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Page 1
Showing results for nasal dp
Search for Nasa DP instead (1 results)
Noninvasive High-Frequency Oscillatory Ventilation vs Nasal Continuous Positive Airway Pressure vs Nasal Intermittent Positive Pressure Ventilation as Postextubation Support for Preterm Neonates in China: A Randomized Clinical Trial.
Zhu X, Qi H, Feng Z, Shi Y, De Luca D; Nasal Oscillation Post-Extubation (NASONE) Study Group. Zhu X, et al. JAMA Pediatr. 2022 Jun 1;176(6):551-559. doi: 10.1001/jamapediatrics.2022.0710. JAMA Pediatr. 2022. PMID: 35467744 Free PMC article. Clinical Trial.
It is unknown whether noninvasive high-frequency oscillatory ventilation (NHFOV) is more efficacious than nasal continuous positive airway pressure (NCPAP) or nasal intermittent positive pressure ventilation (NIPPV) in preterm neonates after their first extubation. …
It is unknown whether noninvasive high-frequency oscillatory ventilation (NHFOV) is more efficacious than nasal continuous positive a …
High-Flow Nasal Cannula in Pediatric Critical Asthma.
Gates RM, Haynes KE, Rehder KJ, Zimmerman KO, Rotta AT, Miller AG. Gates RM, et al. Respir Care. 2021 Aug;66(8):1240-1246. doi: 10.4187/respcare.08740. Epub 2021 May 11. Respir Care. 2021. PMID: 33975902 Free article.
BACKGROUND: High-flow nasal cannula (HFNC) has been used in the treatment of pediatric asthma, although high-quality data comparing HFNC to aerosol mask nebulizer are lacking. ...
BACKGROUND: High-flow nasal cannula (HFNC) has been used in the treatment of pediatric asthma, although high-quality data comparing H …
SARS-CoV-2 replication in airway epithelia requires motile cilia and microvillar reprogramming.
Wu CT, Lidsky PV, Xiao Y, Cheng R, Lee IT, Nakayama T, Jiang S, He W, Demeter J, Knight MG, Turn RE, Rojas-Hernandez LS, Ye C, Chiem K, Shon J, Martinez-Sobrido L, Bertozzi CR, Nolan GP, Nayak JV, Milla C, Andino R, Jackson PK. Wu CT, et al. Cell. 2023 Jan 5;186(1):112-130.e20. doi: 10.1016/j.cell.2022.11.030. Epub 2022 Dec 2. Cell. 2023. PMID: 36580912 Free PMC article.
How SARS-CoV-2 penetrates the airway barrier of mucus and periciliary mucins to infect nasal epithelium remains unclear. Using primary nasal epithelial organoid cultures, we found that the virus attaches to motile cilia via the ACE2 receptor. ...Our work suggests th …
How SARS-CoV-2 penetrates the airway barrier of mucus and periciliary mucins to infect nasal epithelium remains unclear. Using primar …
The placenta harbors a unique microbiome.
Aagaard K, Ma J, Antony KM, Ganu R, Petrosino J, Versalovic J. Aagaard K, et al. Sci Transl Med. 2014 May 21;6(237):237ra65. doi: 10.1126/scitranslmed.3008599. Sci Transl Med. 2014. PMID: 24848255 Free PMC article.
Identified taxa and their gene carriage patterns were compared to other human body site niches, including the oral, skin, airway (nasal), vaginal, and gut microbiomes from nonpregnant controls. We characterized a unique placental microbiome niche, composed of nonpathogenic …
Identified taxa and their gene carriage patterns were compared to other human body site niches, including the oral, skin, airway (nasal
Allergic inflammatory memory in human respiratory epithelial progenitor cells.
Ordovas-Montanes J, Dwyer DF, Nyquist SK, Buchheit KM, Vukovic M, Deb C, Wadsworth MH 2nd, Hughes TK, Kazer SW, Yoshimoto E, Cahill KN, Bhattacharyya N, Katz HR, Berger B, Laidlaw TM, Boyce JA, Barrett NA, Shalek AK. Ordovas-Montanes J, et al. Nature. 2018 Aug;560(7720):649-654. doi: 10.1038/s41586-018-0449-8. Epub 2018 Aug 22. Nature. 2018. PMID: 30135581 Free PMC article.
Allergic inflammation can develop from persistent activation(5) of type 2 immunity(6) in the upper airway, resulting in chronic rhinosinusitis, which ranges in severity from rhinitis to severe nasal polyps(7). Basal cell hyperplasia is a hallmark of severe disease(7-9), bu …
Allergic inflammation can develop from persistent activation(5) of type 2 immunity(6) in the upper airway, resulting in chronic rhinosinusit …
SARS-CoV-2 Receptor ACE2 Is an Interferon-Stimulated Gene in Human Airway Epithelial Cells and Is Detected in Specific Cell Subsets across Tissues.
