Literature DB >> 9654023

Segmentation of the vertebrate hindbrain: a time-lapse analysis.

P M Kulesa1, S E Fraser.   

Abstract

The chick hindbrain starts from a simple and relatively uniform axis and becomes segmented into repeating units, called rhombomeres. The rhombomeres become sites of cell differentiation into specific neurons and the location from which neural crest cells emerge from the neural tube to form the peripheral nervous system, which has only been analyzed at distinct time points due to the lack of a method to watch the neural tube as it is shaped into segments. We have developed a whole-embryo explant culture system in order to study cell and tissue movements with time-lapse video microscopy. Quantitative analyses of the neural tube during its segmentation show that not all rhombomeres are shaped by the same mechanism. In the rostral hindbrain, or first three segments, rhombomeres are shaped by an expansion in the lateral width of the mid-rhombomere; either a smaller expansion or a constriction takes place at the rhombomere boundaries. In the caudal hindbrain, the rhombomere boundaries constrict more than the mid-rhombomere lateral widths increase or decrease, leading to the shaping of the segments. Throughout the segmentation process the rostrocaudal lengths of all rhombomeres remain nearly constant indicating that shape changes are influenced by lateral expansions and constrictions of the neural tube.

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Year:  1998        PMID: 9654023

Source DB:  PubMed          Journal:  Int J Dev Biol        ISSN: 0214-6282            Impact factor:   2.203


  3 in total

1.  The neural crest cell cycle is related to phases of migration in the head.

Authors:  Dennis A Ridenour; Rebecca McLennan; Jessica M Teddy; Craig L Semerad; Jeffrey S Haug; Paul M Kulesa
Journal:  Development       Date:  2014-03       Impact factor: 6.868

2.  Reprogramming metastatic melanoma cells to assume a neural crest cell-like phenotype in an embryonic microenvironment.

Authors:  Paul M Kulesa; Jennifer C Kasemeier-Kulesa; Jessica M Teddy; Naira V Margaryan; Elisabeth A Seftor; Richard E B Seftor; Mary J C Hendrix
Journal:  Proc Natl Acad Sci U S A       Date:  2006-02-27       Impact factor: 11.205

3.  A new role of hindbrain boundaries as pools of neural stem/progenitor cells regulated by Sox2.

Authors:  Yuval Peretz; Noa Eren; Ayelet Kohl; Gideon Hen; Karina Yaniv; Karen Weisinger; Yuval Cinnamon; Dalit Sela-Donenfeld
Journal:  BMC Biol       Date:  2016-07-08       Impact factor: 7.431

  3 in total

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