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Category:All HeadlinesWorld & GeopoliticsMarkets & EconomyTech & AIPoliticsSearch results for: "Bioelectronic Interfaces" (30 stories)

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A soft bioelectronic system with a responsive hydrogel neural interface for direct force quantification and real-time intraoperative craniocerebral injury monitoring
Lead StoryNaturegeneral
4d ago

A soft bioelectronic system with a responsive hydrogel neural interface for direct force quantification and real-time intraoperative craniocerebral injury monitoring

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5CcTFpRHg3MnM3U1c5bU84VWpsSWZpVG1hb25leC02dnd0NXRubU1saFA5eU1scGF4dE5lMmMyeGdlNWFiOGlRNHV0N1hhUXVsc0RoNjdUVWFZcW1aWVRF?oc=5" target="_blank">A soft bioelectronic system with a responsive hydrogel neural interface for direct force quantification and real-time intraoperative craniocerebral injury monitoring</a>  <font color="#6f6f6f">Nature</font>

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Search Results for "Bioelectronic Interfaces"

Updated every 3 minutes via FreeNewsApi, GNews, Currents API & Google News

29 stories displayed
Dynamic biophysical coupling in bioelectronic interfaces for peripheral nerve modulation
Naturegeneral

Dynamic biophysical coupling in bioelectronic interfaces for peripheral nerve modulation

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1wQkRiVllfXzB3SUlLWjBvaE5YUUx1Y3ZfS25XTFBuUWtfd1FZN2NXbE9jRGctaWJGMWlZSjZTTWxZSGNPckQzNnY4U3Z6d0NJZmxaYmpPZTFJN3Q2bXM0?oc=5" target="_blank">Dynamic biophysical coupling in bioelectronic interfaces for peripheral nerve modulation</a>  <font color="#6f6f6f">Nature</font>

Adhesive nonfibrotic bioelectronic interfaces on diverse peripheral nerves for long-term functional neuromodulation
Science | AAASworld

Adhesive nonfibrotic bioelectronic interfaces on diverse peripheral nerves for long-term functional neuromodulation

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE9IVUhXNmRyZXRTZ2N6OXFtajJuOTdtbmdFNnY0WGNsbzdwUGx3azBLY25iOWRsVUJEU2RtUWIyTGlfVTJDdTg0RnBCMV81d2Q1ekk3SUk2MUVzX1VqRDFR?oc=5" target="_blank">Adhesive nonfibrotic bioelectronic interfaces on diverse peripheral nerves for long-term functional neuromodulation</a>  <font color="#6f6f6f">Science | AAAS</font>

Laser-Etching Induced Differential Internal Stress Design in PEDOT:PSS Hydrogels for Self-Curling Flexible Bioelectronic Interfaces
Wiley & Sonsgeneral

Laser-Etching Induced Differential Internal Stress Design in PEDOT:PSS Hydrogels for Self-Curling Flexible Bioelectronic Interfaces

<a href="https://news.google.com/rss/articles/CBMidkFVX3lxTE44elVPdTczSmxKdzd2Zms5QWFzb19fdDdIV3BwSDFPWWxvcVF2WHhIWEVJRTVPVk1oMG5oMzJkUFBNRXVYeGd0MUJrN3FWMmMxNDUtenFwTTZlSG9YV0JzRGhJUWo4TjNRVVl1RkFVZDVMT0tyWEE?oc=5" target="_blank">Laser-Etching Induced Differential Internal Stress Design in PEDOT:PSS Hydrogels for Self-Curling Flexible Bioelectronic Interfaces</a>  <font color="#6f6f6f">Wiley & Sons</font>

Injectable Outlet in the Body Powers Bioelectric Implants
IEEE Spectrumgeneral

Injectable Outlet in the Body Powers Bioelectric Implants

<a href="https://news.google.com/rss/articles/CBMie0FVX3lxTE43Rjh5NUQ4N291cUVKMmxGODhNODBrVm9rWDBoVnZYSDBndkJ2TGQ5czF0T2c5QmRCVnBBa3NNT0tkLWJjUXpibElFU0FYY2pFTTltOTJBbkVsbThYeHF5SzA0VzQwd0dpdGpPRlF2bmVGQ29VWlEwd0Zzbw?oc=5" target="_blank">Injectable Outlet in the Body Powers Bioelectric Implants</a>  <font color="#6f6f6f">IEEE Spectrum</font>

Ultrathin and ultrastrong hydrogel membranes enable conformal bioelectronics
EurekAlert! Science News Releasesgeneral

