Neuroembryology and functional anatomy of craniofacial clefts
The master plan of all vertebrate embryos is based on neuroanatomy. The embryo can be anatomically divided into discrete units called neuromeres so that each carries unique genetic traits. Embryonic neural crest cells arising from each neuromere induce development of nerves and concomitant arteries...
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doaj-0f2b84046db2428ba00843900a891b8e2020-11-25T03:13:26ZengThieme Medical Publishers, Inc.Indian Journal of Plastic Surgery0970-03581998-376X2009-10-0142S19S3410.1055/s-0039-1699374Neuroembryology and functional anatomy of craniofacial cleftsEmber L. Ewings0Michael H. Carstens1Division of Plastic and Reconstructive Surgery, Department of Surgery at Saint Louis University School of Medicine, Saint Louis, MODivision of Plastic and Reconstructive Surgery, Department of Surgery at Saint Louis University School of Medicine, Saint Louis, MOThe master plan of all vertebrate embryos is based on neuroanatomy. The embryo can be anatomically divided into discrete units called neuromeres so that each carries unique genetic traits. Embryonic neural crest cells arising from each neuromere induce development of nerves and concomitant arteries and support the development of specific craniofacial tissues or developmental fields. Fields are assembled upon each other in a programmed spatiotemporal order. Abnormalities in one field can affect the shape and position of developing adjacent fields. Craniofacial clefts represent states of excess or deficiency within and between specific developmental fields. The neuromeric organization of the embryo is the common denominator for understanding normal anatomy and pathology of the head and neck. Tessier's observational cleft classification system can be redefined using neuroanatomic embryology. Reassessment of Tessier's empiric observations demonstrates a more rational rearrangement of cleft zones, particularly near the midline. Neuromeric theory is also a means to understand and define other common craniofacial problems. Cleft palate, encephaloceles, craniosynostosis and cranial base defects may be analyzed in the same way.http://www.thieme-connect.de/DOI/DOI?10.1055/s-0039-1699374cleftembryologytessier |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ember L. Ewings Michael H. Carstens |
spellingShingle |
Ember L. Ewings Michael H. Carstens Neuroembryology and functional anatomy of craniofacial clefts Indian Journal of Plastic Surgery cleft embryology tessier |
author_facet |
Ember L. Ewings Michael H. Carstens |
author_sort |
Ember L. Ewings |
title |
Neuroembryology and functional anatomy of craniofacial clefts |
title_short |
Neuroembryology and functional anatomy of craniofacial clefts |
title_full |
Neuroembryology and functional anatomy of craniofacial clefts |
title_fullStr |
Neuroembryology and functional anatomy of craniofacial clefts |
title_full_unstemmed |
Neuroembryology and functional anatomy of craniofacial clefts |
title_sort |
neuroembryology and functional anatomy of craniofacial clefts |
publisher |
Thieme Medical Publishers, Inc. |
series |
Indian Journal of Plastic Surgery |
issn |
0970-0358 1998-376X |
publishDate |
2009-10-01 |
description |
The master plan of all vertebrate embryos is based on neuroanatomy. The embryo can be anatomically divided into discrete units called neuromeres so that each carries unique genetic traits. Embryonic neural crest cells arising from each neuromere induce development of nerves and concomitant arteries and support the development of specific craniofacial tissues or developmental fields. Fields are assembled upon each other in a programmed spatiotemporal order. Abnormalities in one field can affect the shape and position of developing adjacent fields. Craniofacial clefts represent states of excess or deficiency within and between specific developmental fields. The neuromeric organization of the embryo is the common denominator for understanding normal anatomy and pathology of the head and neck. Tessier's observational cleft classification system can be redefined using neuroanatomic embryology. Reassessment of Tessier's empiric observations demonstrates a more rational rearrangement of cleft zones, particularly near the midline. Neuromeric theory is also a means to understand and define other common craniofacial problems. Cleft palate, encephaloceles, craniosynostosis and cranial base defects may be analyzed in the same way. |
topic |
cleft embryology tessier |
url |
http://www.thieme-connect.de/DOI/DOI?10.1055/s-0039-1699374 |
work_keys_str_mv |
AT emberlewings neuroembryologyandfunctionalanatomyofcraniofacialclefts AT michaelhcarstens neuroembryologyandfunctionalanatomyofcraniofacialclefts |
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