Ziegler CGK, Allon SJ, Nyquist SK, Mbano IM, Miao VN, Tzouanas CN, Cao Y, Yousif AS, Bals J, Hauser BM, Feldman J, Muus C, Wadsworth MH 2nd, Kazer SW, Hughes TK, Doran B, Gatter GJ, Vukovic M, Taliaferro F, Mead BE, Guo Z, Wang JP, Gras D, Plaisant M, Ansari M, Angelidis I, Adler H, Sucre JMS, Taylor CJ, Lin B, Waghray A, Mitsialis V, Dwyer DF, Buchheit KM, Boyce JA, Barrett NA, Laidlaw TM, Carroll SL, Colonna L, Tkachev V, Peterson CW, Yu A, Zheng HB, Gideon HP, Winchell CG, Lin PL, Bingle CD, Snapper SB, Kropski JA, Theis FJ, Schiller HB, Zaragosi LE, Barbry P, Leslie A, Kiem HP, Flynn JL, Fortune SM, Berger B, Finberg RW, Kean LS, Garber M, Schmidt AG, Lingwood D, Shalek AK, Ordovas-Montanes J; HCA Lung Biological Network. Electronic address: lung-network@humancellatlas.org; HCA Lung Biological Network. Ziegler CGK, et al. Cell. 2020 May 28;181(5):1016-1035.e19. doi: 10.1016/j.cell.2020.04.035. Epub 2020 Apr 27. Cell. 2020. PMID: 32413319 Free PMC article.
We identify ACE2 and TMPRSS2 co-expressing cells within lung type II pneumocytes, ileal absorptive enterocytes, and nasal goblet secretory cells. Strikingly, we discovered that ACE2 is a human interferon-stimulated gene (ISG) in vitro using airway epithelial cells and exte …
We identify ACE2 and TMPRSS2 co-expressing cells within lung type II pneumocytes, ileal absorptive enterocytes, and nasal goblet secr …
Masses of the Nose, Nasal Cavity, and Nasopharynx in Children.
Rodriguez DP, Orscheln ES, Koch BL. Rodriguez DP, et al. Radiographics. 2017 Oct;37(6):1704-1730. doi: 10.1148/rg.2017170064. Radiographics. 2017. PMID: 29019747 Review.
A wide range of masses develop in the nose, nasal cavity, and nasopharynx in children. These lesions may arise from the nasal ala or other structures of the nose, including the mucosa covering any surface of the nasal cavity, the cartilaginous o …
A wide range of masses develop in the nose, nasal cavity, and nasopharynx in children. These lesions may arise from the nas
Altered TMPRSS2 usage by SARS-CoV-2 Omicron impacts infectivity and fusogenicity.
Meng B, Abdullahi A, Ferreira IATM, Goonawardane N, Saito A, Kimura I, Yamasoba D, Gerber PP, Fatihi S, Rathore S, Zepeda SK, Papa G, Kemp SA, Ikeda T, Toyoda M, Tan TS, Kuramochi J, Mitsunaga S, Ueno T, Shirakawa K, Takaori-Kondo A, Brevini T, Mallery DL, Charles OJ; CITIID-NIHR BioResource COVID-19 Collaboration; Genotype to Phenotype Japan (G2P-Japan) Consortium; Ecuador-COVID19 Consortium; Bowen JE, Joshi A, Walls AC, Jackson L, Martin D, Smith KGC, Bradley J, Briggs JAG, Choi J, Madissoon E, Meyer KB, Mlcochova P, Ceron-Gutierrez L, Doffinger R, Teichmann SA, Fisher AJ, Pizzuto MS, de Marco A, Corti D, Hosmillo M, Lee JH, James LC, Thukral L, Veesler D, Sigal A, Sampaziotis F, Goodfellow IG, Matheson NJ, Sato K, Gupta RK. Meng B, et al. Nature. 2022 Mar;603(7902):706-714. doi: 10.1038/s41586-022-04474-x. Epub 2022 Feb 1. Nature. 2022. PMID: 35104837 Free PMC article.
Replication was similar for Omicron and Delta virus isolates in human nasal epithelial cultures. However, in lung cells and gut cells, Omicron demonstrated lower replication. ...
Replication was similar for Omicron and Delta virus isolates in human nasal epithelial cultures. However, in lung cells and gut cells …
Diagnosis of tuberculosis through breath test: A systematic review.
Saktiawati AMI, Putera DD, Setyawan A, Mahendradhata Y, van der Werf TS. Saktiawati AMI, et al. EBioMedicine. 2019 Aug;46:202-214. doi: 10.1016/j.ebiom.2019.07.056. Epub 2019 Aug 8. EBioMedicine. 2019. PMID: 31401197 Free PMC article.
METHODS: To estimate the diagnostic accuracy of breath test with electronic-nose and other devices against culture or other tests for TB, we screened multiple databases until January 6, 2019. FINDINGS: We included fourteen studies, with 1715 subjects in the analysis. The p …
METHODS: To estimate the diagnostic accuracy of breath test with electronic-nose and other devices against culture or other tests for …
524 results