Skip to main content
Erschienen in: Surgical and Radiologic Anatomy 10/2009

01.12.2009 | Original Article

Classification of pharyngeal muscles based on innervations from glossopharyngeal and vagus nerves in human

verfasst von: Yujiro Sakamoto

Erschienen in: Surgical and Radiologic Anatomy | Ausgabe 10/2009

Einloggen, um Zugang zu erhalten

Abstract

Purpose

The pharyngeal muscles are innervated by the glossopharyngeal and vagus nerves. However, their spatial interrelationships with the innervating branches have been unclear. This study examined the pharynx to elucidate their precise relationships for the anatomical evidence of the functional diagnosis.

Method

The muscles and nerves were dissected under a binocular microscope in 44 sides of 22 cadavers fixed with 8% formalin.

Results

The pharyngeal muscles overlapped each other, and the pharyngeal constrictors sometimes linked to adjacent muscles. The uppermost part of the superior constrictor arose from the soft palate, and sometimes contained the fibers attaching to the petrous part of the temporal bone. Anomalous bundles were frequently found between the superior and middle constrictors and the stylopharyngeus. The stylopharyngeus and the glossopharyngeal part of the superior constrictor were innervated by the glossopharyngeal nerve, which occasionally penetrated the stylopharyngeus. The pharyngeal plexus not only spread onto dorsolateral surface of the pharynx but also sent branches between the constrictors. The plexus supplied the superior constrictor and salpingo- and palatopharyngei from their dorsal surface and the middle and inferior constrictors from their ventral and dorsal surfaces. The inferior constrictor received additional innervations from the laryngeal nerves.

