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#biomedicalengineering — Public Fediverse posts

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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. 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.

  4. 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.

  5. 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.

  6. 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.

  7. 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

  8. 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

  9. 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

  10. 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

  11. 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.

  12. 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.

  13. 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

  14. 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

  15. Cardiac optogenetics is an advanced technique combining genetic engineering and light to noninvasively induce and study arrhythmias. Researchers utilize this method to observe how irregular heartbeats disrupt hemodynamics and alter oxygen concentration in the brain.
    #BiomedicalEngineering #Cardiology #Genetics #Neuroscience #sflorg
    sflorg.com/2026/06/eng06042601

  16. Cardiac optogenetics is an advanced technique combining genetic engineering and light to noninvasively induce and study arrhythmias. Researchers utilize this method to observe how irregular heartbeats disrupt hemodynamics and alter oxygen concentration in the brain.
    #BiomedicalEngineering #Cardiology #Genetics #Neuroscience #sflorg
    sflorg.com/2026/06/eng06042601

  17. ⚛️ What if randomness inside cells isn’t noise — but biology’s hidden operating system?

    🔗 Hybrid Physics-Informed and Bayesian Modeling of Single-Nanoparticle–Cell Adhesion Kinetics under Cytoskeletal Perturbation. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0077

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Nanomedicine #PhysicsInformedAI #BayesianModeling #Biophysics #CellBiology #ComputationalBiology #BiomedicalEngineering #AI

  18. ⚛️ What if randomness inside cells isn’t noise — but biology’s hidden operating system?

    🔗 Hybrid Physics-Informed and Bayesian Modeling of Single-Nanoparticle–Cell Adhesion Kinetics under Cytoskeletal Perturbation. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0077

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Nanomedicine #PhysicsInformedAI #BayesianModeling #Biophysics #CellBiology #ComputationalBiology #BiomedicalEngineering #AI

  19. Transcutaneous spinal cord stimulation (tSCS) utilizes non-invasive electrical waveforms to help patients recover motor function following a spinal cord injury. Recent research evaluates whether newer, kilohertz-frequency waveforms are as effective as conventional, longer-duration waveforms at targeting the neural structures necessary for true rehabilitation.
    #BiomedicalEngineering #Neuroscience #Neurophysiology #Rehabilitation #Medicine #sflorg
    sflorg.com/2026/05/bmed0512260

  20. Transcutaneous spinal cord stimulation (tSCS) utilizes non-invasive electrical waveforms to help patients recover motor function following a spinal cord injury. Recent research evaluates whether newer, kilohertz-frequency waveforms are as effective as conventional, longer-duration waveforms at targeting the neural structures necessary for true rehabilitation.
    #BiomedicalEngineering #Neuroscience #Neurophysiology #Rehabilitation #Medicine #sflorg
    sflorg.com/2026/05/bmed0512260

  21. A novel, non-invasive liquid biopsy technique that utilizes electronic microchips to capture and analyze tumor-shed nanoparticles from the blood to detect early-stage pancreatic cancer.
    #Oncology #BiomedicalEngineering #Nanomedicine #Cancer #sflorg
    sflorg.com/2026/05/ongy0503260

  22. A novel, non-invasive liquid biopsy technique that utilizes electronic microchips to capture and analyze tumor-shed nanoparticles from the blood to detect early-stage pancreatic cancer.
    #Oncology #BiomedicalEngineering #Nanomedicine #Cancer #sflorg
    sflorg.com/2026/05/ongy0503260

  23. #PhysicsPhDDay

    Congratulations to Dauwe Bulckaen, PhD student in #BiomedicalEngineering (UGent – @UniversitedeLiege), recipient of the Best Poster Prize:
    Aerosol dynamics and droplet–tissue interactions during intraperitoneal drug delivery.

    A recognition of clear scientific communication and impactful poster.

