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  2. Neural tube - Wikipedia

    en.wikipedia.org/wiki/Neural_tube

    In the developing chordate (including vertebrates), the neural tube is the embryonic precursor to the central nervous system, which is made up of the brain and spinal cord. The neural groove gradually deepens as the neural folds become elevated, and ultimately the folds meet and coalesce in the middle line and convert the groove into the closed ...

  3. Neurulation - Wikipedia

    en.wikipedia.org/wiki/Neurulation

    The neural plate folds in upon itself to form the neural tube, which will later differentiate into the spinal cord and the brain, eventually forming the central nervous system. [2] Computer simulations found that cell wedging and differential proliferation are sufficient for mammalian neurulation.

  4. Human brain - Wikipedia

    en.wikipedia.org/wiki/Human_brain

    The neural crest runs the length of the tube with cranial neural crest cells at the cephalic end and caudal neural crest cells at the tail. Cells detach from the crest and migrate in a craniocaudal (head to tail) wave inside the tube. [67] Cells at the cephalic end give rise to the brain, and cells at the caudal end give rise to the spinal cord ...

  5. Neural fold - Wikipedia

    en.wikipedia.org/wiki/Neural_fold

    The neural fold is a structure that arises during neurulation in the embryonic development of both birds and mammals among other organisms. [1] [2] This structure is associated with primary neurulation, meaning that it forms by the coming together of tissue layers, rather than a clustering, and subsequent hollowing out, of individual cells (known as secondary neurulation).

  6. Outline of the human brain - Wikipedia

    en.wikipedia.org/wiki/Outline_of_the_human_brain

    1.2 Microscopic level anatomy. 2 History of the human brain. ... Human brain – central organ of the nervous system located in the head of a human being Neuroanatomy;

  7. Neurotubule - Wikipedia

    en.wikipedia.org/wiki/Neurotubule

    The defective neural migration in individuals affected by lissencephaly is caused by mutations associated with neurotubule-related genes, such as LIS1 and DCX. [26] LIS1 encodes an adaptor protein Lis1 that is responsible for stabilization of neurotubule during neuronal migration by minimizing neurotubule catastrophe.

  8. Head and neck anatomy - Wikipedia

    en.wikipedia.org/wiki/Head_and_neck_anatomy

    The head rests on the top part of the vertebral column, with the skull joining at C1 (the first cervical vertebra known as the atlas). The skeletal section of the head and neck forms the top part of the axial skeleton and is made up of the skull, hyoid bone, auditory ossicles, and cervical spine. The skull can be further subdivided into:

  9. Flexure (embryology) - Wikipedia

    en.wikipedia.org/wiki/Flexure_(embryology)

    Three flexures form in the part of the embryonic neural tube that develops into the brain. At four weeks gestational age in the human embryo, the neural tube has developed at the cranial end into three swellings – the primary brain vesicles. The space into which the cranial part of the neural tube is developing is limited.

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