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J C Passey - One of the best experts on this subject based on the ideXlab platform.
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preoperative computed tomographic evaluation of Inferior Nasal Concha hypertrophy and its role in deciding surgical treatment modality in patients with deviated Nasal septum
International Journal of Morphology, 2009Co-Authors: Sumit Mrig, A K Agarwal, J C PasseyAbstract:Un tabique Nasal desviado esta asociado con una hipertrofia compensatoria de la Concha Nasal Inferior del lado contra lateral. En el pasado se realizaba septoplastia convencional para el tabique desviado, lo que mejoraraba la permeabilidad en el lado de la desviacion, pero agravaba esta en el lado opuesto, debido a la reacomodacion del tabique en el plano mediano. En el presente estudio se evaluo en 50 pacientes la composicion anatomica de las Conchas Nasales Inferiores, basado en la exploracion a traves de tomografia computarizada, y de esta manera ayudar al otorrinolaringologo a determinar si es necesario o no, anadir la plastia de la Concha Nasal Inferior al procedimiento de septoplastia estandar.
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preoperative computed tomographic evaluation of Inferior Nasal Concha hypertrophy and its role in deciding surgical treatment modality in patients with deviated Nasal septum evaluacion preoperatoria con tomografia computada de la hipertrofia de la co
2009Co-Authors: Sumit Mrig, A K Agarwal, J C PasseyAbstract:SUMMARY : Deviated Nasal septum is associated with compensatory hypertrophy of the Inferior Nasal Concha on the contralateralside. In the past conventional septoplasty was done for the deviated septum, which would improve the patency on the side of dev iation butwould worsen it on the opposite side due to reallocation of the septum to the midline. The present study of 50 patients unfolds theanatomical composition of the Inferior Nasal Concha based on the computed tomographic scan and help the otolaryngologist to det erminewhether to add turbinoplasty to standard septoplasty procedure or not. KEY WORDS: Deviated Nasal septum; Inferior Nasal Concha; Contralateral hypertrophy. INTRODUCTION In patients with Nasal obstruction and anterior septaldeviation to one side, a common finding is a varying degree ofconcomitant or compensatory Inferior Nasal Concha hypertrophyin the side of the nose opposite the major septal deviation. Adetailed description of the Nasal Conchas bones was first givenby Casserius (1609) who recognized that three are usually presentand consist of true bone, not cartilage (Pratt, 1915; Dixon, 1949)have described the common association of deviated Nasal septumand contralateral Inferior Nasal Concha enlargement.The Nasal Conchas exists as three and sometimes fourbilateral extensions form the lateral wall of the Nasal cavity.At inspiration up to two-thirds of upper airway resistance isproduced by the anterior tip of the Inferior Nasal Concha in theregion of the internal Nasal valve. In a recent study on theNasal valve Haight & Cole (1983) confirmed that “the greaterportion of the Nasal resistance is situated at the level of theanterior end of the Inferior Nasal Concha”.Of the three Nasal Conchas the Inferior Nasal Concha isthe most susceptible to enlargement. It is seen that the InferiorNasal Concha hypertrophy is usually observed in septaldeviation (Compensatory hypertrophy) and in allergic or va-somotor rhinitis (Lai & Corey, 1983; Li
Qian Yang - One of the best experts on this subject based on the ideXlab platform.
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HE stain of csIII from the right side of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) Panoramic scanning of csIII: (a) Nasal septum, (b) superior Nasal meatus, (c) middle Nasal meatus, (d) Inferior Nasal meatus, and (e) common Nasal meatus. (B, C) Lymphatic tissue located on the dorsal medial Inferior Nasal Concha (asterisk). (D, E) Lymphoid follicle under the mucosal epithelium of the dorsal Inferior Nasal Concha (asterisk). (F) Columnar epithelium and mucous glands (arrow) on the surface of the superior Nasal Concha. (G) Pseudostratified columnar ciliated epithelium and intraepithelial lymphocytes (arrow).
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Anatomical structure of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) The position and structure of the Bama minipigs Nasal cavity: (a) Inferior Nasal Concha, (b) superior Nasal Concha, (c) middle Nasal Concha, and (d) hard palate. (B) The position of cross-sections in Bama minipigs Nasal cavity. (C) Diagrams of the five cross-sections (I–V) of the Bama minipigs Nasal cavity: (a) Nasal septum, (b) Nasal meatus, (c) Inferior Nasal Concha, (d) superior Nasal meatus, (e) middle Nasal meatus, (f) Inferior Nasal meatus, (h) middle Nasal Concha, and (g) nasopharyngeal meatus.
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HE stain of csIV from the right side of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) Panoramic scanning of csIV: (a) Nasal septum, (b) superior Nasal meatus, (c) middle Nasal meatus, (d) Inferior Nasal meatus, and (e) common Nasal meatus. (B–D) Lymphoid follicle under the mucosal epithelium of the dorsal medial Inferior Nasal Concha (asterisk), FAE consisted of pseudostratified columnar ciliated epithelium and simple epithelium. (E, F) Lymphoid follicle under the mucosal epithelium of the dorsolateral Nasal cavity. (G) Lymphatic tissue (asterisk) located on the dorsal Nasal cavity near the lumens lined by respiratory epithelium. (H) Pseudostratified columnar ciliated epithelium and intraepithelial lymphocytes (arrow).
