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Vallate Papillae

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1. Vallate Papillae

Vallate Papillae Vallate Papillae Toggle navigation Brain Head & Neck Chest Endocrine Abdomen Musculoskeletal Skin Infectious Disease Hematology & Oncology Cohorts Diagnostics Emergency Findings Procedures Prevention & Management Pharmacy Resuscitation Trauma Emergency Procedures Ultrasound Cardiovascular Emergencies Lung Emergencies Infectious Disease Pediatrics Neurologic Emergencies Skin Exposure Miscellaneous Abuse Cancer Administration 4 Vallate Papillae Vallate Papillae Aka: Vallate (...) Papillae , Circumvallate Papillae II. Anatomy: Images Lewis (1918) Gray's Anatomy 20th ed (in at or ) Images: Related links to external sites (from Bing) These images are a random sampling from a Bing search on the term "Vallate Papillae." Click on the image (or right click) to open the source website in a new browser window. Related Studies (from Trip Database) Ontology: Structure of vallate papillae of tongue (C0226965) Concepts Body Part, Organ, or Organ Component ( T023 ) SnomedCT 368729003 English

2018 FP Notebook

2. Vallate Papillae

Vallate Papillae Vallate Papillae Toggle navigation Brain Head & Neck Chest Endocrine Abdomen Musculoskeletal Skin Infectious Disease Hematology & Oncology Cohorts Diagnostics Emergency Findings Procedures Prevention & Management Pharmacy Resuscitation Trauma Emergency Procedures Ultrasound Cardiovascular Emergencies Lung Emergencies Infectious Disease Pediatrics Neurologic Emergencies Skin Exposure Miscellaneous Abuse Cancer Administration 4 Vallate Papillae Vallate Papillae Aka: Vallate (...) Papillae , Circumvallate Papillae II. Anatomy: Images Lewis (1918) Gray's Anatomy 20th ed (in at or ) Images: Related links to external sites (from Bing) These images are a random sampling from a Bing search on the term "Vallate Papillae." Click on the image (or right click) to open the source website in a new browser window. Related Studies (from Trip Database) Ontology: Structure of vallate papillae of tongue (C0226965) Concepts Body Part, Organ, or Organ Component ( T023 ) SnomedCT 368729003 English

2015 FP Notebook

3. Anatomical and morphological aspects of papillae, epithelium, muscles, and glands of rats’ tongue: Light, scanning, and transmission electron microscopic study Full Text available with Trip Pro

that are different from the tongue of other rodents consequently to allow identifying their species-specific features.Our findings have shown the features of the tongue structure of white laboratory rats at micro-, macro-, and ultrascopic levels. The data analysis revealed that mucous membrane of the tongue contains a large number of papillae, such as fungiform, filiform, foliate, vallate, and multifilamentary papillae. Each has a different shape, size, and location. The tongue's morphological feature consists (...) Anatomical and morphological aspects of papillae, epithelium, muscles, and glands of rats’ tongue: Light, scanning, and transmission electron microscopic study The purpose of this paper is to describe the research results of the morphological structure of white laboratory rats' tongue at the macro-, micro-, and ultrastructural levels by scanning, light, and transmission electron microscopy.Our results show that the tongue of these rats has a number of unique morphological features

2017 Interventional medicine & applied science

4. Scanning Electron Microscopic Study of the Developing Vallate Papillaein the Korean Native Goat (Capra hircus) Full Text available with Trip Pro

Scanning Electron Microscopic Study of the Developing Vallate Papillaein the Korean Native Goat (Capra hircus) The purpose of the present study was to investigate the morphological characteristics of the developing vallate papillae (VP) of Korean native goats using scanning electron microscopy. In prenatal development of the VP, primordia of the VP were observed and the moat was shallowly spread in 60-day-old fetuses. The moat of the vallate papillae was shallowly spread and still

2016 Development & Reproduction

5. Three-Dimensional Aspects of the Lingual Papillae and Their Connective Tissue Cores in the Tongue of Rats: A Scanning Electron Microscope Study Full Text available with Trip Pro

and multifilamentary shape of the CTCs was revealed. Fungiform papillae were reported on the rostral and middle regions covered by a squamous epithelium. After the removal of the epithelium, the shape of a volcano with the taste orifice at its top was noted. Foliate papillae were composed of five pairs of epithelial folds situated on the lateral-caudal margin of the tongue. After the removal of the epithelium, they were shown to be limited by thin laminar projections. The vallate papilla with an oval shape (...) Three-Dimensional Aspects of the Lingual Papillae and Their Connective Tissue Cores in the Tongue of Rats: A Scanning Electron Microscope Study The aim of the present study was to describe the tridimensional morphological characteristics of the lingual papillae and their connective tissue cores (CTCs) in Sprague Dawley rats. Four types of papillae were reported on the dorsal surface. Filiform papillae were distributed on the tongue surface and after epithelial maceration a conic