    #ScientificPoster #PhDResearch #Award #DrugDelivery

  24. 🫧 Is there a point where hydration stops helping, and starts harming tissue integrity?

    🔗 How Hydration Weakens Collagen: A Mesoscale Energy Decomposition of Type I and Type II Fibrils. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0050

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Collagen #Biomaterials #TissueEngineering #Cartilage #Biomechanics #BiomedicalEngineering #MolecularBiology #Biophysics #RegenerativeMedicine #Bioengineering

  25. 🫧 Is there a point where hydration stops helping, and starts harming tissue integrity?

    🔗 How Hydration Weakens Collagen: A Mesoscale Energy Decomposition of Type I and Type II Fibrils. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0050

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #Collagen #Biomaterials #TissueEngineering #Cartilage #Biomechanics #BiomedicalEngineering #MolecularBiology #Biophysics #RegenerativeMedicine #Bioengineering

  26. Researchers optimized ultra-wideband wireless signal transmission for swallowable medical devices by individually adjusting frequency components, enabling multiple implants to coordinate and transmit clearer signals through the human body.
    #BiomedicalEngineering #Informatics #sflorg
    sflorg.com/2026/04/bmed0421260

  27. Researchers optimized ultra-wideband wireless signal transmission for swallowable medical devices by individually adjusting frequency components, enabling multiple implants to coordinate and transmit clearer signals through the human body.
    #BiomedicalEngineering #Informatics #sflorg
    sflorg.com/2026/04/bmed0421260

  28. A bidirectional brain-computer interface (BDBCI) that enables individuals to control a robotic walking exoskeleton using brain signals while simultaneously receiving artificial leg sensation through direct electrical stimulation of the sensory cortex.
    #BiomedicalEngineering #Neurology #Neuroscience #ElectricalEngineering #ComputerScience #sflorg
    sflorg.com/2026/04/bmed0416260

  29. A bidirectional brain-computer interface (BDBCI) that enables individuals to control a robotic walking exoskeleton using brain signals while simultaneously receiving artificial leg sensation through direct electrical stimulation of the sensory cortex.
    #BiomedicalEngineering #Neurology #Neuroscience #ElectricalEngineering #ComputerScience #sflorg
    sflorg.com/2026/04/bmed0416260

  30. Base editing, a highly precise gene-editing technology, has successfully corrected the PEX1 genetic mutation responsible for Zellweger spectrum disorder in a mouse model, significantly restoring liver and peroxisome function.
    #MolecularGenetics #BiomedicalEngineering #GeneTherapy #Genetics #sflorg
    sflorg.com/2026/04/gen04142601

  31. Base editing, a highly precise gene-editing technology, has successfully corrected the PEX1 genetic mutation responsible for Zellweger spectrum disorder in a mouse model, significantly restoring liver and peroxisome function.
    #MolecularGenetics #BiomedicalEngineering #GeneTherapy #Genetics #sflorg
    sflorg.com/2026/04/gen04142601

  32. Cells utilize actively directed, targeted streams of fluid—comparable to internal "trade winds" or atmospheric rivers—to rapidly transport essential soluble proteins to their leading edge to facilitate movement, adhesion, and repair.
    #CellBiology #Biophysics #BiomedicalEngineering #Oncology #sflorg
    sflorg.com/2026/03/cbio0330260

  33. Cells utilize actively directed, targeted streams of fluid—comparable to internal "trade winds" or atmospheric rivers—to rapidly transport essential soluble proteins to their leading edge to facilitate movement, adhesion, and repair.
    #CellBiology #Biophysics #BiomedicalEngineering #Oncology #sflorg
    sflorg.com/2026/03/cbio0330260

  34. Biomolecular condensates are concentrated molecular communities of DNA, RNA, and proteins within cells that can actively drive and regulate the cellular metabolic cycle. Recent findings demonstrate that these condensates can facilitate the formation of crucial carbon-nitrogen bonds to create new molecules, a critical first step in protein formation.
    #CellularBiochemistry #BiomedicalEngineering #MolecularCellBiology #ChemicalBiology #sflorg
    sflorg.com/2026/03/bchm0325260

