00:01
Neural crest cells particularly migrate so we write it as neural crest cells.
00:07
So these cells migrate or the migration of these cells occur in the rose still written as r or cordial direction without the need of the neural skull folds such as the radial glial cells written as rgc for this reason the crest cell migration process is termed as free migration now in instead of scalfolding or progenitor cells, neural crest migration is the result or repulsive guidance via the neurophil signals written as ns, interacting with the extracellular matrix written as em and contrast inhibitor written as ci in particular with each other.
00:53
So what we do understand from the given scenario is that these neural class cells are a transatlantic cells are a trans.
01:00
It embryonic cell population written as ecp for embryonic cell population that migrate collectively to various locations through the embryo in particular and this contributes the number of cell types to several organs in specific now early in the process of development vertebrate embryos develop fold or a neural plate written as np in particular whereas the neural and and epidermal endocrines meet and called as neural crest which produces neural crest cells written as ncc and becomes different cell types and contribute to tissue and organs of embryonic development so this is how it has a effect on the embryonic development now particularly when we see that parasympathetic written as p or sympathetic written as s nervous damage has occurred written as nd this in turn leads to the dysfunctioning of the parasympathetic nervous system dysfunctioning and so on.
02:07
And this can interfere with the messages that is being sent between the brain and the organs.
02:15
So brain and the organ connection or messages is interrupted.
02:19
And organs such as heart, blood, whistle, sweat glands do not receive the signal.
02:23
Now this also can lead to the occurrence of something called as neurocryloseousal, cryptopathies...