[1]刘强和, 伍伟景. 鼻源性一氧化氮的生理和病理作用. 国外医学耳鼻咽喉科学分册, 2004, 28(2): 72-74 [2]Lefevere L, Willems T, Lindberg S, et al. Nasal nitric oxide. Acta Otorhinolaryngol Belg, 2000, 54(3): 271-280 [3]刘传合, 王天友, 陈育智. 从美国胸科学会指南看呼出气一氧化氮测定的临床应用. 2012, 30(8): 707-710 [4]American Thoracic Society, European Respiratory Society. ATS/ERS recommendations for standardized procedures for the online and offline measurement of exhaled lower respiratory nitric oxide and nasal nitric oxid. Am J Respir Crit Care Med, 2005, 171(8): 912-930 [5]Ratjen F, Kavuk I, Gartig S, et al. Airway nitric oxide in infants with acute wheezy bronchitis. Pediatr Allergy Immunol, 2000, 11(4): 230-235 [6]Daya H, Wei Q, Mcclean P, et al. Nasal nitric oxide in children: a novel measurement technique and normal values. Laryngoscope, 2002, 112(10): 1831-1835 [7]龚春华, 刘芳, 乔荆. 2岁以下婴幼儿鼻腔呼出气一氧化氮水平检测及其临床意义. 海南医学, 2017, 28(12): 1956-1958 [8]Struben VM, Wieringa MH, Mantingh CJ, et al. Nasal NO: normal values in children age 6 through to 17 years. Eur Respir J, 2005, 26(3): 453-457 [9]You SH, Zhang J, Bai Y, et al. Normal values of nasal NO and exhaled NO in young Chinese people aged 9-22 years. World J Otorhinolaryngol Head Neck Surg, 2016, 2(1): 22-27 [10]Menou A, Babeanu D, Paruit HN, et al. Normal values of offline exhaled and nasal nitric oxide in healthy children and teens using chemiluminescence. J Breath Res, 2017, 11(3): 36008 [11]Simpson K, Brodlie M. How to use nasal nitric oxide in a child with suspected primary ciliary dyskinesia. Arch Dis Child Educ Pract Ed, 2017, 102(6): 314-318 [12]Maniscalco M, Sofia M. Nasal nitric oxide in experimental rhinovirus infection. J Allergy Clin Immunol, 2005, 115(1): 207, 207-208 [13]Corbelli R, Bringolf IB, Amacher A, et al. Nasal nitric oxide measurements to screen children for primary ciliary dyskinesia. Chest, 2004, 126(4): 1054-1059 [14]Fokkens W J, Lund V J, Mullol J, et al. European Position Paper on Rhinosinusitis and Nasal Polyps 2012. Rhinol Suppl, 2012, 23: 3, 1-298 [15]Collins SA, Gove K, Walker W, et al. Nasal nitric oxide screening for primary ciliary dyskinesia: systematic review and meta-analysis. Eur Respir J, 2014, 44(6): 1589-1599 [16]Shapiro AJ, Josephson M, Rosenfeld M, et al. Accuracy of Nasal Nitric Oxide Measurement as a Diagnostic Test for Primary Ciliary Dyskinesia. A Systematic Review and Meta-analysis. Ann Am Thorac Soc, 2017, 14(7): 1184-1196 [17]Barbato A, Frischer T, Kuehni CE, et al. Primary ciliary dyskinesia: a consensus statement on diagnostic and treatment approaches in children. Eur Respir J, 2009, 34(6): 1264-1276 [18]Boon M, Meyts I, Proesmans M, et al. Diagnostic accuracy of nitric oxide measurements to detect primary ciliary dyskinesia. Eur J Clin Invest, 2014, 44(5): 477-485 [19]Marthin JK, Philipsen MC, Rosthoj S, et al. Infant nasal nitric oxide over time: natural evolution and impact of respiratory tract infection. Eur Respir J, 2018, 51(6). pii: 1702503 [20]Zysman-Colman ZN, Kaspy KR, Alizadehfar R, et al. Nasal Nitric Oxide in Primary Immunodeficiency and Primary Ciliary Dyskinesia: Helping to Distinguish Between Clinically Similar Diseases. J Clin Immunol, 2019, 39(2): 216-224 [21]Keen C, Olina C, Edentoft A, et al. Airway nitric oxide in patients with cystic fibrosis is associated with pancreatic function, Pseudomonas infection, and polyunsaturated fatty acids. Chest, 2007, 131(6): 1857-1864 [22]Marthin JK, Nielsen KG. Hand-held tidal breathing nasal nitric oxide measurement--a promising targeted case-finding tool for the diagnosis of primary ciliary dyskinesia. PLoS One, 2013, 8(2): e57262 [23]Bommarito L, Guida G, Heffler