Detailed muscular structure and neural control anatomy of the levator ani muscle: a study based on female human fetuses

Injury to the levator ani muscle or pelvic nerves during pregnancy and vaginal delivery is responsible for pelvic floor dysfunction. We sought to demonstrate the presence of smooth muscular cell areas within the levator ani muscle and describe their localization and innervation. Five female human fe...

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Published inAmerican journal of obstetrics and gynecology Vol. 218; no. 1; pp. 121.e1 - 121.e12
Main Authors Nyangoh Timoh, Krystel, Moszkowicz, David, Zaitouna, Mazen, Lebacle, Cedric, Martinovic, Jelena, Diallo, Djibril, Creze, Maud, Lavoue, Vincent, Darai, Emile, Benoit, Gérard, Bessede, Thomas
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LanguageEnglish
Published United States Elsevier Inc 01.01.2018
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Abstract Injury to the levator ani muscle or pelvic nerves during pregnancy and vaginal delivery is responsible for pelvic floor dysfunction. We sought to demonstrate the presence of smooth muscular cell areas within the levator ani muscle and describe their localization and innervation. Five female human fetuses were studied after approval from the French Biomedicine Agency. Specimens were serially sectioned and stained by Masson trichrome and immunostained for striated and smooth muscle, as well as for somatic, adrenergic, cholinergic, and nitriergic nerve fibers. Slides were digitized for 3-dimensional reconstruction. One fetus was reserved for electron microscopy. We explored the structure and innervation of the levator ani muscle. Smooth muscular cell beams were connected externally to the anococcygeal raphe and the levator ani muscle and with the longitudinal anal muscle sphincter. The caudalmost part of the pubovaginal muscle was found to bulge between the rectum and the vagina. This bulging was a smooth muscular interface between the levator ani muscle and the longitudinal anal muscle sphincter. The medial (visceral) part of the levator ani muscle contained smooth muscle cells, in relation to the autonomic nerve fibers of the inferior hypogastric plexus. The lateral (parietal) part of the levator ani muscle contained striated muscle cells only and was innervated by the somatic nerve fibers of levator ani and pudendal nerves. The presence of smooth muscle cells within the medial part of the levator ani muscle was confirmed under electron microscopy in 1 fetus. We characterized the muscular structure and neural control of the levator ani muscle. The muscle consists of a medial part containing smooth muscle cells under autonomic nerve influence and a lateral part containing striated muscle cells under somatic nerve control. These findings could result in new postpartum rehabilitation techniques.
AbstractList BACKGROUNDInjury to the levator ani muscle or pelvic nerves during pregnancy and vaginal delivery is responsible for pelvic floor dysfunction.OBJECTIVEWe sought to demonstrate the presence of smooth muscular cell areas within the levator ani muscle and describe their localization and innervation.STUDY DESIGNFive female human fetuses were studied after approval from the French Biomedicine Agency. Specimens were serially sectioned and stained by Masson trichrome and immunostained for striated and smooth muscle, as well as for somatic, adrenergic, cholinergic, and nitriergic nerve fibers. Slides were digitized for 3-dimensional reconstruction. One fetus was reserved for electron microscopy. We explored the structure and innervation of the levator ani muscle.RESULTSSmooth muscular cell beams were connected externally to the anococcygeal raphe and the levator ani muscle and with the longitudinal anal muscle sphincter. The caudalmost part of the pubovaginal muscle was found to bulge between the rectum and the vagina. This bulging was a smooth muscular interface between the levator ani muscle and the longitudinal anal muscle sphincter. The medial (visceral) part of the levator ani muscle contained smooth muscle cells, in relation to the autonomic nerve fibers of the inferior hypogastric plexus. The lateral (parietal) part of the levator ani muscle contained striated muscle cells only and was innervated by the somatic nerve fibers of levator ani and pudendal nerves. The presence of smooth muscle cells within the medial part of the levator ani muscle was confirmed under electron microscopy in 1 fetus.CONCLUSIONWe characterized the muscular structure and neural control of the levator ani muscle. The muscle consists of a medial part containing smooth muscle cells under autonomic nerve influence and a lateral part containing striated muscle cells under somatic nerve control. These findings could result in new postpartum rehabilitation techniques.
Injury to the levator ani muscle or pelvic nerves during pregnancy and vaginal delivery is responsible for pelvic floor dysfunction. We sought to demonstrate the presence of smooth muscular cell areas within the levator ani muscle and describe their localization and innervation. Five female human fetuses were studied after approval from the French Biomedicine Agency. Specimens were serially sectioned and stained by Masson trichrome and immunostained for striated and smooth muscle, as well as for somatic, adrenergic, cholinergic, and nitriergic nerve fibers. Slides were digitized for 3-dimensional reconstruction. One fetus was reserved for electron microscopy. We explored the structure and innervation of the levator ani muscle. Smooth muscular cell beams were connected externally to the anococcygeal raphe and the levator ani muscle and with the longitudinal anal muscle sphincter. The caudalmost part of the pubovaginal muscle was found to bulge between the rectum and the vagina. This bulging was a smooth muscular interface between the levator ani muscle and the longitudinal anal muscle sphincter. The medial (visceral) part of the levator ani muscle contained smooth muscle cells, in relation to the autonomic nerve fibers of the inferior hypogastric plexus. The lateral (parietal) part of the levator ani muscle contained striated muscle cells only and was innervated by the somatic nerve fibers of levator ani and pudendal nerves. The presence of smooth muscle cells within the medial part of the levator ani muscle was confirmed under electron microscopy in 1 fetus. We characterized the muscular structure and neural control of the levator ani muscle. The muscle consists of a medial part containing smooth muscle cells under autonomic nerve influence and a lateral part containing striated muscle cells under somatic nerve control. These findings could result in new postpartum rehabilitation techniques.
Author Lavoue, Vincent
Zaitouna, Mazen
Lebacle, Cedric
Moszkowicz, David
Creze, Maud
Martinovic, Jelena
Nyangoh Timoh, Krystel
Darai, Emile
Diallo, Djibril
Benoit, Gérard
Bessede, Thomas
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  surname: Benoit
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  givenname: Thomas
  surname: Bessede
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Issue 1
Keywords smooth muscle cells
innervation
pelvic floor
anatomy
levator ani muscle
Language English
License Copyright © 2017 Elsevier Inc. All rights reserved.
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Snippet Injury to the levator ani muscle or pelvic nerves during pregnancy and vaginal delivery is responsible for pelvic floor dysfunction. We sought to demonstrate...
BACKGROUNDInjury to the levator ani muscle or pelvic nerves during pregnancy and vaginal delivery is responsible for pelvic floor dysfunction.OBJECTIVEWe...
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StartPage 121.e1
SubjectTerms anatomy
Female
Fetus
Humans
innervation
levator ani muscle
Microscopy, Electron
Myocytes, Smooth Muscle - metabolism
pelvic floor
Pelvic Floor - anatomy & histology
Pelvic Floor - physiology
smooth muscle cells
Title Detailed muscular structure and neural control anatomy of the levator ani muscle: a study based on female human fetuses
URI https://dx.doi.org/10.1016/j.ajog.2017.09.021
https://www.ncbi.nlm.nih.gov/pubmed/28988909
https://search.proquest.com/docview/1949086636
Volume 218
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