All Relations between olfactory and nasal

Publication Sentence Publish Date Extraction Date Species
Haisheng Liu, Zhili Ni, Yetao Chen, Dong Wang, Yan Qi, Qiuhang Zhang, Shijie Wan. Olfactory route for cerebrospinal fluid drainage into the cervical lymphatic system in a rabbit experimental model. Neural regeneration research. vol 7. issue 10. 2015-03-04. PMID:25737700. at the nasal mucosa, a lymphatic network was identified near the olfactory nerves, which crossed the nasopharyngeal region and finally emptied into the superficial and deep cervical lymph nodes. 2015-03-04 2023-08-13 rabbit
Haisheng Liu, Zhili Ni, Yetao Chen, Dong Wang, Yan Qi, Qiuhang Zhang, Shijie Wan. Olfactory route for cerebrospinal fluid drainage into the cervical lymphatic system in a rabbit experimental model. Neural regeneration research. vol 7. issue 10. 2015-03-04. PMID:25737700. these results suggested that cerebrospinal fluid drained from the subarachnoid space along the olfactory nerves to nasal lymphatic vessels, which in turn, emptied into the cervical lymph nodes. 2015-03-04 2023-08-13 rabbit
Hugo Macedo-Ramos, Andre F Batista, Alvaro Carrier-Ruiz, Lucineia Alves, Silvana Allodi, Victor T Ribeiro-Resende, Lucia M Teixeira, Wagner Baetas-da-Cru. Evidence of involvement of the mannose receptor in the internalization of Streptococcus pneumoniae by Schwann cells. BMC microbiology. vol 14. 2015-03-03. PMID:25085553. some authors claim that strains of s. pneumoniae, which fail to survive in the bloodstream, can enter the brain directly from the nasal cavity by axonal transport through the olfactory and/or trigeminal nerves. 2015-03-03 2023-08-13 Not clear
Jinmei Xu, Qi Xiang, Junhui Su, Penghui Yang, Qihao Zhang, Zhijian Su, Fei Xiao, Yadong Huan. Evaluation of the safety and brain-related tissues distribution characteristics of TAT-HaFGF via intranasal administration. Biological & pharmaceutical bulletin. vol 37. issue 7. 2015-02-21. PMID:24989006. the expression of olfactory marker protein (omp) was observed with immunohistochemical staining, which showed no altered expression in the sensory neurons of the nasal epithelium. 2015-02-21 2023-08-13 Not clear
Thomas P Eiting, Timothy D Smith, J Blair Perot, Elizabeth R Dumon. The role of the olfactory recess in olfactory airflow. The Journal of experimental biology. vol 217. issue Pt 10. 2015-01-26. PMID:24577441. the olfactory recess - a blind pocket at the back of the nasal airway - is thought to play an important role in mammalian olfaction by sequestering air outside of the main airstream, thus giving odorants time to re-circulate. 2015-01-26 2023-08-12 Not clear
Thomas P Eiting, Timothy D Smith, J Blair Perot, Elizabeth R Dumon. The role of the olfactory recess in olfactory airflow. The Journal of experimental biology. vol 217. issue Pt 10. 2015-01-26. PMID:24577441. here we used a computer model of the nasal cavity from a bat (carollia perspicillata) to test the hypothesis that a larger olfactory recess improves olfactory airflow. 2015-01-26 2023-08-12 Not clear
Kenichi Tanaka, Yuka Yamamoto, Hiroshi Hoshikawa, Yoshihiro Nishiyam. A case of olfactory neuroblastoma detected by (18)F-FDG PET/CT. Clinical nuclear medicine. vol 39. issue 7. 2015-01-19. PMID:24662664. olfactory neuroblastoma is an uncommon malignant neoplasm of the superior nasal cavity. 2015-01-19 2023-08-12 Not clear
Jean-Claude Stamegna, Stéphane D Girard, Antoine Veron, Gilles Sicard, Michel Khrestchatisky, François Feron, François S Roma. A unique method for the isolation of nasal olfactory stem cells in living rats. Stem cell research. vol 12. issue 3. 2015-01-09. PMID:24681208. a unique method for the isolation of nasal olfactory stem cells in living rats. 2015-01-09 2023-08-12 human