Ultrathin and ultrastrong hydrogel membranes enable conformal bioelectronics

<a href="https://news.google.com/rss/articles/CBMiXEFVX3lxTE5HRld6RVNKWkx0YXRzMGZzWVQ3X3hCcWVtbDgzX3U1TllBS1VVbmdQTlMtbk9nZ1JRZkVON290eS1UYjN0TEV2WkszbFVOWEp5UEhhQ1JkalA2OHBx?oc=5" target="_blank">Ultrathin and ultrastrong hydrogel membranes enable conformal bioelectronics</a>  <font color="#6f6f6f">EurekAlert! Science News Releases</font>

New bioelectronic interface enables long-term vagus nerve stimulation for inflammation
News-Medicalgeneral

New bioelectronic interface enables long-term vagus nerve stimulation for inflammation

<a href="https://news.google.com/rss/articles/CBMizwFBVV95cUxPYy00M2lQVVA0MVc1a3g5WDltM3JYRjVGZElqb2x6QTBjcFIyZVhnNWRHd3UwV1NIVmc0Y0pPNTU3UWpvV0RkMm5sUmFWVlJUMFhMQS1wdjgzd3Q0UHplcnNYN0Z4SGhxSE82WTBvSFFlcE43aGtVVnd5VU81eHRObUF6c093d3Yza3NRY2RvSW1ZcEJOcmdkUDBzTHhYdjdGTTZQUUV6RDVQSExpQUM4NFRRNnZGQTBoMWtINGJnSzNzeDJyNDNxOXgtNkJSSEU?oc=5" target="_blank">New bioelectronic interface enables long-term vagus nerve stimulation for inflammation</a>  <font color="#6f6f6f">News-Medical</font>

Self-organized nanoplasmonic artificial leaf for hot-carrier bioelectronic interfaces
Naturegeneral

Self-organized nanoplasmonic artificial leaf for hot-carrier bioelectronic interfaces

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFB0ZUthbXN3cnpmUU11SkJfald2WVh3cmpMaU16RTlGRW5mQ2I5UWlTZVlwVlVfNkhfOWQtM0E5anM5bUgyOG1rN0NIRXh3bGhMZUloWmVfejRFdkhLQkhr?oc=5" target="_blank">Self-organized nanoplasmonic artificial leaf for hot-carrier bioelectronic interfaces</a>  <font color="#6f6f6f">Nature</font>

New bioadhesive strategy can prevent fibrous encapsulation around device implants on peripheral nerves
MIT Newsworld

New bioadhesive strategy can prevent fibrous encapsulation around device implants on peripheral nerves

<a href="https://news.google.com/rss/articles/CBMiwAFBVV95cUxQUFRhQ0ZOUkVaNmVQSkdhNnIxNkQwOHQ2T0xRaW8yTGdzdjBieXpWVWlTeXpEMEFMendCbXM1Yjd1MUl5NDhhaWo0VDZjMlFGS0tVd213NFpjMXVJRUw2S0RCbzdHQXZyRmlUTUl5emMzcm90bzcwdUNoT1ZNUTZpRDE5bGllLXRTeFJUcURnQmRxOHdGY0U2bFItdWxHcE5OaXRCZ1F4cmFMakR0Rmx5a3N5X2lKVHpaZ0ViN1NKcnA?oc=5" target="_blank">New bioadhesive strategy can prevent fibrous encapsulation around device implants on peripheral nerves</a>  <font color="#6f6f6f">MIT News</font>

Ultrapliable bioelectronic interface for mechanosensitive cardiac electrophysiology
Science | AAASgeneral

Ultrapliable bioelectronic interface for mechanosensitive cardiac electrophysiology

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFBwemp0T1h6MEs0Z0dxZ29SblFlLTFwOEdXYzI3T2pVeXJldGhGbUpxWlQ2Y3FTZ0ZMcmRTcTYyS25xdUpEVHFOSEdzd3ZLc1RzZ2NuWXpaVm91WFBsVi1n?oc=5" target="_blank">Ultrapliable bioelectronic interface for mechanosensitive cardiac electrophysiology</a>  <font color="#6f6f6f">Science | AAAS</font>

Tissue-adaptive bioelectronic fibers with temperature-induced self-tightening enable ultrastable neural interface
Naturegeneral

Tissue-adaptive bioelectronic fibers with temperature-induced self-tightening enable ultrastable neural interface

