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In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy

BACKGROUND: Confocal endomicroscopy (CEM) is an endoscopic technology permitting in vivo cellular and subcellular imaging. CEM aids real‐time clinical assessment and diagnosis of various gastrointestinal diseases in people. CEM allows in vivo characterization of small intestinal mucosal morphology i...

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Autores principales: Sharman, M.J., Bacci, B., Whittem, T., Mansfield, C.S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4895453/
https://www.ncbi.nlm.nih.gov/pubmed/24597616
http://dx.doi.org/10.1111/jvim.12332
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author Sharman, M.J.
Bacci, B.
Whittem, T.
Mansfield, C.S.
author_facet Sharman, M.J.
Bacci, B.
Whittem, T.
Mansfield, C.S.
author_sort Sharman, M.J.
collection PubMed
description BACKGROUND: Confocal endomicroscopy (CEM) is an endoscopic technology permitting in vivo cellular and subcellular imaging. CEM aids real‐time clinical assessment and diagnosis of various gastrointestinal diseases in people. CEM allows in vivo characterization of small intestinal mucosal morphology in dogs. OBJECTIVE: To determine the feasibility of CEM to evaluate gastric mucosal morphology in dogs and to characterize the appearance in healthy dogs. ANIMALS: Fourteen clinically healthy research colony dogs. METHODS: Experimental study. Under general anesthesia, dogs underwent standard endoscopic evaluation and CEM of the gastric mucosa. In the initial 6 dogs, fluorescent contrast was provided with the fluorophore acriflavine (0.05% solution), applied topically. Subsequently, 8 dogs were assessed using a combination of fluorescein (10% solution, 15 mg/kg IV), followed by acriflavine administered topically. For each fluorophore, a minimum of 5 sites were assessed. RESULTS: Confocal endomicroscopy provided high quality in vivo histologically equivalent images of the gastric mucosa, but reduced flexibility of the endoscope tip limited imaging of the cranial stomach in some dogs. Intravenous administration of fluorescein allowed assessment of cellular cytoplasmic and microvasculature features. Topical application of acriflavine preferentially stained cellular nucleic acids, allowing additional evaluation of nuclear morphology. Identification of Helicobacter‐like organisms was possible in 13 dogs. CONCLUSION AND CLINICAL IMPORTANCE: Confocal endomicroscopy provides in vivo images allowing assessment of gastric mucosal morphology during endoscopy, potentially permitting real‐time diagnosis of gastrointestinal disease.
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spelling pubmed-48954532016-06-22 In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy Sharman, M.J. Bacci, B. Whittem, T. Mansfield, C.S. J Vet Intern Med Standard Articles BACKGROUND: Confocal endomicroscopy (CEM) is an endoscopic technology permitting in vivo cellular and subcellular imaging. CEM aids real‐time clinical assessment and diagnosis of various gastrointestinal diseases in people. CEM allows in vivo characterization of small intestinal mucosal morphology in dogs. OBJECTIVE: To determine the feasibility of CEM to evaluate gastric mucosal morphology in dogs and to characterize the appearance in healthy dogs. ANIMALS: Fourteen clinically healthy research colony dogs. METHODS: Experimental study. Under general anesthesia, dogs underwent standard endoscopic evaluation and CEM of the gastric mucosa. In the initial 6 dogs, fluorescent contrast was provided with the fluorophore acriflavine (0.05% solution), applied topically. Subsequently, 8 dogs were assessed using a combination of fluorescein (10% solution, 15 mg/kg IV), followed by acriflavine administered topically. For each fluorophore, a minimum of 5 sites were assessed. RESULTS: Confocal endomicroscopy provided high quality in vivo histologically equivalent images of the gastric mucosa, but reduced flexibility of the endoscope tip limited imaging of the cranial stomach in some dogs. Intravenous administration of fluorescein allowed assessment of cellular cytoplasmic and microvasculature features. Topical application of acriflavine preferentially stained cellular nucleic acids, allowing additional evaluation of nuclear morphology. Identification of Helicobacter‐like organisms was possible in 13 dogs. CONCLUSION AND CLINICAL IMPORTANCE: Confocal endomicroscopy provides in vivo images allowing assessment of gastric mucosal morphology during endoscopy, potentially permitting real‐time diagnosis of gastrointestinal disease. John Wiley and Sons Inc. 2014-03-05 2014 /pmc/articles/PMC4895453/ /pubmed/24597616 http://dx.doi.org/10.1111/jvim.12332 Text en Copyright © 2014 by the American College of Veterinary Internal Medicine
spellingShingle Standard Articles
Sharman, M.J.
Bacci, B.
Whittem, T.
Mansfield, C.S.
In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy
title In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy
title_full In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy
title_fullStr In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy
title_full_unstemmed In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy
title_short In Vivo Histologically Equivalent Evaluation of Gastric Mucosal Topologic Morphology in Dogs By using Confocal Endomicroscopy
title_sort in vivo histologically equivalent evaluation of gastric mucosal topologic morphology in dogs by using confocal endomicroscopy
topic Standard Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4895453/
https://www.ncbi.nlm.nih.gov/pubmed/24597616
http://dx.doi.org/10.1111/jvim.12332
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