Jean-Claude Stamegna, Stéphane D Girard, Antoine Veron, Gilles Sicard, Michel Khrestchatisky, François Feron, François S Roma. A unique method for the isolation of nasal olfactory stem cells in living rats. Stem cell research. vol 12. issue 3. 2015-01-09. PMID:24681208. while ethical and technical issues, associated with embryonic, fetal and neural stem cells, limit the translation to clinical applications, the nasal stem cells identified in the human olfactory mucosa stand as a promising candidate for stem cell-based therapies. 2015-01-09 2023-08-12 human
Jean-Claude Stamegna, Stéphane D Girard, Antoine Veron, Gilles Sicard, Michel Khrestchatisky, François Feron, François S Roma. A unique method for the isolation of nasal olfactory stem cells in living rats. Stem cell research. vol 12. issue 3. 2015-01-09. PMID:24681208. however, preclinical studies based on autologous transplantation of rodent olfactory stem cells are impeded because of the narrow opening of the nasal cavity. 2015-01-09 2023-08-12 human
Jean-Claude Stamegna, Stéphane D Girard, Antoine Veron, Gilles Sicard, Michel Khrestchatisky, François Feron, François S Roma. A unique method for the isolation of nasal olfactory stem cells in living rats. Stem cell research. vol 12. issue 3. 2015-01-09. PMID:24681208. this study describes for the first time a methodology allowing the derivation of rat nasal cells in a way that is suitable for studying the effects of autologous transplantation of any cell type present in the olfactory mucosa in a wide variety of rat models. 2015-01-09 2023-08-12 human
Duc T Nguyen, Phi-Linh Nguyen-Thi, Guillaume Gauchotte, Fabien Arous, Jean M Vignaud, Roger Jankowsk. Predictors of respiratory epithelial adenomatoid hamartomas of the olfactory clefts in patients with nasal polyposis. The Laryngoscope. vol 124. issue 11. 2015-01-07. PMID:24925105. predictors of respiratory epithelial adenomatoid hamartomas of the olfactory clefts in patients with nasal polyposis. 2015-01-07 2023-08-13 Not clear
Bhavna, Shadab Md, Mushir Ali, Rashid Ali, Aseem Bhatnagar, Sanjula Baboota, Javed Al. Donepezil nanosuspension intended for nose to brain targeting: In vitro and in vivo safety evaluation. International journal of biological macromolecules. vol 67. 2015-01-05. PMID:24705169. donepezil loaded chitosan nanosuspension is a potential new delivery system for treatment of alzheimer's disease, when transported via olfactory nasal pathway to the brain. 2015-01-05 2023-08-13 rat
Ruey-Hwang Chou, Cheng-You Lu, Jia-Rong Fan, Yung-Luen Yu, Woei-Cherng Shy. The potential therapeutic applications of olfactory ensheathing cells in regenerative medicine. Cell transplantation. vol 23. issue 4-5. 2015-01-05. PMID:24816451. oecs guide growing olfactory axons from the neurons of the nasal cavity olfactory mucosa to the olfactory bulb to connect both the peripheral nervous system (pns) and central nervous system (cns). 2015-01-05 2023-08-13 Not clear
Jerry L Campbell, Melvin E Andersen, Harvey J Clewel. A hybrid CFD-PBPK model for naphthalene in rat and human with IVIVE for nasal tissue metabolism and cross-species dosimetry. Inhalation toxicology. vol 26. issue 6. 2015-01-02. PMID:24666369. at the noael of 0.1 ppm, the regional gas dosimetry ratio (rgdr) based on naphthalene concentration was 0.18 for the dorsal olfactory region; however, the rgdr rises to 5.4 when based on the normalized amount metabolized due to the lower of expression of cyp isozymes in the nasal epithelium of primates and humans. 2015-01-02 2023-08-12 human
