Med-X (@medxjournal) 's Twitter Profile
Med-X

@medxjournal

A journal published by Springer Nature.

ID: 1743088892210024448

calendar_today05-01-2024 01:56:03

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New epidermal sensing platform uses single-atom materials for ultra-sensitive uric acid detection! This wearable UA patch outshines traditional sensors. Check out Prof. Joseph Wang's research at UCSD! rdcu.be/dWsLj

New epidermal sensing platform uses single-atom materials for ultra-sensitive uric acid detection! This wearable UA patch outshines traditional sensors. Check out Prof. Joseph Wang's research at UCSD!

rdcu.be/dWsLj
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Unveiling the complexity of GPCR heteromers! Advances in using live cell imaging and biochemical techniques to understand GPCR heteromers. Review article from Prof. Jihye Seong at Seoul National University College of Medicine. #GPCR #LiveCelllmaging rdcu.be/dZY7N

Unveiling the complexity of GPCR heteromers!  Advances in using live cell imaging and biochemical techniques to understand GPCR heteromers. Review article from Prof. Jihye Seong at Seoul National University College of Medicine. #GPCR #LiveCelllmaging 

rdcu.be/dZY7N
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New insights into how RhoGDI regulates RhoA activity to control cell structure! FRET imaging confirms their interaction sites, highlighting the role of cell signaling in cytoskeleton dynamics. Research article from Prof. Ouyang at Changzhou University. rdcu.be/d0a3S

New insights into how RhoGDI regulates RhoA activity to control cell structure! FRET imaging confirms their interaction sites, highlighting the role of cell signaling in cytoskeleton dynamics. Research article from Prof. Ouyang at Changzhou University. 

rdcu.be/d0a3S
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Latest advances of electrospun silk for health monitoring, regeneration medicine, and personal protection. Review article from Prof. Yingying Zhang at Tsinghua University. rdcu.be/d0XLj

Latest advances of electrospun silk for health monitoring, regeneration medicine, and personal protection. Review article from Prof. Yingying Zhang at Tsinghua University.

rdcu.be/d0XLj
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Latest advancements in wireless biosensor technologies for real-time health monitoring! Explore cutting-edge diagnostics and therapeutic strategies. Review article from Prof. Yuanwen Jiang's group at the University of Pennsylvania. rdcu.be/d3F58C

Latest advancements in wireless biosensor technologies for real-time health monitoring! Explore cutting-edge diagnostics and therapeutic strategies. Review article from Prof. Yuanwen Jiang's group at the University of Pennsylvania. 

rdcu.be/d3F58C
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Latest advancements in wireless biosensor technologies for real-time health monitoring! Explore cutting-edge diagnostics and therapeutic strategies. Review article from Prof. Yuanwen Jiang's group at the University of Pennsylvania. rdcu.be/d4ekz

Latest advancements in wireless biosensor technologies for real-time health monitoring! Explore cutting-edge diagnostics and therapeutic strategies. Review article from Prof. Yuanwen Jiang's group at the University of Pennsylvania. 

rdcu.be/d4ekz
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Integrating AI into biomedical signal analysis revolutionizes disease diagnostics by enhancing precision and efficiency, making high-level healthcare insights more accessible and improving health outcomes globally. #AI #Healthcare #BiomedicalAnalysis rdcu.be/d4ehY

Integrating AI into biomedical signal analysis revolutionizes disease diagnostics by enhancing precision and efficiency, making high-level healthcare insights more accessible and improving health outcomes globally. #AI #Healthcare #BiomedicalAnalysis

rdcu.be/d4ehY
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The integration of hydrogels in wearable neural interfaces enhances biocompatibility and functionality, promising to revolutionize medical treatments and technology through improved neural recording and neurostimulation. #WearableTech #Neuroscience rdcu.be/d4elm

The integration of hydrogels in wearable neural interfaces enhances biocompatibility and functionality, promising to revolutionize medical treatments and technology through improved neural recording and neurostimulation. #WearableTech #Neuroscience 

rdcu.be/d4elm
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"An optical flow battery enabled by trap-engineered nanophosphors" shows promise for energy storage. Check it out from prof Guosong Hong's article at Stanford! #OpticalFlowBattery #EnergyStorage rdcu.be/d4ejZ

"An optical flow battery enabled by trap-engineered nanophosphors" shows promise for energy storage. Check it out from prof Guosong Hong's article at Stanford! #OpticalFlowBattery #EnergyStorage

rdcu.be/d4ejZ
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"Isolation of Circulating Tumor Cells: Recent Progress and Future Perspectives" explores the latest advancements in isolating and enriching CTCs for cancer diagnosis, prognosis, and treatment monitoring. Review article from Prof. Weiliang Xia at SJTU. rdcu.be/d4Wbb

"Isolation of Circulating Tumor Cells: Recent Progress and Future Perspectives" explores the latest advancements in isolating and enriching CTCs for cancer diagnosis, prognosis, and treatment monitoring. Review article from Prof. Weiliang Xia at SJTU.

