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#biomedicalengineering — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #biomedicalengineering, aggregated by home.social.

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  1. Obsessive-compulsive disorder is a complex, heterogeneous neurobiological condition driven by structural, genetic, and neurochemical dysregulation, defined by the presence of intrusive, ego-dystonic obsessions and repetitive, time-consuming compulsions.
    #WhatIs #PsychiatricNeuroscience #Neurobiology #MolecularGenetics #Immunology #BiomedicalEngineering #OCD #sflorg
    sflorg.com/2026/08/wi08102601.

  2. Obsessive-compulsive disorder is a complex, heterogeneous neurobiological condition driven by structural, genetic, and neurochemical dysregulation, defined by the presence of intrusive, ego-dystonic obsessions and repetitive, time-consuming compulsions.
    #WhatIs #PsychiatricNeuroscience #Neurobiology #MolecularGenetics #Immunology #BiomedicalEngineering #OCD #sflorg
    sflorg.com/2026/08/wi08102601.

  3. Obsessive-compulsive disorder is a complex, heterogeneous neurobiological condition driven by structural, genetic, and neurochemical dysregulation, defined by the presence of intrusive, ego-dystonic obsessions and repetitive, time-consuming compulsions.
    #WhatIs #PsychiatricNeuroscience #Neurobiology #MolecularGenetics #Immunology #BiomedicalEngineering #OCD #sflorg
    sflorg.com/2026/08/wi08102601.

  4. Obsessive-compulsive disorder is a complex, heterogeneous neurobiological condition driven by structural, genetic, and neurochemical dysregulation, defined by the presence of intrusive, ego-dystonic obsessions and repetitive, time-consuming compulsions.
    #WhatIs #PsychiatricNeuroscience #Neurobiology #MolecularGenetics #Immunology #BiomedicalEngineering #OCD #sflorg
    sflorg.com/2026/08/wi08102601.

  5. Obsessive-compulsive disorder is a complex, heterogeneous neurobiological condition driven by structural, genetic, and neurochemical dysregulation, defined by the presence of intrusive, ego-dystonic obsessions and repetitive, time-consuming compulsions.
    #WhatIs #PsychiatricNeuroscience #Neurobiology #MolecularGenetics #Immunology #BiomedicalEngineering #OCD #sflorg
    sflorg.com/2026/08/wi08102601.

  6. European Union innovation needs regulatory science excellence centres

    Authors and Affiliations Else Kröner Fresenius Center for Digital Health, Faculty of Medicine and University Hospital Carl Gustav…
    #Europe #EU #EuropeanCommission #BiomedicalEngineering/Biotechnology #Biomedicine #general #HealthPolicy #institutions
    europesays.com/europe/104887/

  7. AI-powered closed-loop wearable bioelectronics for personalized and autonomous healthcare

    Chen, C., Ding, S. & Wang, J. Digital health for aging populations. Nat. Med. 29, 1623–1630 (2023). Article …
    #NewsBeep #News #Healthcare #AU #Australia #Biomedicalengineering #BiomedicalEngineering/Biotechnology #Biotechnology #Electricalandelectronicengineering #Health #Nanotechnology #OpticalandElectronicMaterials
    newsbeep.com/au/814988/

  8. Air-permeable hydrogels through viscoelastic phase separation of aerogels

    Sample preparation of VPS hydrogels A typical sample preparation process involves two key stages: (1) preparing a stable…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Science #Biomedicalengineering #Gelsandhydrogels #HumanitiesandSocialSciences #multidisciplinary
    newsbeep.com/us/751858/

  9. An aerated hydrogel is a soft, highly hydrated, and bio-friendly polymeric material engineered with interconnected microscopic tunnels that freely permit airflow.
    #MaterialsScience #MechanicalEngineering #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07082602.

  10. An aerated hydrogel is a soft, highly hydrated, and bio-friendly polymeric material engineered with interconnected microscopic tunnels that freely permit airflow.
    #MaterialsScience #MechanicalEngineering #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07082602.

  11. An aerated hydrogel is a soft, highly hydrated, and bio-friendly polymeric material engineered with interconnected microscopic tunnels that freely permit airflow.
    #MaterialsScience #MechanicalEngineering #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07082602.

