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  2. Hypertension and the brain - Wikipedia

    en.wikipedia.org/wiki/Hypertension_and_the_brain

    This is an accepted version of this page This is the latest accepted revision, reviewed on 3 January 2025. Hypertension graphic Hypertension is a condition characterized by an elevated blood pressure in which the long term consequences include cardiovascular disease, kidney disease, adrenal gland tumors, vision impairment, memory loss, metabolic syndrome, stroke and dementia. It affects nearly ...

  3. Baroreceptor - Wikipedia

    en.wikipedia.org/wiki/Baroreceptor

    The blood volume determines the mean pressure throughout the system, in particular in the venous side where most of the blood is held. The low-pressure baroreceptors have both circulatory and renal effects; they produce changes in hormone secretion, resulting in profound effects on the retention of salt and water ; they also influence intake of ...

  4. Vasomotor center - Wikipedia

    en.wikipedia.org/wiki/Vasomotor_center

    This is opposite to carbon dioxide in tissues causing vasodilatation, especially in the brain. [2] Cranial nerves IX (glossopharyngeal nerve) and X (vagus nerve) both feed into the vasomotor centre and are themselves involved in the regulation of blood pressure.

  5. Brain cell - Wikipedia

    en.wikipedia.org/wiki/Brain_cell

    Brain cells make up the functional tissue of the brain. The rest of the brain tissue is the structural stroma that includes connective tissue such as the meninges, blood vessels, and ducts. The two main types of cells in the brain are neurons, also known as nerve cells, and glial cells, also known as neuroglia. [1]

  6. Neuron - Wikipedia

    en.wikipedia.org/wiki/Neuron

    A neuron, neurone, [1] or nerve cell is an excitable cell that fires electric signals called action potentials across a neural network in the nervous system.They are located in the brain and spinal cord and help to receive and conduct impulses.

  7. Baroreflex - Wikipedia

    en.wikipedia.org/wiki/Baroreflex

    Baroreflex-induced changes in blood pressure are mediated by both branches of the autonomic nervous system: the parasympathetic and sympathetic nerves. Baroreceptors are active even at normal blood pressures so their activity informs the brain about both increases and decreases in blood pressure.

  8. Insufficient sleep and high blood pressure may raise risk of ...

    www.aol.com/insufficient-sleep-high-blood...

    People with high blood pressure who slept for shorter durations were more likely to show poor cognitive function and increased levels of markers of brain aging and injury, a new study has found.

  9. High pressure receptors - Wikipedia

    en.wikipedia.org/wiki/High_pressure_receptors

    High pressure receptors or high pressure baroreceptors are the baroreceptors found within the aortic arch and carotid sinus. They are only sensitive to blood pressures above 60 mmHg . When these receptors are activated they elicit a depressor response; which decreases the heart rate and causes a general vasodilation .