rdcu.be/d4Wbb
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We’ve developed a FRET biosensor for real-time tracking of H3K9 acetylation in living cells, uncovering key differences in chromatin between invasive and benign tumor cells. Research article from Prof. Yingxiao Wang at USC. #CancerResearch #Epigenetics rdcu.be/d5hDX

We’ve developed a FRET biosensor for real-time tracking of H3K9 acetylation in living cells, uncovering key differences in chromatin between invasive and benign tumor cells. Research article from Prof. Yingxiao Wang at USC. #CancerResearch #Epigenetics 

rdcu.be/d5hDX
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Exploring #NeuroAI: By introducing neuronal diversity into #ArtificialNeuralNetworks, unlock new AI capabilities, from efficiency to interpretability. Perspective from Prof. Hanchuan Peng at Southeast University.

Exploring #NeuroAI: By introducing neuronal diversity into #ArtificialNeuralNetworks, unlock new AI capabilities, from efficiency to interpretability.  Perspective from Prof. Hanchuan Peng at Southeast University.
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Revolutionize healthcare with wearable energy tech! Discover how material science advances enable flexible, self - sustaining energy devices. Learn about solar, biofuel cells & more in wearables. Review from Prof. Jiayu Wan at SJTU. rdcu.be/d6jgZ

Revolutionize healthcare with wearable energy tech! Discover how material science advances enable flexible, self - sustaining energy devices. Learn about solar, biofuel cells & more in wearables. Review from Prof. Jiayu Wan at SJTU.

rdcu.be/d6jgZ
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Flexible, stretchable bioelectronics are transforming organoid research, enabling stable interfaces and tracking cell activities for personalized medicine and new computational strategies. Review article from Prof. Jia Liu at Harvard. #Bioelectronics rdcu.be/d8VG7

Flexible, stretchable bioelectronics are transforming organoid research, enabling stable interfaces and tracking cell activities for personalized medicine and new computational strategies. Review article from Prof. Jia Liu at Harvard. #Bioelectronics 

rdcu.be/d8VG7
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Explore how #RamanScattering & #SRS reveal metabolic dynamics in aging & disease. Cutting-edge applications in life science & medicine. Review by Prof. Lingyan Shi, UCSD. rdcu.be/ea00k

Explore how #RamanScattering & #SRS reveal metabolic dynamics in aging & disease. Cutting-edge applications in life science & medicine. Review by Prof. Lingyan Shi, UCSD.

rdcu.be/ea00k
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Smart textiles revolutionize personal thermal management! From radiative cooling to heating, these innovations enhance comfort and energy efficiency. Review article from Prof. Xinge Yu at City U of Hong Kong. [rdcu.be/ecmQu]

Smart textiles revolutionize personal thermal management! From radiative cooling to heating, these innovations enhance comfort and energy efficiency. Review article from Prof. Xinge Yu at City U of Hong Kong. [rdcu.be/ecmQu]
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Electrical stimulation boosts tendon repair! This review explores piezoelectric, conductive, and triboelectric materials in restoring the native microenvironment. Review from Prof. Xiumei Mo at Donghua University. Read more: rdcu.be/ecmL1

Electrical stimulation boosts tendon repair! This review explores piezoelectric, conductive, and triboelectric materials in restoring the native microenvironment. Review from Prof. Xiumei Mo at  Donghua University. Read more: rdcu.be/ecmL1
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Next-gen soft electronics? Meet a liquid metal system actuated by low-voltage DC pulses — robust enough to run 9+ hours, smart enough to carry cargo. Research article from Prof. Yong Lin Kong at Rice Univ.. rdcu.be/egNgI

Next-gen soft electronics? Meet a liquid metal system actuated by low-voltage DC pulses — robust enough to run 9+ hours, smart enough to carry cargo.
Research article from Prof. Yong Lin Kong at Rice Univ..
rdcu.be/egNgI
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New review highlights advances in soft bioelectronics for real-time bladder monitoring & on-demand drug delivery—paving the way for smart, minimally invasive treatment. Review article from Prof. Xiaoguang Dong at Vanderbilt University, US. #DrugDelivery

New review highlights advances in soft bioelectronics for real-time bladder monitoring & on-demand drug delivery—paving the way for smart, minimally invasive treatment.  Review article from Prof. Xiaoguang Dong at Vanderbilt University, US.  #DrugDelivery
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SCLN is a two-phase network for IMC cell segmentation that preserves channel-specific features, achieving 91.45% Dice on METABRIC—~10% better than existing methods. Research article from Prof. Lei Bi at SJTU and Prof. Jinman Kim USYD. rdcu.be/epdts

SCLN is a two-phase network for IMC cell segmentation that preserves channel-specific features, achieving 91.45% Dice on METABRIC—~10% better than existing methods. Research article from Prof. Lei Bi at SJTU and Prof. Jinman Kim USYD. 
rdcu.be/epdts