2014 The Scientific World Journal

6. Biological aspects of the tongue morphology of wild-captive WWCPS rats: a histological, histochemical and ultrastructural study Full Text available with Trip Pro

of papillae and were divided into bud-shaped fungiform papillae, a single vallate papilla surrounded by an incomplete papillary groove and foliate papillae, which were a well-formed and composed of several pairs of folds divided by longitudinal grooves. In the posterior lingual glands (mucoserous and serous), acidic sulphated mucin-secreting cells gave a strong AB pH 2.5 positive reaction, and a positive reaction with the AB pH 1.0 stain for acidic carboxylated mucin. Double AB/PAS staining showed (...) differences between the male and female WWCPS rat tongues. There was a median groove approximately 1 cm long in the apex of the tongue that faded caudally. The intermolar prominence was clearly marked in the distal part of the lingual body. Lingual mechanical papillae located on the surface of the tongue formed four subtypes based on their shape: small filiform papillae, giant filiform papillae, thin elongated filiform papillae and wide filiform papillae. Gustatory papillae formed the second group

2018 Anatomical science international

7. Intermittent hypoxia causes mandibular growth retardation and macroglossia in growing rats. (Abstract)

%) and length (tongue apex to vallate papillae, +3.5 %) of the tongue to the mandible were significantly greater in the IH group than in the N group.IH induced dentofacial morphologic discrepancies in growing rats.Copyright © 2017 American Association of Orthodontists. Published by Elsevier Inc. All rights reserved.

2017 American journal of orthodontics and dentofacial orthopedics

8. Head and Neck Embryology

of the second branchial arch, supplies the taste buds of the anterior two thirds of the tongue, except the vallate papillae. The glossopharyngeal nerve, the nerve of the third branchial arch, supplies the taste buds in the vallate papillae and most of the posterior one third of the tongue mucosal surface. The superior laryngeal branch of the vagus nerve, the nerve of the fourth branchial arch, innervates a small patch of the tongue mucosal surface anterior to the epiglottis. All intrinsic and extrinsic (...) by a midline elevation that appears behind the tuberculum impar, which is a large brachial eminence of the third and fourth arches. This eminence later becomes larger than the second arch, to become continuous with the body of the tongue. The site of union of body and base is delineated with a V-shaped sulcus called sulcus terminalis . Around the fifth and seventh weeks of gestation, the muscles forming the occipital myotomes migrate anteriorly. In the later stage of development, papillae differentiate

2014 eMedicine Surgery

9. Morphology of the dorsal lingual papillae in the lesser mouse deer, Tragulus javanicus. Full Text available with Trip Pro

Morphology of the dorsal lingual papillae in the lesser mouse deer, Tragulus javanicus. The dorsal lingual papillae of the lesser mouse deer were studied morphologically using light and scanning electron microscopy. Four types of papillae, filiform, fungiform, vallate and foliate, were observed. Filiform papillae consisted of larger main papillae with smaller secondary papillae on their anterolateral aspects. Secondary papillae were well distributed over the anterior two-thirds of the tongue (...) , but were very rare or absent in the posterior third. Fungiform papillae were distributed among the filiform papillae, being larger and more abundant on the tip of the tongue. Vallate papillae were round-flat or long-flat, surrounded by a prominent circular groove and a thin annular pad. An important finding was the presence of distinct and prominent foliate papillae on the posterolateral sides of the tongue. Keratinisation of the covering stratified squamous epithelium was relatively weak. Taste buds

1995 Journal of anatomy

10. Unilateral innervation of guinea pig vallate taste buds as determined by glossopharyngeal neurectomy and HRP neural tracing. Full Text available with Trip Pro

Unilateral innervation of guinea pig vallate taste buds as determined by glossopharyngeal neurectomy and HRP neural tracing. The innervation pattern by primary afferent nerve fibres and the neurotrophic effect on taste cells were investigated in the guinea pig vallate taste bud by means of glossopharyngeal neurectomy and horseradish peroxidase (HRP) or wheat germ agglutinin-horseradish peroxidase (WGA-HRP) tracing. In the glossopharyngeal neurectomy study, taste buds in the vallate papillae (...) . In the neural tracing study, HRP or WGA-HRP was injected into the proximal end of the right glossopharyngeal nerve, near the jugular foramen. After a survival time of 24 h, the vallate papillae were sectioned and examined by light and electron microscopy. Light microscopy revealed that the HRP or WGA-HRP-labelled fibres innervated the vallate taste buds of the injected side. Most of the taste cells in the buds were labelled with HRP or WGA-HRP reaction products from the basal to the apical region

1996 Journal of anatomy

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