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Showing 1 to 11 of 11 for “"Neuronal Membranes"”.

  1. A biohybrid bridge between brain and machine: Development and application of a neural implant using iPSC-derived neuronal membranes

    … to extract and form human iPSC-derived neuronal membranes, which were then characterised and studied for their performance and electrophysical sealing properties *in vitro*. The study found that these neuronal membranes displayed high mobility and stability *in vitro* and had improved …

    cambridge Repository record for A biohybrid bridge between brain and machine: Development and application of a neural implant using iPSC-derived neuronal membranes (opens in a new tab)

  2. Localization of Luteinizing Hormone-Releasing Hormone (LHRH) in the Hypothalamus of Fetal Bovine

    … of the animal. Localization of LHRH bound to neuronal membranes began from embryonic day 100 of gestation through term. Spatially neurons were located throughout the hypothalamus. Specifically, LHRH neurons were identified in most of the tissue observed from the most anterior sections …

    texas-state Repository record for Localization of Luteinizing Hormone-Releasing Hormone (LHRH) in the Hypothalamus of Fetal Bovine (opens in a new tab)

  3. Materials selection and processing for reliable neural interfaces

    … the interface between the device tips and neuronal membranes.

    mit Repository record for Materials selection and processing for reliable neural interfaces (opens in a new tab)

  4. Minimally invasive neuromodulation using mechanically-sensitive ion channels and magnetically-actuated nanotransducers

    Traditional methods of neuronal activity modulation, like pharmacological interventions and noninvasive techniques such as transcranial magnetic stimulation (TMS) and transcranial direct current stimulation (tDCS) have limitations in specificity and penetration depth. Deep brain stimulation (DBS), …

    mit Repository record for Minimally invasive neuromodulation using mechanically-sensitive ion channels and magnetically-actuated nanotransducers (opens in a new tab)

  5. A Lamprey Gonadotropin-releasing Hormone in the Bovine Brain

    … antibody to lamprey-GnRH-in was found bound to neuronal membranes in the diencephalon region of the fetal brain at all ages studied. Additionally, GnRH receptor antibody was found on fetal anterior pituitary cells colocalized with FSH. These results indicate that the lamprey-GnRH-III analog or a …

    texas-state Repository record for A Lamprey Gonadotropin-releasing Hormone in the Bovine Brain (opens in a new tab)

  6. The Role of Fractalkine-mediated Neuroprotection in the Diabetic Retina

    … worldwide due to hallmarks that include neuronal loss, microgliosis, and vasculature damage. Evidence suggests neurodegeneration and neuronal loss precedes vascular dysfunction in early diabetes. Inflammation caused by microglia exacerbates retinal pathology. Microglia, the resident …

    tdl Repository record for The Role of Fractalkine-mediated Neuroprotection in the Diabetic Retina (opens in a new tab)

  7. Sensing with Nanomaterials: Controlling Transport, Single Molecule Detection, and Voltage Sensing

    … physical phenomena but also serve as disruptive membranes for ionic selectivity and sensing based applications. Atomic thinness of these materials affords a unique environment in an all-surface material to unlock challenges towards improving desalination, energy harvesting and DNA sensing. Within …

    cambridge Repository record for Sensing with Nanomaterials: Controlling Transport, Single Molecule Detection, and Voltage Sensing (opens in a new tab)

  8. The initiation of action potentials and the passive electrical properties of identified snail neurones

    Two aspects of neuronal function were investigated: the passive electrical properties of neuronal membranes and the initiation of action potentials. The passive electrical properties of a neurone, together with its morphology, determine the efficiency of synaptic current transfer to the impulse …

    cambridge Repository record for The initiation of action potentials and the passive electrical properties of identified snail neurones (opens in a new tab)

  9. The Role of Temperature in the Preparation and Viability of Rodent Brain Slices, and Propensity to Evoke Spreading Depolarization

    … brain and is the primary contributor to acute neuronal injury. Within minutes of the brain being deprived of oxygen and glucose (OGD), Na+/K+ pumps on neuronal membranes fail and membrane potential is lost, resulting in SD. Experimentally, SD can be evoked in rodent brain slices using several …

    queens Repository record for The Role of Temperature in the Preparation and Viability of Rodent Brain Slices, and Propensity to Evoke Spreading Depolarization (opens in a new tab)

  10. Analysis of nerve terminal dysfunction in autoimmune neuropathy

    … to produce complement dependent, glial and/or neuronal injury at mouse neuromuscular junctions (NMJs). Three antibodies (EG1, LB1 and R24) were identified as producing selective terminal Schwann cell (TSC) injury whilst sparing neuronal membranes at NMJs in BALB/c and C57BL/6 mouse strains in a …

    glasgow Repository record for Analysis of nerve terminal dysfunction in autoimmune neuropathy (opens in a new tab)

  11. Computational modeling of peptide-mediated charge transport and membrane-associated phenomena

    Proteins and membranes play a crucial role in fueling cellular activity and maintaining cellular homeostasis. Proteins act as energy conduits within cells by shuttling electrons through a series of reactions to fuel the synthesis of adenosine triphosphate (ATP). In mitochondria, membranes provide …

    uiuc Repository record for Computational modeling of peptide-mediated charge transport and membrane-associated phenomena (opens in a new tab)