Conclusions

The innervations pattern suggests that the pharyngeal muscles comprise four groups: the first innervated by the glossopharyngeal nerve, the second and third by the pharyngeal plexus, and the fourth by the plexus and the laryngeal nerves. The stylopharyngeus descends between the second and third groups, and its penetration may cause the anomalous bundles between them.
Literatur
1.
Zurück zum Zitat Drake RL, Vogl W, Mitchell AWM (2005) Gray’s anatomy for students. Elsevier, Philadelphia Drake RL, Vogl W, Mitchell AWM (2005) Gray’s anatomy for students. Elsevier, Philadelphia
2.
Zurück zum Zitat Standring S (2005) Head and Neck. In: Standring S, Ellis H, Healy JC, Johnson D, Williams A (eds) Gray’s anatomy, 39th edn. Elsevier Churchill Livingstone, Edinburgh, pp 439–723 Standring S (2005) Head and Neck. In: Standring S, Ellis H, Healy JC, Johnson D, Williams A (eds) Gray’s anatomy, 39th edn. Elsevier Churchill Livingstone, Edinburgh, pp 439–723
3.
Zurück zum Zitat DuBrul EL (1988) Sicher and DuBrul’s oral anatomy, 8th edn. Ishiyaku EuroAmerica, St. Louis DuBrul EL (1988) Sicher and DuBrul’s oral anatomy, 8th edn. Ishiyaku EuroAmerica, St. Louis
4.
Zurück zum Zitat Romanes GJ (1981) Cunningham’s textbook of anatomy, 12th edn. Oxford university press, Oxford Romanes GJ (1981) Cunningham’s textbook of anatomy, 12th edn. Oxford university press, Oxford
5.
Zurück zum Zitat Lang IM, Shaker R (1997) Anatomy and physiology of the upper esophageal sphincter. Am J Med 103(5A):50S–55SCrossRefPubMed Lang IM, Shaker R (1997) Anatomy and physiology of the upper esophageal sphincter. Am J Med 103(5A):50S–55SCrossRefPubMed
6.
Zurück zum Zitat Sasaki CT (2000) Understanding the motor innervation of the human cricopharyngeus muscle (Review). Am J Med 108(Suppl 4a):38S–39SCrossRefPubMed Sasaki CT (2000) Understanding the motor innervation of the human cricopharyngeus muscle (Review). Am J Med 108(Suppl 4a):38S–39SCrossRefPubMed
7.
Zurück zum Zitat Singh S, Hamdy S (2005) The upper oesophageal sphincter. Neurogastroent Motil 17(Supple 1):3–12CrossRef Singh S, Hamdy S (2005) The upper oesophageal sphincter. Neurogastroent Motil 17(Supple 1):3–12CrossRef
8.
Zurück zum Zitat Sivarao DV, Goyal RK (2000) Functional anatomy and physiology of the upper esophageal sphincter (Review). Am J Med 108(Suppl 4a):27S–37SCrossRefPubMed Sivarao DV, Goyal RK (2000) Functional anatomy and physiology of the upper esophageal sphincter (Review). Am J Med 108(Suppl 4a):27S–37SCrossRefPubMed
9.
Zurück zum Zitat Larsen WJ (2001) Development of the head and neck. In: Sherman LS, Steven Potter S, Scott WJ (eds) Human embryology, 3rd edn. Churchill Livingstone, New York, pp 351–389 Larsen WJ (2001) Development of the head and neck. In: Sherman LS, Steven Potter S, Scott WJ (eds) Human embryology, 3rd edn. Churchill Livingstone, New York, pp 351–389
10.
Zurück zum Zitat Sadler TW (2004) Medical embryology, 9th edn. Lippincott Williams & Wilkins, Philadelphia Sadler TW (2004) Medical embryology, 9th edn. Lippincott Williams & Wilkins, Philadelphia
11.
Zurück zum Zitat Kitamura S, Nagase Y, Chen K, Shigenaga Y (1993) Nucleus ambiguus of the rabbit: cytoarchitectural subdivision and myotopical and neurotopic representations. Anat Rec 237:109–123CrossRefPubMed Kitamura S, Nagase Y, Chen K, Shigenaga Y (1993) Nucleus ambiguus of the rabbit: cytoarchitectural subdivision and myotopical and neurotopic representations. Anat Rec 237:109–123CrossRefPubMed
12.
Zurück zum Zitat Kitamura S, Nishiguchi T, Ogata K, Sakai A (1988) Neurons of origin of the internal ramus of the rabbit accessory nerve: localization in the nucleus ambiguus. Okajimas Folia Anat Jpn 65:291–301PubMed Kitamura S, Nishiguchi T, Ogata K, Sakai A (1988) Neurons of origin of the internal ramus of the rabbit accessory nerve: localization in the nucleus ambiguus. Okajimas Folia Anat Jpn 65:291–301PubMed
13.
Zurück zum Zitat Kitamura S, Ogata K (1990) An HRP study of location of the rabbit palatopharyngeal motoneurons and peripheral course of their axons. Anat Rec 228:225–229CrossRefPubMed Kitamura S, Ogata K (1990) An HRP study of location of the rabbit palatopharyngeal motoneurons and peripheral course of their axons. Anat Rec 228:225–229CrossRefPubMed
14.
Zurück zum Zitat Kitamura S, Ogata K, Nishiguchi T, Nagase Y, Shigenaga Y (1991) Location of the motoneurons supplying the rabbit pharyngeal constrictor muscles and the peripheral course of their axons: a study using the retrograde HRP or fluorescent labeling technique. Anat Rec 229:399–406CrossRefPubMed Kitamura S, Ogata K, Nishiguchi T, Nagase Y, Shigenaga Y (1991) Location of the motoneurons supplying the rabbit pharyngeal constrictor muscles and the peripheral course of their axons: a study using the retrograde HRP or fluorescent labeling technique. Anat Rec 229:399–406CrossRefPubMed
15.
Zurück zum Zitat Kitamura S, Ogata K, Sakai A (1988) An HRP study of the central localization of the rabbit stylopharyngeal motoneurons and the peripheral courses of their axons. J Osaka Univ Dent Sch 28:53–61PubMed Kitamura S, Ogata K, Sakai A (1988) An HRP study of the central localization of the rabbit stylopharyngeal motoneurons and the peripheral courses of their axons. J Osaka Univ Dent Sch 28:53–61PubMed
16.
Zurück zum Zitat Van Loveren H, Saunders MC, Cassini P, Keller JT (1985) Localization of motoneurons innervating the stylopharyngeus muscles in the cat. Neurosci Lett 58:251–255CrossRefPubMed Van Loveren H, Saunders MC, Cassini P, Keller JT (1985) Localization of motoneurons innervating the stylopharyngeus muscles in the cat. Neurosci Lett 58:251–255CrossRefPubMed
17.
Zurück zum Zitat Satoda T, Takahashi O, Murakami C, Uchida T, Mizuno N (1996) The sites of origin and termination of afferent and efferent components in the lingual and pharyngeal branches of the glossopharyngeal nerve in the Japanese monkey (Macaca fuscata). Neurosci Res 24:385–392CrossRefPubMed Satoda T, Takahashi O, Murakami C, Uchida T, Mizuno N (1996) The sites of origin and termination of afferent and efferent components in the lingual and pharyngeal branches of the glossopharyngeal nerve in the Japanese monkey (Macaca fuscata). Neurosci Res 24:385–392CrossRefPubMed
18.
Zurück zum Zitat Mu L, Sanders I (2007) Neuromuscular specializations within human pharyngeal constrictor muscles. Ann Oto Rhinol Laryn 116:604–617 Mu L, Sanders I (2007) Neuromuscular specializations within human pharyngeal constrictor muscles. Ann Oto Rhinol Laryn 116:604–617
19.
Zurück zum Zitat Shimokawa T, Yi S-Q, Izumi A, Ru F, Akita K, Sato T, Tanaka S (2004) An anatomical study of the levator veli palatini and superior constrictor with special reference to their nerve supply. Surg Radiol Anat 26:100–105CrossRefPubMed Shimokawa T, Yi S-Q, Izumi A, Ru F, Akita K, Sato T, Tanaka S (2004) An anatomical study of the levator veli palatini and superior constrictor with special reference to their nerve supply. Surg Radiol Anat 26:100–105CrossRefPubMed
20.
Zurück zum Zitat Bergman RA, Thompson SA, Afifi AK, Saadeh FA (1988) Compendium of human anatomic variation: text, atlas, and world literature. Urban & Schwarzenberg, Baltimore Bergman RA, Thompson SA, Afifi AK, Saadeh FA (1988) Compendium of human anatomic variation: text, atlas, and world literature. Urban & Schwarzenberg, Baltimore
21.
Zurück zum Zitat Shimada K, Yokoi A, Ozawa H, Kitagawa T, Tezuka M (1991) Observation of the petropharyngeal muscle in Japanese. Anat Anz 173:193–198PubMed Shimada K, Yokoi A, Ozawa H, Kitagawa T, Tezuka M (1991) Observation of the petropharyngeal muscle in Japanese. Anat Anz 173:193–198PubMed
22.
Zurück zum Zitat Suzuki HK, Briggs DD, Pyle HR, Walloch BO, Wilson MC (1960) Observations on an unusual case of bilateral platysmo-pharyngeal muscular interconnections in man. Anat Rec 137:93–97CrossRefPubMed Suzuki HK, Briggs DD, Pyle HR, Walloch BO, Wilson MC (1960) Observations on an unusual case of bilateral platysmo-pharyngeal muscular interconnections in man. Anat Rec 137:93–97CrossRefPubMed
Metadaten
Titel
Classification of pharyngeal muscles based on innervations from glossopharyngeal and vagus nerves in human
verfasst von
Yujiro Sakamoto
Publikationsdatum
01.12.2009
Verlag
Springer-Verlag
Erschienen in
Surgical and Radiologic Anatomy / Ausgabe 10/2009
Print ISSN: 0930-1038
Elektronische ISSN: 1279-8517
DOI
https://doi.org/10.1007/s00276-009-0516-9

