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  2. Lateralization of brain function - Wikipedia

    en.wikipedia.org/wiki/Lateralization_of_brain...

    The lateralization of brain function (or hemispheric dominance[1][2] / lateralization [3][4]) is the tendency for some neural functions or cognitive processes to be specialized to one side of the brain or the other. The median longitudinal fissure separates the human brain into two distinct cerebral hemispheres, connected by the corpus callosum.

  3. Liver - Wikipedia

    en.wikipedia.org/wiki/Liver

    The liver is grossly divided into two parts when viewed from above – a right and a left lobe – and four parts when viewed from below (left, right, caudate, and quadrate lobes). [16] The falciform ligament makes a superficial division of the liver into a left and right lobe. From below, the two additional lobes are located between the right ...

  4. Cerebral hemisphere - Wikipedia

    en.wikipedia.org/wiki/Cerebral_hemisphere

    Cerebral hemisphere. Human brain seen from front. The vertebrate cerebrum (brain) is formed by two cerebral hemispheres that are separated by a groove, the longitudinal fissure. The brain can thus be described as being divided into left and right cerebral hemispheres. Each of these hemispheres has an outer layer of grey matter, the cerebral ...

  5. Lobes of liver - Wikipedia

    en.wikipedia.org/wiki/Lobes_of_liver

    The falciform ligament, visible on the front of the liver, makes a superficial division of the right and left lobes of the liver. From the underside, the two additional lobes are located on the right lobe. [2] A line can be imagined running from the left of the vena cava and all the way forward to divide the liver and gallbladder into two ...

  6. Brain asymmetry - Wikipedia

    en.wikipedia.org/wiki/Brain_asymmetry

    Brain asymmetry. In human neuroanatomy, brain asymmetry can refer to at least two quite distinct findings: Neuroanatomical differences between the left and right sides of the brain. Lateralized functional differences: lateralization of brain function. A stereotypical image of brain lateralisation - demonstrated to be false in neuroscientific ...

  7. Human brain - Wikipedia

    en.wikipedia.org/wiki/Human_brain

    The left and right sides of the brain appear symmetrical, but they function asymmetrically. [113] For example, the counterpart of the left-hemisphere motor area controlling the right hand is the right-hemisphere area controlling the left hand. There are, however, several important exceptions, involving language and spatial cognition.

  8. Lobe (anatomy) - Wikipedia

    en.wikipedia.org/wiki/Lobe_(anatomy)

    Lobe (anatomy) In anatomy, a lobe is a clear anatomical division or extension [1] of an organ (as seen for example in the brain, lung, liver, or kidney) that can be determined without the use of a microscope at the gross anatomy level. This is in contrast to the much smaller lobule, which is a clear division only visible under the microscope. [2]

  9. Contralateral brain - Wikipedia

    en.wikipedia.org/wiki/Contralateral_brain

    Contralateral brain. The contralateral organization of the forebrain (Latin: contra‚ against; latus‚ side; lateral‚ sided) is the property that the hemispheres of the cerebrum and the thalamus represent mainly the contralateral side of the body. Consequently, the left side of the forebrain mostly represents the right side of the body, and ...