  12. An aerated hydrogel is a soft, highly hydrated, and bio-friendly polymeric material engineered with interconnected microscopic tunnels that freely permit airflow.
    #MaterialsScience #MechanicalEngineering #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07082602.

  13. An aerated hydrogel is a soft, highly hydrated, and bio-friendly polymeric material engineered with interconnected microscopic tunnels that freely permit airflow.
    #MaterialsScience #MechanicalEngineering #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07082602.

  14. Identifying and reprogramming softness-driven cancer stem-like cells overcomes CAR-T cell resistance in solid tumours

    Liu, Q., Luo, Q., Ju, Y. & Song, G. Role of the mechanical microenvironment in cancer development and…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Science #BiomedicalEngineering/Biotechnology #Biomedicine #cancerimmunotherapy #Cancerstemcells #general
    newsbeep.com/us/748337/

  15. Identifying and reprogramming softness-driven cancer stem-like cells overcomes CAR-T cell resistance in solid tumours

    Liu, Q., Luo, Q., Ju, Y. & Song, G. Role of the mechanical microenvironment in cancer development and…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Science #BiomedicalEngineering/Biotechnology #Biomedicine #cancerimmunotherapy #Cancerstemcells #general
    newsbeep.com/us/748337/

  16. An electrocapillary-enhanced magnetohydrodynamic pump (EMP) is a fluidic system utilizing a liquid metal droplet charged with a low electrical voltage to generate and amplify power and fluid flow in soft robotic systems.
    #SoftRobotics #FluidDynamics #MaterialScience #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07062602.

  17. An electrocapillary-enhanced magnetohydrodynamic pump (EMP) is a fluidic system utilizing a liquid metal droplet charged with a low electrical voltage to generate and amplify power and fluid flow in soft robotic systems.
    #SoftRobotics #FluidDynamics #MaterialScience #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07062602.

  18. An electrocapillary-enhanced magnetohydrodynamic pump (EMP) is a fluidic system utilizing a liquid metal droplet charged with a low electrical voltage to generate and amplify power and fluid flow in soft robotic systems.
    #SoftRobotics #FluidDynamics #MaterialScience #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07062602.

  19. An electrocapillary-enhanced magnetohydrodynamic pump (EMP) is a fluidic system utilizing a liquid metal droplet charged with a low electrical voltage to generate and amplify power and fluid flow in soft robotic systems.
    #SoftRobotics #FluidDynamics #MaterialScience #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07062602.

  20. An electrocapillary-enhanced magnetohydrodynamic pump (EMP) is a fluidic system utilizing a liquid metal droplet charged with a low electrical voltage to generate and amplify power and fluid flow in soft robotic systems.
    #SoftRobotics #FluidDynamics #MaterialScience #BiomedicalEngineering #sflorg
    sflorg.com/2026/07/ms07062602.

  21. Derivation of functional retinal endothelial cells from human pluripotent stem cells for therapeutics and modelling

    Derivation of retinal endothelial cells from human induced pluripotent stem cells via the Norrin–Fz4 axis To obtain RECs…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Health #Biologicalmodels #BiomedicalEngineering/Biotechnology #Biomedicine #general #Stem-celldifferentiation
    newsbeep.com/us/736792/

  22. Derivation of functional retinal endothelial cells from human pluripotent stem cells for therapeutics and modelling

    Derivation of retinal endothelial cells from human induced pluripotent stem cells via the Norrin–Fz4 axis To obtain RECs…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Health #Biologicalmodels #BiomedicalEngineering/Biotechnology #Biomedicine #general #Stem-celldifferentiation
    newsbeep.com/us/736792/

  23. CellTrap is an instrument-free, microfluidic lab-on-a-chip system designed to isolate and observe interactions between individual immune cells and cancer cells at the single-cell level.
    #Immunology #Oncology #Microfluidics #BiomedicalEngineering #Biophysics #sflorg
    sflorg.com/2026/06/imgy0618260

  24. CellTrap is an instrument-free, microfluidic lab-on-a-chip system designed to isolate and observe interactions between individual immune cells and cancer cells at the single-cell level.
    #Immunology #Oncology #Microfluidics #BiomedicalEngineering #Biophysics #sflorg
    sflorg.com/2026/06/imgy0618260