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5peDB6SFEySGJwY3ZIelIxZ0dUSTFuUWtYVmlFQ0ZXTk5pMi1nczdQODZ2MHJtNlJrb3BxRVQ2X3JlekhIOWpfeDU0VEMxcUJSajlpMkh1UXYzR0hsV0RJ?oc=5" target="_blank">Tissue-adaptive bioelectronic fibers with temperature-induced self-tightening enable ultrastable neural interface</a>  <font color="#6f6f6f">Nature</font>

A multifunctional soft bioelectronic interface
Natureworld

A multifunctional soft bioelectronic interface

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFBxX3c1SGFHUnVuMHdLbTAyMjJHNllhS1FFRUZaWnU5S2RSZk85TFhuR2QzWFFzdnlqekEtX21RRkRFZ1A5RGRXTHRYR3lqY3BiXzF3anNqT2lhMmxNNmFN?oc=5" target="_blank">A multifunctional soft bioelectronic interface</a>  <font color="#6f6f6f">Nature</font>

Transforming healthcare through in-body bioelectronic systems
Naturescience

Transforming healthcare through in-body bioelectronic systems

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5sSURPZHBocXlnUjhjMk9fQXhVejhtX0FGZkFpM1N5ZDFoUnFrUXJiVlVYMzh4ZHd4b1ljSko1cHZ1Zjh5ckNOeTZBY2M5TXhJWDV6MnFPYmNuSUd4OUNF?oc=5" target="_blank">Transforming healthcare through in-body bioelectronic systems</a>  <font color="#6f6f6f">Nature</font>

Unidirectional dynamic stiffness modulation enables easily insertable and conformally attachable spinal bioelectronic device | npj Flexible Electronics
Natureworld

Unidirectional dynamic stiffness modulation enables easily insertable and conformally attachable spinal bioelectronic device | npj Flexible Electronics

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1nWm8zQVlqakFlaFR6OVVMMzdLYTFzeF9iVXdIbXQtdG9mZzNPVmNvNkthODhVU2JOZGtnWXVxeHdHSUtFdGhIcEtKVzhtQ25BVDNCUlF3bGpnbGNwQ2xj?oc=5" target="_blank">Unidirectional dynamic stiffness modulation enables easily insertable and conformally attachable spinal bioelectronic device | npj Flexible Electronics</a>  <font color="#6f6f6f">Nature</font>

Conforming strategies for bioelectronics on arbitrary surfaces
Naturegeneral

Conforming strategies for bioelectronics on arbitrary surfaces

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE0td0pGeXFWQkQ2d0FLT01qakxoZVU3YTRmSnU4Tnk5eENBUEtXS3c2UmNuTktzSzJnQVNvTE1wRFpFUVdkckRhYzdJQ2F6ZWJEQlVESXczUW1CUUNJZ09N?oc=5" target="_blank">Conforming strategies for bioelectronics on arbitrary surfaces</a>  <font color="#6f6f6f">Nature</font>

3D micropatterning of PEDOT:PSS/Gelatin conductive hydrogels via two-photon lithography for soft bioelectronics
Naturegeneral

3D micropatterning of PEDOT:PSS/Gelatin conductive hydrogels via two-photon lithography for soft bioelectronics

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFA1STdUY2hOalRqTTg4dG5QYnBPR2VxV0lvVFpFc19PRUhTYzJ4bnNwRjE5cjRpX0FodjlfWXVaTFl3eC1OY29KUTB6eFFJSGxwajVWdkM5UDQ2NTJxekEw?oc=5" target="_blank">3D micropatterning of PEDOT:PSS/Gelatin conductive hydrogels via two-photon lithography for soft bioelectronics</a>  <font color="#6f6f6f">Nature</font>

Bioadhesive and conformable bioelectronic interfaces for vasomotoricity monitoring and regulation
Naturegeneral

Bioadhesive and conformable bioelectronic interfaces for vasomotoricity monitoring and regulation

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE4wMk0xZGFPemFpcnFyVmo3VVZxSFc4a2cxRENyQzhoVlpCUzZzVWhfeFJQNmRuZUlCQ2FZa25DRXdvcUdqQS0zelhlOUNjZ3hkUVM0aTdWZFc2Mm5FUldv?oc=5" target="_blank">Bioadhesive and conformable bioelectronic interfaces for vasomotoricity monitoring and regulation</a>  <font color="#6f6f6f">Nature</font>

Bioelectronic interfaces of organic electrochemical transistors
Naturegeneral

Bioelectronic interfaces of organic electrochemical transistors

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5LbWFhamJORExCOWdfNjhLYWhHZkxtaHl3MTk2Tzl3djdYMFpvQXNTNFZMVElneUV2eExsS0ptZ2ZPWGVUUUxTS2ZWR0VGTjlfZGJsMlBPbExFTnpFWWVF?oc=5" target="_blank">Bioelectronic interfaces of organic electrochemical transistors</a>  <font color="#6f6f6f">Nature</font>