E, et al. Nasal nitric oxide concentration in suspected chronic rhinosinusitis. Ann Allergy Asthma Immunol, 2008, 101(4): 358-362 [24]Phillips PS, Sacks R, Marcells GN, et al. Nasal nitric oxide and sinonasal disease: a systematic review of published evidence. Otolaryngol Head Neck Surg, 2011, 144(2): 159-169 [25]Aanal JF, Flores P, Rami J, et al. Nasal nitric oxide concentration in paranasal sinus inflammatory diseases. Eur Respir J, 1999, 13(2): 307-312 [26]Maniscalco M, Fuschillo S, Gaudiosi C, et al. Exhaled and nasal nitric oxide measurement in the evaluation of chronic cough. Nitric Oxide, 2019, 83: 19-23 [27]Cho SW, Kim DW, Kim JW, et al. Classification of chronic rhinosinusitis according to a nasal polyp and tissue eosinophilia: limitation of current classification system for Asian population. Asia Pac Allergy, 2017, 7(3): 121-130 [28]Hanazawa T, Antuni JD, Kharitonov SA, et al. Intranasal administration of eotaxin increases nasal eosinophils and nitric oxide in patients with allergic rhinitis. J Allergy Clin Immunol, 2000, 105(1 Pt 1): 58-64 [29]Howarth PH, Persson C, Meltzer EO, et al. Objective monitoring of nasal airway inflammation in rhinitis. J AllergyClin Immunol, 2005, 115(3 Suppl 1): S414-441 [30]Martin U, Bryden K, Devoy M, et al. Increased levels of exhaled nitric oxide during nasal and oral breathing in subjects with seasonal rhinitis. J Allergy Clin Immunol, 1996, 97(3): 768-772 [31]Kharitonov S, Alving K, Barnes PJ. Exhaled and nasal nitric oxide measurements: recommendations. The European Respiratory Society Task Force. Eur Respir J, 1997, 10(7): 1683-1693 [32]Wang PP, Wang GX, Ge WT, et al. Nasal nitric oxide in allergic rhinitis in children and its relationship to severity and treatment. Allergy Asthma Clin Immunol, 2017, 13: 20 [33]Struben VM, Wieringa MH, Feenstra L, et al. Nasal nitric oxide and nasal allergy. Allergy, 2006, 61(6): 665-670 [34]Kharitonov SA, Rajakulasingam K, Oconnor B, et al. Nasal nitric oxide is increased in patients with asthma and allergic rhinitis and may be modulated by nasal glucocorticoids. J Allergy Clin Immunol, 1997, 99(1 Pt 1): 58-64 [35]Boot JD, de Kam ML, Mascelli MA, et al. Nasal nitric oxide: longitudinal reproducibility and the effects of a nasal allergen challenge in patients with allergic rhinitis. Allergy, 2007, 62(4): 378-384 [36]Arnal JF, Didier A, Rami J, et al. Nasal nitric oxide is increased in allergic rhinitis. Clin Exp Allergy, 1997, 27(4): 358-362 [37]Ren L, Zhang W, Zhang Y, et al. Nasal Nitric Oxide Is Correlated With Nasal Patency and Nasal Symptoms. Allergy Asthma Immunol Res, 2019, 11(3): 367-380 [38]Takanara D, Kono T, Takeno S, et al. Nasal nitric oxide in the inferior turbinate surface decreases with intranasal steroids in allergic rhinitis: A prospective study. Auris Nasus Larynx, 2019, 46(4): 507-512 [39]Seidman MD, Gurgel RK, Lin SY, et al. Clinical practice guideline: allergic rhinitis executive summary. Otolaryngol Head Neck Surg, 2015, 152(2): 197-206 [40]郑佩燕, 陈希, 郭梓君. 哮喘并过敏性鼻炎儿童血清总IgE、外周血嗜酸性粒细胞、过敏原致敏程度与呼出气一氧化氮间的关系. 实用医学杂志, 2017, 33(15): 2501-2505 [41]Williamson PA, Vaidyanathan S, Clearie K, et al. Relationship between fractional exhaled nitric oxide and nasal nitric oxide in airways disease. Ann Allergy Asthma Immunol, 2010, 105(2): 162-167 [42]Heffler E, Pizzimenti S, Badiu I, et al. Nasal nitric oxide is a marker of poor asthma control. J Breath Res, 2013, 7(2): 26009 [43]Duong-Quy S, Vu-Minh T, Hua-Huy T, et al. Study of nasal exhaled nitric oxide levels in diagnosis of allergic rhinitis in subjects with and without asthma. J Asthma Allergy, 2017, 10: 75-82 |