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  2. Cerebral atrophy - Wikipedia

    en.wikipedia.org/wiki/Cerebral_atrophy

    Cerebral atrophy is a common feature of many of the diseases that affect the brain. [1] Atrophy of any tissue means a decrement in the size of the cell, which can be due to progressive loss of cytoplasmic proteins. In brain tissue, atrophy describes a loss of neurons and the connections between them.

  3. Cerebrospinal fluid - Wikipedia

    en.wikipedia.org/wiki/Cerebrospinal_fluid

    Cerebrospinal fluid (CSF) is a clear, colorless transcellular body fluid found within the meningeal tissue that surrounds the vertebrate brain and spinal cord, and in the ventricles of the brain. CSF is mostly produced by specialized ependymal cells in the choroid plexuses of the ventricles of the brain, and absorbed in the arachnoid granulations .

  4. Subdural hygroma - Wikipedia

    en.wikipedia.org/wiki/Subdural_hygroma

    Subdural hygromas require two conditions in order to occur. First, there must be a separation in the layers of the Meninges of the brain. Second, the resulting subdural space that occurs from the separation of layers must remain uncompressed in order for CSF to accumulate in the subdural space, resulting in the hygroma. [1]

  5. Parenchyma - Wikipedia

    en.wikipedia.org/wiki/Parenchyma

    Lung parenchyma showing damage due to large subpleural bullae. Parenchyma (/ p ə ˈ r ɛ ŋ k ɪ m ə /) [1] [2] is the bulk of functional substance in an animal organ or structure such as a tumour. In zoology, it is the tissue that fills the interior of flatworms. In botany, it is some layers in the cross-section of the leaf. [3]

  6. Cerebral edema - Wikipedia

    en.wikipedia.org/wiki/Cerebral_edema

    The breakdown of the tight endothelial junctions that make up the blood–brain barrier causes extravasation of fluid, ions, and plasma proteins, such as albumin, into the brain parenchyma. [18] Accumulation of extracellular fluid increases brain volume and then intracranial pressure causing the symptoms of cerebral edema. [1]

  7. Glymphatic system - Wikipedia

    en.wikipedia.org/wiki/Glymphatic_system

    Similarly, interstitial fluid is cleared from the brain parenchyma via the paravascular spaces surrounding large draining veins. [citation needed] Paravascular spaces are CSF-filled channels formed between the brain blood vessels and leptomeningeal sheathes that surround cerebral surface vessels and proximal penetrating vessels.

  8. Intracranial hemorrhage - Wikipedia

    en.wikipedia.org/wiki/Intracranial_hemorrhage

    Those with parenchymal contusion would require frequent follow-up imaging because such contusions may grow large enough to become hemorrhage and exerts significant mass effect on the brain. [3] Cerebral microhemorrhages is a smaller form of hemorrhagic parenchymal contusion and are typically found in white matter. Such microhemorrhages are ...

  9. Meningeal lymphatic vessels - Wikipedia

    en.wikipedia.org/wiki/Meningeal_lymphatic_vessels

    However, brain interstitial fluid pressure and water content were unaffected. These data suggested that meningeal lymphatic vessels are important for the clearance of macromolecules from the brain parenchyma, but in physiological settings the brain can compensate in solute clearance. [2]