Bioelectronic Interfaces and Sensors for Neural Organoids
Naturegeneral

Bioelectronic Interfaces and Sensors for Neural Organoids

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE94ZEFTSEZlVUV2VFB3MVhqRU9wd1ktaV9vYnpBTXNTcDZzWkxzRG80Mnd4aTdzbWF6ZVhDUWdyWGo1REoyVHRHV20xM21NVHVreGs3ZWtPNm81QWg5MnJV?oc=5" target="_blank">Bioelectronic Interfaces and Sensors for Neural Organoids</a>  <font color="#6f6f6f">Nature</font>

Water-responsive supercontractile polymer films for bioelectronic interfaces
Naturegeneral

Water-responsive supercontractile polymer films for bioelectronic interfaces

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFBTaF9tTDZ4LS1RODZlQkJIenVSRFJUUmpPY0pLY2NmNTVCUVUzM3gyUjhVd21BbHpXTnZPaWZjUGJ4eXpTTFkyaGdqU2FlSHZFaUp3RlN1NFlaUE5pRFlB?oc=5" target="_blank">Water-responsive supercontractile polymer films for bioelectronic interfaces</a>  <font color="#6f6f6f">Nature</font>

MXene-infused bioelectronic interfaces for multiscale electrophysiology and stimulation
Science | AAASgeneral

MXene-infused bioelectronic interfaces for multiscale electrophysiology and stimulation

<a href="https://news.google.com/rss/articles/CBMiZ0FVX3lxTFBfNm5pUUF0YllZNl9ydXljUmJWTXVGcHJ0d3ZUSGRsdFI3SFVtcjFLa3JEeGpQNmdhNEo3MTUxYngyanlmNm4tOThTOEo4ajE2Y0ZOWWMyVmpNRU5zYVlOTjRoY3BZNDA?oc=5" target="_blank">MXene-infused bioelectronic interfaces for multiscale electrophysiology and stimulation</a>  <font color="#6f6f6f">Science | AAAS</font>

Highly conductive polymer with vertical phase separation for enhanced bioelectronic interfaces
Naturegeneral

Highly conductive polymer with vertical phase separation for enhanced bioelectronic interfaces

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5WS1BsSm4ydnAtcjVvQ3BHYVVXbkIzb0xJWmxEV25qNkFHMlhmWGtsMGZmTUlMeHBmUF9WQXplOGpzNkJQUGZvbWxrZFp6SzZLTzZYTzAzakFWWkJEQlJZ?oc=5" target="_blank">Highly conductive polymer with vertical phase separation for enhanced bioelectronic interfaces</a>  <font color="#6f6f6f">Nature</font>

A selective frequency damping and Janus adhesive hydrogel as bioelectronic interfaces for clinical trials
Naturegeneral

A selective frequency damping and Janus adhesive hydrogel as bioelectronic interfaces for clinical trials

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5LRW5ibjJGb1hBYjhGRUZuWUU1WlV6SjRjR25CUl83WTFhU0FxRms4bXJCVWMwczFPMUQzaHg1ZUllOXlINUlLQVRzdEduYlBFbVBpbFRZdUIzZUgzeDBF?oc=5" target="_blank">A selective frequency damping and Janus adhesive hydrogel as bioelectronic interfaces for clinical trials</a>  <font color="#6f6f6f">Nature</font>

3D printable high-performance conducting polymer hydrogel for all-hydrogel bioelectronic interfaces
Naturegeneral

3D printable high-performance conducting polymer hydrogel for all-hydrogel bioelectronic interfaces

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1IZ2ZSeXk2WTdVNTRQbk1GSXEyQWtiQzllUHpBY0VFTzZxc1NHOC1pVnY5eDJ0RFF5VG9fdXdVbTBqUFpyUk9YUE5obFVzQmxvM09CQlpxWUI4MUV1c0Fj?oc=5" target="_blank">3D printable high-performance conducting polymer hydrogel for all-hydrogel bioelectronic interfaces</a>  <font color="#6f6f6f">Nature</font>

Bioelectronic Neural Interfaces: Improving Neuromodulation Through Organic Conductive Coatings
Wiley & Sonsgeneral

Bioelectronic Neural Interfaces: Improving Neuromodulation Through Organic Conductive Coatings

