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  2. Cerebral atrophy - Wikipedia

    en.wikipedia.org/wiki/Cerebral_atrophy

    In brain tissue, atrophy describes a loss of neurons and the connections between them. Brain atrophy can be classified into two main categories: generalized and focal atrophy. [2] Generalized atrophy occurs across the entire brain whereas focal atrophy affects cells in a specific location. [2] If the cerebral hemispheres (the two lobes of the ...

  3. Brain death - Wikipedia

    en.wikipedia.org/wiki/Brain_death

    The living cells that can cause these movements are not living cells from the brain or brain stem; these cells come from the spinal cord. Sometimes these body movements can cause false hope for family members. A brain-dead individual has no clinical evidence of brain function upon physical examination.

  4. Brain injury - Wikipedia

    en.wikipedia.org/wiki/Brain_injury

    Lesions to V4 can cause color-blindness, [13] and bilateral lesions to MT/V5 can cause the loss of the ability to perceive motion. Lesions to the parietal lobes may result in agnosia, an inability to recognize complex objects, smells, or shapes, or amorphosynthesis, a loss of perception on the opposite side of the body. [14]

  5. Hippocampal sclerosis - Wikipedia

    en.wikipedia.org/wiki/Hippocampal_sclerosis

    In 1825, Bouchet and Cazauvieilh described palpable firmness and atrophy of the uncus and medial temporal lobe of brains from epileptic and non-epileptic individuals. [4]: 565 In 1880, Wilhelm Sommer investigated 90 brains and described the classical Ammon's horn sclerosis pattern, severe neuronal cell loss in hippocampal subfield cornum Ammonis 1 (CA1) and some neuronal cell loss in ...

  6. Amyloid plaques - Wikipedia

    en.wikipedia.org/wiki/Amyloid_plaques

    The plaques are highly variable in shape and size; in tissue sections immunostained for Aβ, they comprise a log-normal size distribution curve, with an average plaque area of 400-450 square micrometers (μm 2). The smallest plaques (less than 200 μm 2), which often consist of diffuse deposits of Aβ, [4] are particularly numerous. [6]

  7. 8 surprising ways your brain powers the rest of your body - AOL

    www.aol.com/8-surprising-ways-brain-powers...

    Your brain accounts for only about 2% of your body weight, but it uses roughly 20% of your body’s total energy. Even when you’re sleeping , your brain is burning tons of energy just to keep ...

  8. 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 ]

  9. Human brain - Wikipedia

    en.wikipedia.org/wiki/Human_brain

    PET image of the human brain showing energy consumption. The brain consumes up to 20% of the energy used by the human body, more than any other organ. [131] In humans, blood glucose is the primary source of energy for most cells and is critical for normal function in a number of tissues, including the brain. [132]