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HE stain of csII from the right side of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) Panoramic scanning of csII: (a) Nasal septum and (b) Inferior Nasal Concha. (B, C) Lymphoid follicle under the mucosal epithelium on the dorsal side of the Inferior Nasal Concha (asterisk). (D–G) Transition from stratified squamous epithelium to pseudostratified columnar ciliated epithelium: (D) columnar epithelium consisting of goblet cells, (E) thick stratified squamous epithelium, (F) columnar epithelium, and (G) thin stratified squamous epithelium.
Sumit Mrig - One of the best experts on this subject based on the ideXlab platform.
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preoperative computed tomographic evaluation of Inferior Nasal Concha hypertrophy and its role in deciding surgical treatment modality in patients with deviated Nasal septum
International Journal of Morphology, 2009Co-Authors: Sumit Mrig, A K Agarwal, J C PasseyAbstract:Un tabique Nasal desviado esta asociado con una hipertrofia compensatoria de la Concha Nasal Inferior del lado contra lateral. En el pasado se realizaba septoplastia convencional para el tabique desviado, lo que mejoraraba la permeabilidad en el lado de la desviacion, pero agravaba esta en el lado opuesto, debido a la reacomodacion del tabique en el plano mediano. En el presente estudio se evaluo en 50 pacientes la composicion anatomica de las Conchas Nasales Inferiores, basado en la exploracion a traves de tomografia computarizada, y de esta manera ayudar al otorrinolaringologo a determinar si es necesario o no, anadir la plastia de la Concha Nasal Inferior al procedimiento de septoplastia estandar.
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preoperative computed tomographic evaluation of Inferior Nasal Concha hypertrophy and its role in deciding surgical treatment modality in patients with deviated Nasal septum evaluacion preoperatoria con tomografia computada de la hipertrofia de la co
2009Co-Authors: Sumit Mrig, A K Agarwal, J C PasseyAbstract:SUMMARY : Deviated Nasal septum is associated with compensatory hypertrophy of the Inferior Nasal Concha on the contralateralside. In the past conventional septoplasty was done for the deviated septum, which would improve the patency on the side of dev iation butwould worsen it on the opposite side due to reallocation of the septum to the midline. The present study of 50 patients unfolds theanatomical composition of the Inferior Nasal Concha based on the computed tomographic scan and help the otolaryngologist to det erminewhether to add turbinoplasty to standard septoplasty procedure or not. KEY WORDS: Deviated Nasal septum; Inferior Nasal Concha; Contralateral hypertrophy. INTRODUCTION In patients with Nasal obstruction and anterior septaldeviation to one side, a common finding is a varying degree ofconcomitant or compensatory Inferior Nasal Concha hypertrophyin the side of the nose opposite the major septal deviation. Adetailed description of the Nasal Conchas bones was first givenby Casserius (1609) who recognized that three are usually presentand consist of true bone, not cartilage (Pratt, 1915; Dixon, 1949)have described the common association of deviated Nasal septumand contralateral Inferior Nasal Concha enlargement.The Nasal Conchas exists as three and sometimes fourbilateral extensions form the lateral wall of the Nasal cavity.At inspiration up to two-thirds of upper airway resistance isproduced by the anterior tip of the Inferior Nasal Concha in theregion of the internal Nasal valve. In a recent study on theNasal valve Haight & Cole (1983) confirmed that “the greaterportion of the Nasal resistance is situated at the level of theanterior end of the Inferior Nasal Concha”.Of the three Nasal Conchas the Inferior Nasal Concha isthe most susceptible to enlargement. It is seen that the InferiorNasal Concha hypertrophy is usually observed in septaldeviation (Compensatory hypertrophy) and in allergic or va-somotor rhinitis (Lai & Corey, 1983; Li
Jingjing Yang - One of the best experts on this subject based on the ideXlab platform.
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HE stain of csIII from the right side of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) Panoramic scanning of csIII: (a) Nasal septum, (b) superior Nasal meatus, (c) middle Nasal meatus, (d) Inferior Nasal meatus, and (e) common Nasal meatus. (B, C) Lymphatic tissue located on the dorsal medial Inferior Nasal Concha (asterisk). (D, E) Lymphoid follicle under the mucosal epithelium of the dorsal Inferior Nasal Concha (asterisk). (F) Columnar epithelium and mucous glands (arrow) on the surface of the superior Nasal Concha. (G) Pseudostratified columnar ciliated epithelium and intraepithelial lymphocytes (arrow).