  25. CellTrap is an instrument-free, microfluidic lab-on-a-chip system designed to isolate and observe interactions between individual immune cells and cancer cells at the single-cell level.
    #Immunology #Oncology #Microfluidics #BiomedicalEngineering #Biophysics #sflorg
    sflorg.com/2026/06/imgy0618260

  26. CellTrap is an instrument-free, microfluidic lab-on-a-chip system designed to isolate and observe interactions between individual immune cells and cancer cells at the single-cell level.
    #Immunology #Oncology #Microfluidics #BiomedicalEngineering #Biophysics #sflorg
    sflorg.com/2026/06/imgy0618260

  27. CellTrap is an instrument-free, microfluidic lab-on-a-chip system designed to isolate and observe interactions between individual immune cells and cancer cells at the single-cell level.
    #Immunology #Oncology #Microfluidics #BiomedicalEngineering #Biophysics #sflorg
    sflorg.com/2026/06/imgy0618260

  28. Biomedical engineering is the application of engineering principles and design concepts to medicine and biology for healthcare purposes. The primary goal of this field is to close the gap between engineering and medicine, combining the rigorous problem-solving and quantitative skills of the physical sciences with the nuanced understanding of biological systems.
    #BiomedicalEngineering #sflorg
    sflorg.com/2026/06/cat06162601

  29. Biomedical engineering is the application of engineering principles and design concepts to medicine and biology for healthcare purposes. The primary goal of this field is to close the gap between engineering and medicine, combining the rigorous problem-solving and quantitative skills of the physical sciences with the nuanced understanding of biological systems.
    #BiomedicalEngineering #sflorg
    sflorg.com/2026/06/cat06162601

  30. Biomedical engineering is the application of engineering principles and design concepts to medicine and biology for healthcare purposes. The primary goal of this field is to close the gap between engineering and medicine, combining the rigorous problem-solving and quantitative skills of the physical sciences with the nuanced understanding of biological systems.
    #BiomedicalEngineering #sflorg
    sflorg.com/2026/06/cat06162601

  31. Biomedical engineering is the application of engineering principles and design concepts to medicine and biology for healthcare purposes. The primary goal of this field is to close the gap between engineering and medicine, combining the rigorous problem-solving and quantitative skills of the physical sciences with the nuanced understanding of biological systems.
    #BiomedicalEngineering #sflorg
    sflorg.com/2026/06/cat06162601

  32. Researchers have developed a novel, stain-free imaging platform that utilizes engineered silicon slides to analyze tissue samples directly. This technology generates high-resolution structural color images without the need for traditional chemical dyes, expediting the diagnostic process.
    #MaterialsScience #BiomedicalEngineering #Pathology #Oncology #ArtificialIntelligence #sflorg
    sflorg.com/2026/06/ms06152602.

  33. Researchers have developed a novel, stain-free imaging platform that utilizes engineered silicon slides to analyze tissue samples directly. This technology generates high-resolution structural color images without the need for traditional chemical dyes, expediting the diagnostic process.
    #MaterialsScience #BiomedicalEngineering #Pathology #Oncology #ArtificialIntelligence #sflorg
    sflorg.com/2026/06/ms06152602.

  34. Researchers have developed a novel, stain-free imaging platform that utilizes engineered silicon slides to analyze tissue samples directly. This technology generates high-resolution structural color images without the need for traditional chemical dyes, expediting the diagnostic process.
    #MaterialsScience #BiomedicalEngineering #Pathology #Oncology #ArtificialIntelligence #sflorg
    sflorg.com/2026/06/ms06152602.

  35. Researchers have developed a novel, stain-free imaging platform that utilizes engineered silicon slides to analyze tissue samples directly. This technology generates high-resolution structural color images without the need for traditional chemical dyes, expediting the diagnostic process.
    #MaterialsScience #BiomedicalEngineering #Pathology #Oncology #ArtificialIntelligence #sflorg
    sflorg.com/2026/06/ms06152602.

  36. A novel bioelectronic platform utilizes the conducting polymer PEDOT:PSS to dynamically modulate material stiffness through the application of electrical voltage. This allows researchers to subject cells to varying mechanical environments in real time.
    #Mechanobiology #BiomedicalEngineering #MaterialsScience #sflorg
    sflorg.com/2026/06/bio06142601