Weitere Artikel der Ausgabe 10/2009

Surgical and Radiologic Anatomy 10/2009 Zur Ausgabe

Akuter Schwindel: Wann lohnt sich eine MRT?

28.04.2024 Schwindel Nachrichten

Akuter Schwindel stellt oft eine diagnostische Herausforderung dar. Wie nützlich dabei eine MRT ist, hat eine Studie aus Finnland untersucht. Immerhin einer von sechs Patienten wurde mit akutem ischämischem Schlaganfall diagnostiziert.

Screening-Mammografie offenbart erhöhtes Herz-Kreislauf-Risiko

26.04.2024 Mammografie Nachrichten

Routinemäßige Mammografien helfen, Brustkrebs frühzeitig zu erkennen. Anhand der Röntgenuntersuchung lassen sich aber auch kardiovaskuläre Risikopatientinnen identifizieren. Als zuverlässiger Anhaltspunkt gilt die Verkalkung der Brustarterien.

S3-Leitlinie zu Pankreaskrebs aktualisiert

23.04.2024 Pankreaskarzinom Nachrichten

Die Empfehlungen zur Therapie des Pankreaskarzinoms wurden um zwei Off-Label-Anwendungen erweitert. Und auch im Bereich der Früherkennung gibt es Aktualisierungen.

Fünf Dinge, die im Kindernotfall besser zu unterlassen sind

18.04.2024 Pädiatrische Notfallmedizin Nachrichten

Im Choosing-Wisely-Programm, das für die deutsche Initiative „Klug entscheiden“ Pate gestanden hat, sind erstmals Empfehlungen zum Umgang mit Notfällen von Kindern erschienen. Fünf Dinge gilt es demnach zu vermeiden.

Update Radiologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.