Joseph A Cichocki, Gregory J Smith, Ryan Mendoza, Alan R Buckpitt, Laura S Van Winkle, John B Morri. Sex differences in the acute nasal antioxidant/antielectrophilic response of the rat to inhaled naphthalene. Toxicological sciences : an official journal of the Society of Toxicology. vol 139. issue 1. 2014-12-28. PMID:24563378. naphthalene is a nasal carcinogen, inducing respiratory adenomas in male and olfactory neuroblastomas in female rats, respectively. 2014-12-28 2023-08-12 rat
Joseph A Cichocki, Gregory J Smith, Ryan Mendoza, Alan R Buckpitt, Laura S Van Winkle, John B Morri. Sex differences in the acute nasal antioxidant/antielectrophilic response of the rat to inhaled naphthalene. Toxicological sciences : an official journal of the Society of Toxicology. vol 139. issue 1. 2014-12-28. PMID:24563378. to examine sex differences in the acute nasal response to naphthalene, male and female f344 rats were nose-only exposed to 0, 1, 3, 10, or 30 ppm naphthalene vapor for 4 or 6 h. following exposure, respiratory/transitional mucosa (rtm) and olfactory mucosa (om) were isolated and analyzed for markers of oxidant/electrophilic stress and/or toxicity, including reduced/oxidized glutathione levels (gsh/gssg), mrna levels of electrophile-responsive genes, and epithelial cytoxicity (as measured by membrane permeability to ethidium homodimer-1). 2014-12-28 2023-08-12 rat
S N Thornton, G S Padzys, M Trabalo. Sexual odor discrimination and physiological profiles in adult male rats after a neonatal, short term, reversible nasal obstruction. Brain research bulletin. vol 104. 2014-12-28. PMID:24769524. the present study was designed to examine behavioral responses (interpreted as preferences) to olfactory cues (nest bedding odor and odors of estrous and anestrus females) in adult male rats after they had a short term reversible, bilateral, nasal obstruction (rbno) as developing rat pups. 2014-12-28 2023-08-13 rat
Carmen Entrala-Bernal, Cristina Montes-Castillo, Maria Jesus Alvarez-Cubero, Carmen Gutiérrez-Alcántara, Francisco Fernandez-Rosado, Esther Martinez-Espίn, Carolina Sánchez-Malo, Piedad Santiago-Fernánde. Genetic diagnosis of idiopathic hypogonadotrophic hypogonadism: a new point mutation in the KAL2 gene. Hormones (Athens, Greece). vol 13. issue 2. 2014-12-16. PMID:24776628. kallmann syndrome (ks) is a genetic disease of embryonic development which is characterized by the association of hypogonadotropic hypogonadism (hh) due to a deficit of the gonadotropin-releasing hormone (gnrh) and a hypo/anosmia (including a hypoplasia of the nasal sulcus and agenesis of the olfactory bulbs). 2014-12-16 2023-08-13 Not clear
Dalia Ibrahim, Nobuaki Nakamuta, Kazumi Taniguchi, Yoshio Yamamoto, Kazuyuki Taniguch. Histological and lectin histochemical studies on the olfactory and respiratory mucosae of the sheep. The Journal of veterinary medical science. vol 76. issue 3. 2014-12-08. PMID:24200894. these findings indicate that the glycohistochemical characteristics of the free borders of both olfactory and respiratory epithelia are similar to each other, suggesting that secretions from the bowman's glands and those of the goblet cells and mucous nasal glands are partially exchanged between the surface of two epithelia to contribute the functions of the respiratory epithelium and the olfactory receptor cells, respectively. 2014-12-08 2023-08-12 Not clear