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forced expiratory flow at 75% of FVC exhaled相关文献:
Association of fine particulate matter air pollution and its constituents with lung function: The China Pulmonary Health study.
Yang T, Chen R, Gu X, Xu J, Yang L, Zhao J, Zhang X, Bai C, Kang J, Ran P, Shen H, Wen F, Huang K, Chen Y, Sun T, Shan G, Lin Y, Wu S, Zhu J, Wang R, Shi Z, Xu Y, Ye X, Song Y, Wang Q, Zhou Y, Ding L, Yang T, Yao W, Guo Y, Xiao F, Lu Y, Peng X, Zhang B, Xiao D, Wang Z, Zhang H, Bu X, Zhang X, An L, Zhang S, Cao Z, Zhan Q, Yang Y, Liang L, Cao B, Dai H, van Donkelaar A, Martin RV, Wu T, He J, Kan H, Wang C; China Pulmonary Health Study Group..
Environ Int. 2021 Nov;156:106707. doi: 10.1016/j.envint.2021.106707. Epub 2021 Jun 26.
PMID:34182192
Fractional exhaled nitric oxide and forced expiratory volume in 1 second/forced vital capacity have predictive value of asthma exacerbation in Korean school children.
Kang MG, Yoon SA, Sim JH, Woo SI.
Asia Pac Allergy. 2020 Jan 28;10(1):e7. doi: 10.5415/apallergy.2020.10.e7. eCollection 2020 Jan.
PMID:32099829
Clinical Implications of Having Reduced Mid Forced Expiratory Flow Rates (FEF25-75), Independently of FEV1, in Adult Patients with Asthma.
Riley CM, Wenzel SE, Castro M, Erzurum SC, Chung KF, Fitzpatrick AM, Gaston B, Israel E, Moore WC, Bleecker ER, Calhoun WJ, Jarjour NN, Busse WW, Peters SP, Teague WG, Sorkness R, Holguin F.
PLoS One. 2015 Dec 30;10(12):e0145476. doi: 10.1371/journal.pone.0145476. eCollection 2015.
PMID:26717486
Forced expiratory flow between 25% and 75% of vital capacity and FEV1/forced vital capacity ratio in relation to clinical and physiological parameters in asthmatic children with normal FEV1 values.
Simon MR, Chinchilli VM, Phillips BR, Sorkness CA, Lemanske RF Jr, Szefler SJ, Taussig L, Bacharier LB, Morgan W; Childhood Asthma Research and Education Network of the National Heart, Lung, and Blood Institute.
J Allergy Clin Immunol. 2010 Sep;126(3):527-34.e1-8. doi: 10.1016/j.jaci.2010.05.016. Epub 2010 Jul 16.
PMID:20638110
Dupilumab sustains lung function improvements in patients with moderate-to-severe asthma.
Papi A, Castro M, Corren J, Pavord ID, Tohda Y, Altincatal A, Pandit-Abid N, Laws E, Akinlade B, Mannent LP, Gall R, Jacob-Nara JA, Deniz Y, Rowe PJ, Lederer DJ, Hardin M.
Respir Med. 2024 Apr;224:107535. doi: 10.1016/j.rmed.2024.107535. Epub 2024 Jan 23.
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Systematic Review of Exposure to Polycyclic Aromatic Hydrocarbons and Obstructive Lung Disease.
Nwaozuzu CC, Partick-Iwuanyanwu KC, Abah SO.
J Health Pollut. 2021 Aug 17;11(31):210903. doi: 10.5696/2156-9614-11.31.210903. eCollection 2021 Sep.
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Body composition and respiratory outcomes in children: a population-based prospective cohort study.
Wu T, Santos S, Quezada-Pinedo HG, Vernooij MW, Jaddoe VWV, Klein S, Duijts L, Oei EHG.
Thorax. 2024 Apr 15;79(5):448-456. doi: 10.1136/thorax-2023-220014.
PMID:38182426
Effect of exercise-induced bronchoconstriction on the configuration of the maximal expiratory flow-volume curve in adults with asthma.
Klimenko O, Luu P, Dominelli P, Noggle N, Petrics G, Haverkamp HC.
Physiol Rep. 2023 Feb;11(4):e15614. doi: 10.14814/phy2.15614.
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Reference equations for the interpretation of forced expiratory and plethysmographic measurements in infants.
Lu Z, Foong RE, Kowalik K, Moraes TJ, Dubeau A, Lefebvre D, Davis SD, Balkovec S, Becker A, Mandhane P, Turvey SE, Lou W, Sears MR, Ratjen F, Subbarao P.
Pediatr Pulmonol. 2018 Jul;53(7):907-916. doi: 10.1002/ppul.24063. Epub 2018 May 23.
PMID:29790670
Independent and combined associations of multiple-heavy-metal exposure with lung function: a population-based study in US children.
Chen Y, Zhao A, Li R, Kang W, Wu J, Yin Y, Tong S, Li S, Chen J.
Environ Geochem Health. 2023 Jul;45(7):5213-5230. doi: 10.1007/s10653-023-01565-0. Epub 2023 Apr 25.
PMID:37097600
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