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Anatomical structure of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) The position and structure of the Bama minipigs Nasal cavity: (a) Inferior Nasal Concha, (b) superior Nasal Concha, (c) middle Nasal Concha, and (d) hard palate. (B) The position of cross-sections in Bama minipigs Nasal cavity. (C) Diagrams of the five cross-sections (I–V) of the Bama minipigs Nasal cavity: (a) Nasal septum, (b) Nasal meatus, (c) Inferior Nasal Concha, (d) superior Nasal meatus, (e) middle Nasal meatus, (f) Inferior Nasal meatus, (h) middle Nasal Concha, and (g) nasopharyngeal meatus.
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HE stain of csIV from the right side of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) Panoramic scanning of csIV: (a) Nasal septum, (b) superior Nasal meatus, (c) middle Nasal meatus, (d) Inferior Nasal meatus, and (e) common Nasal meatus. (B–D) Lymphoid follicle under the mucosal epithelium of the dorsal medial Inferior Nasal Concha (asterisk), FAE consisted of pseudostratified columnar ciliated epithelium and simple epithelium. (E, F) Lymphoid follicle under the mucosal epithelium of the dorsolateral Nasal cavity. (G) Lymphatic tissue (asterisk) located on the dorsal Nasal cavity near the lumens lined by respiratory epithelium. (H) Pseudostratified columnar ciliated epithelium and intraepithelial lymphocytes (arrow).
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HE stain of csII from the right side of the Bama minipigs Nasal cavity.
2017Co-Authors: Jingjing Yang, Lei Dai, Qian YangAbstract:(A) Panoramic scanning of csII: (a) Nasal septum and (b) Inferior Nasal Concha. (B, C) Lymphoid follicle under the mucosal epithelium on the dorsal side of the Inferior Nasal Concha (asterisk). (D–G) Transition from stratified squamous epithelium to pseudostratified columnar ciliated epithelium: (D) columnar epithelium consisting of goblet cells, (E) thick stratified squamous epithelium, (F) columnar epithelium, and (G) thin stratified squamous epithelium.
A K Agarwal - One of the best experts on this subject based on the ideXlab platform.
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preoperative computed tomographic evaluation of Inferior Nasal Concha hypertrophy and its role in deciding surgical treatment modality in patients with deviated Nasal septum
International Journal of Morphology, 2009Co-Authors: Sumit Mrig, A K Agarwal, J C PasseyAbstract:Un tabique Nasal desviado esta asociado con una hipertrofia compensatoria de la Concha Nasal Inferior del lado contra lateral. En el pasado se realizaba septoplastia convencional para el tabique desviado, lo que mejoraraba la permeabilidad en el lado de la desviacion, pero agravaba esta en el lado opuesto, debido a la reacomodacion del tabique en el plano mediano. En el presente estudio se evaluo en 50 pacientes la composicion anatomica de las Conchas Nasales Inferiores, basado en la exploracion a traves de tomografia computarizada, y de esta manera ayudar al otorrinolaringologo a determinar si es necesario o no, anadir la plastia de la Concha Nasal Inferior al procedimiento de septoplastia estandar.
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preoperative computed tomographic evaluation of Inferior Nasal Concha hypertrophy and its role in deciding surgical treatment modality in patients with deviated Nasal septum evaluacion preoperatoria con tomografia computada de la hipertrofia de la co
2009Co-Authors: Sumit Mrig, A K Agarwal, J C PasseyAbstract:SUMMARY : Deviated Nasal septum is associated with compensatory hypertrophy of the Inferior Nasal Concha on the contralateralside. In the past conventional septoplasty was done for the deviated septum, which would improve the patency on the side of dev iation butwould worsen it on the opposite side due to reallocation of the septum to the midline. The present study of 50 patients unfolds theanatomical composition of the Inferior Nasal Concha based on the computed tomographic scan and help the otolaryngologist to det erminewhether to add turbinoplasty to standard septoplasty procedure or not. KEY WORDS: Deviated Nasal septum; Inferior Nasal Concha; Contralateral hypertrophy. INTRODUCTION In patients with Nasal obstruction and anterior septaldeviation to one side, a common finding is a varying degree ofconcomitant or compensatory Inferior Nasal Concha hypertrophyin the side of the nose opposite the major septal deviation. Adetailed description of the Nasal Conchas bones was first givenby Casserius (1609) who recognized that three are usually presentand consist of true bone, not cartilage (Pratt, 1915; Dixon, 1949)have described the common association of deviated Nasal septumand contralateral Inferior Nasal Concha enlargement.The Nasal Conchas exists as three and sometimes fourbilateral extensions form the lateral wall of the Nasal cavity.At inspiration up to two-thirds of upper airway resistance isproduced by the anterior tip of the Inferior Nasal Concha in theregion of the internal Nasal valve. In a recent study on theNasal valve Haight & Cole (1983) confirmed that “the greaterportion of the Nasal resistance is situated at the level of theanterior end of the Inferior Nasal Concha”.Of the three Nasal Conchas the Inferior Nasal Concha isthe most susceptible to enlargement. It is seen that the InferiorNasal Concha hypertrophy is usually observed in septaldeviation (Compensatory hypertrophy) and in allergic or va-somotor rhinitis (Lai & Corey, 1983; Li