<a href="https://news.google.com/rss/articles/CBMifEFVX3lxTE5wWks0TEtsVGxvREFieHktVlU3MFN4Z0FNRFU3a3Y0clNQeG1ocURweEtXUUpnQjJVWGE0cGl6bktQQUJqRVQzSHVub0dBSW82czI0OG0xN0FwcEJlZXc0MnlCY3lsUl9ORDdsUDQ1UjltQkNjSjJoVUREMXY?oc=5" target="_blank">Bioelectronic Neural Interfaces: Improving Neuromodulation Through Organic Conductive Coatings</a>  <font color="#6f6f6f">Wiley & Sons</font>

Graphene-modified hydrogels for bioelectronic interface
ScienceDirect.comgeneral

Graphene-modified hydrogels for bioelectronic interface

<a href="https://news.google.com/rss/articles/CBMidkFVX3lxTE1TcXRfNThjdVNSUExRUzZNR2tIX0FPZEVFVHZFNjVNbFVyaVkzTVY1VTNpa3FvRlhNNW5WaU9xdHJMZHEtZENvRnBBN2F0cV9IMjI0V2lqZUg4VDBrZ0VLa213ZkVtMUFWOFNzZUZQa0ZwZXdMNVE?oc=5" target="_blank">Graphene-modified hydrogels for bioelectronic interface</a>  <font color="#6f6f6f">ScienceDirect.com</font>

Bakerian Prize Lecture: Bioelectronics – technology interfaces with the human body
Royal Societytech

Bakerian Prize Lecture: Bioelectronics – technology interfaces with the human body

<a href="https://news.google.com/rss/articles/CBMijAFBVV95cUxOYnE1NU9xUy1XM0VpV045a0ZiVDVtOGNoc2I5N0FKbEdGSTN3YU5uczdZb1VGQV9Ba1lqbFNTNWNrYzJ4T1BvY2xDQXVrUHI1SjAxc25veWZyaFdMdGlMT2JlNHpTTU5jYUJKbXRZQk1XU3UxV0JQUXdEQ3lCd2hoS2RxVnRhMUZkOHZrRA?oc=5" target="_blank">Bakerian Prize Lecture: Bioelectronics – technology interfaces with the human body</a>  <font color="#6f6f6f">Royal Society</font>

Micelle-enabled self-assembly of porous and monolithic carbon membranes for bioelectronic interfaces
Naturegeneral

Micelle-enabled self-assembly of porous and monolithic carbon membranes for bioelectronic interfaces

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1RdnFRaFBDTk84OWJka3ludnZGOWdFd1R3aVNicmI4LWJJQ3cwb29ZVmpOQzZXVEw5LU4wSUc3VWpFWWNiUEFtYlF5cnFtdXNjOW1qZEpObkhSZHBOZ3N3?oc=5" target="_blank">Micelle-enabled self-assembly of porous and monolithic carbon membranes for bioelectronic interfaces</a>  <font color="#6f6f6f">Nature</font>

Materials for flexible bioelectronic systems as chronic neural interfaces
Naturegeneral

Materials for flexible bioelectronic systems as chronic neural interfaces

<a href="https://news.google.com/rss/articles/CBMiXkFVX3lxTE8wbHJFUlRVMHo1RFFLay1wRGQzbmtlTDB4NHE0ZDYwZmVORHlqY045cWpiOHJZa29wVnc1WFl1VUt5ZnZqRXk3V2pJejZuNllqOUFjRWFYWElHMi1UdHc?oc=5" target="_blank">Materials for flexible bioelectronic systems as chronic neural interfaces</a>  <font color="#6f6f6f">Nature</font>

Lithium Bond-Mediated Molecular Cascade Hydrogel for Injury-Free and Repositionable Adhesive Bioelectronic Interfaces
Wiley & Sonsgeneral

Lithium Bond-Mediated Molecular Cascade Hydrogel for Injury-Free and Repositionable Adhesive Bioelectronic Interfaces

<a href="https://news.google.com/rss/articles/CBMidkFVX3lxTE1UYUIxbjY3OWlRWHRZdzRPcThHal9qWXNsVG92MWx6Z0ctanBjTFhLd2RmTGQwOGRleTNBMUR5ckxWZGxLRndPbU5wYlVZdTEtTTlfekFqbmFkV2szdURnMGdvVGRsRGxKVUFDRzl0clg0Tmg2a1E?oc=5" target="_blank">Lithium Bond-Mediated Molecular Cascade Hydrogel for Injury-Free and Repositionable Adhesive Bioelectronic Interfaces</a>  <font color="#6f6f6f">Wiley & Sons</font>

"Bioelectronic Interfaces" — Live Google News Trends & Headlines