humanities and Social Sciences
/ Interfaces
/ Male
/ Mechanical impedance
/ Microscopy, Electron, Scanning
/ multidisciplinary
/ Musculoskeletal Physiological Phenomena
/ Musculoskeletal system
/ Musculoskeletal System - anatomy & histology
/ Musculoskeletal System - ultrastructure
/ Neural Networks, Computer
/ New technology
/ Optoelectronics
/ Rats
/ Rats, Sprague-Dawley
/ Science
/ Science (multidisciplinary)
/ Sensors
/ Smartphones
/ Stimulation
/ Stress, Mechanical
/ Thermography
/ Thermography - instrumentation
/ Thermography - methods
/ Wireless Technology - instrumentation
/ X-Ray Microtomography - methods
2021
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Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
by
Johnson, Megan
, Ross, Ethan C.
, Bakall, Jakob A.
, Gonzales, David A.
, Barron Villalobos, Efren
, Gutruf, Philipp
, Burton, Alex
, Peralta, Roberto
, Kasper, Kevin Albert
, Szivek, John A.
, Cai, Le
, Margolis, David S.
, Azami, Amirhossein
in
142/136
/ 147/135
/ 639/166/985
/ 639/166/987
/ 64/86
/ 9/10
/ Animal models
/ Animals
/ Bioelectricity
/ Biomedical materials
/ Bone growth
/ Bones
/ Calcium phosphates
/ Computer architecture
/ Electric Power Supplies
/ Electromagnetic Phenomena
/ Electronics
/ Electronics - instrumentation
/ Electronics - methods
/ Form factors
/ Humanities and Social Sciences
/ Interfaces
/ Male
/ Mechanical impedance
/ Microscopy, Electron, Scanning
/ multidisciplinary
/ Musculoskeletal Physiological Phenomena
/ Musculoskeletal system
/ Musculoskeletal System - anatomy & histology
/ Musculoskeletal System - ultrastructure
/ Neural Networks, Computer
/ New technology
/ Optoelectronics
/ Rats
/ Rats, Sprague-Dawley
/ Science
/ Science (multidisciplinary)
/ Sensors
/ Smartphones
/ Stimulation
/ Stress, Mechanical
/ Thermography
/ Thermography - instrumentation
/ Thermography - methods
/ Wireless Technology - instrumentation
/ X-Ray Microtomography - methods
2021
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Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
by
Johnson, Megan
, Ross, Ethan C.
, Bakall, Jakob A.
, Gonzales, David A.
, Barron Villalobos, Efren
, Gutruf, Philipp
, Burton, Alex
, Peralta, Roberto
, Kasper, Kevin Albert
, Szivek, John A.
, Cai, Le
, Margolis, David S.
, Azami, Amirhossein
in
142/136
/ 147/135
/ 639/166/985
/ 639/166/987
/ 64/86
/ 9/10
/ Animal models
/ Animals
/ Bioelectricity
/ Biomedical materials
/ Bone growth
/ Bones
/ Calcium phosphates
/ Computer architecture
/ Electric Power Supplies
/ Electromagnetic Phenomena
/ Electronics
/ Electronics - instrumentation
/ Electronics - methods
/ Form factors
/ Humanities and Social Sciences
/ Interfaces
/ Male
/ Mechanical impedance
/ Microscopy, Electron, Scanning
/ multidisciplinary
/ Musculoskeletal Physiological Phenomena
/ Musculoskeletal system
/ Musculoskeletal System - anatomy & histology
/ Musculoskeletal System - ultrastructure
/ Neural Networks, Computer
/ New technology
/ Optoelectronics
/ Rats
/ Rats, Sprague-Dawley
/ Science
/ Science (multidisciplinary)
/ Sensors
/ Smartphones
/ Stimulation
/ Stress, Mechanical
/ Thermography
/ Thermography - instrumentation
/ Thermography - methods
/ Wireless Technology - instrumentation
/ X-Ray Microtomography - methods
2021
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Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
Journal Article
Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
2021
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Overview
Bioelectronic interfaces have been extensively investigated in recent years and advances in technology derived from these tools, such as soft and ultrathin sensors, now offer the opportunity to interface with parts of the body that were largely unexplored due to the lack of suitable tools. The musculoskeletal system is an understudied area where these new technologies can result in advanced capabilities. Bones as a sensor and stimulation location offer tremendous advantages for chronic biointerfaces because devices can be permanently bonded and provide stable optical, electromagnetic, and mechanical impedance over the course of years. Here we introduce a new class of wireless battery-free devices, named osseosurface electronics, which feature soft mechanics, ultra-thin form factor and miniaturized multimodal biointerfaces comprised of sensors and optoelectronics directly adhered to the surface of the bone. Potential of this fully implanted device class is demonstrated via real-time recording of bone strain, millikelvin resolution thermography and delivery of optical stimulation in freely-moving small animal models. Battery-free device architecture, direct growth to the bone via surface engineered calcium phosphate ceramic particles, demonstration of operation in deep tissue in large animal models and readout with a smartphone highlight suitable characteristics for exploratory research and utility as a diagnostic and therapeutic platform.
The development of high-performance implantable soft electronics as diagnostic platforms is key to realizing improved health monitoring. Here, the authors design wireless, battery-free, implantable bioelectronics that interface with the osseosurface for chronic musculoskeletal system monitoring.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 147/135
/ 64/86
/ 9/10
/ Animals
/ Bones
/ Electronics - instrumentation
/ Humanities and Social Sciences
/ Male
/ Microscopy, Electron, Scanning
/ Musculoskeletal Physiological Phenomena
/ Musculoskeletal System - anatomy & histology
/ Musculoskeletal System - ultrastructure
/ Rats
/ Science
/ Sensors
/ Thermography - instrumentation
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