  35. Biomolecular condensates are concentrated molecular communities of DNA, RNA, and proteins within cells that can actively drive and regulate the cellular metabolic cycle. Recent findings demonstrate that these condensates can facilitate the formation of crucial carbon-nitrogen bonds to create new molecules, a critical first step in protein formation.
    #CellularBiochemistry #BiomedicalEngineering #MolecularCellBiology #ChemicalBiology #sflorg
    sflorg.com/2026/03/bchm0325260

  36. The soft fiber actuator is an ultrafine, electrically driven "soft yarn" made from flexible polymer capable of bending, contracting, and producing complex three-dimensional movements upon the application of an electrical voltage.
    #MaterialScience #SoftRobotics #BiomedicalEngineering #sflorg
    sflorg.com/2026/03/ms03102601.

  37. The soft fiber actuator is an ultrafine, electrically driven "soft yarn" made from flexible polymer capable of bending, contracting, and producing complex three-dimensional movements upon the application of an electrical voltage.
    #MaterialScience #SoftRobotics #BiomedicalEngineering #sflorg
    sflorg.com/2026/03/ms03102601.

  38. Sharing big data for sustainable agri-food innovation

    Esmaeily, R., Razavi, M. A. & Razavi, S. H. Trends Food Sci. Technol. 143, 104286 (2024). Article  CAS  Google Scholar  Akintuyi, O. B. Res. J. Multidiscip. Stud. 7, 0…
    #dining #cooking #diet #food #Food #agriculture #Bioinformatics #BiomedicalEngineering/Biotechnology #Biomedicine #biotechnology #general #LifeSciences #Plantsciences #Researchdata
    diningandcooking.com/2538231/s

  39. Sharing big data for sustainable agri-food innovation

    Esmaeily, R., Razavi, M. A. & Razavi, S. H. Trends Food Sci. Technol. 143, 104286 (2024). Article  CAS  Google Scholar  Akintuyi, O. B. Res. J. Multidiscip. Stud. 7, 0…
    #dining #cooking #diet #food #Food #agriculture #Bioinformatics #BiomedicalEngineering/Biotechnology #Biomedicine #biotechnology #general #LifeSciences #Plantsciences #Researchdata
    diningandcooking.com/2538231/s

  40. Researchers have determined that the severity of sickle cell disease (#SCD ) symptoms is driven by the specific physical behavior of a small sub-population of rigid red #blood cells, rather than the average "thickness" or viscosity of the patient's blood as previously believed.
    #Biomedical #BiomedicalEngineering #Biophysics #Hematology #Rheology #sflorg
    sflorg.com/2026/02/bmed0211260

  41. Researchers have determined that the severity of sickle cell disease (#SCD ) symptoms is driven by the specific physical behavior of a small sub-population of rigid red #blood cells, rather than the average "thickness" or viscosity of the patient's blood as previously believed.
    #Biomedical #BiomedicalEngineering #Biophysics #Hematology #Rheology #sflorg
    sflorg.com/2026/02/bmed0211260

  42. Researchers successfully #engineered "intrinsically disordered proteins" into biological condensates that function as nanoscale electrochemical "battery droplets" within living cells, capable of generating voltage and driving redox reactions.
    #Biochemistry #Bioengineering #SyntheticBiology #BiomedicalEngineering #Electrochemistry #sflorg
    sflorg.com/2026/01/bchm0123260

  43. Researchers successfully #engineered "intrinsically disordered proteins" into biological condensates that function as nanoscale electrochemical "battery droplets" within living cells, capable of generating voltage and driving redox reactions.
    #Biochemistry #Bioengineering #SyntheticBiology #BiomedicalEngineering #Electrochemistry #sflorg
    sflorg.com/2026/01/bchm0123260