购买
下载掌阅APP,畅读海量书库
立即打开
畅读海量书库
扫码下载掌阅APP

参考文献

[1]邬堂春.职业卫生与职业医学[M].北京:人民卫生出版社,2017.

[2]刘芳炜.职业性变态反应性肺泡炎发病机制研究进展[J].中国工业医学杂志.2016,29 (3): 198-201.

[3]刘喜房,赵晓明.职业性棉尘病的预防[J].劳动保护,2018,(2): 86-87.

[4]袁志清,袁永辉,郝冬生,等.棉花检验人员呼吸系统健康状况调查[J].工业卫生与职业病,2014,40 (3):194-199.

[5]邱菊,董亮,曹殿凤,等.职业性哮喘患者诱导痰中免疫学指标特征分析[J].中国职业医学,2015,42(5): 535-538.

[6]王晓群,邵华,贾强,等.甲苯二异氰酸酯所致职业性哮喘的机制[J].中国工业医学杂志,2016,29 (6):429-432.

[7]刘钊,徐应军,李宝平,等.锡、铁、锑、钡及其化合物等致尘肺沉着病研究进展[J].职业与健康,2015,31 (1):125-127.

[8]张伊莉,陈育全,刘薇薇,等.金属粉尘肺沉着病研究进展[J].中国工业医学杂志,2016,29 (1): 53-57.

[9]蔡柏蔷.慢性阻塞性肺疾病诊断、处理和预防全球策略(2017GOLD报告)解读[J].国际呼吸杂志,2017,37 (1): 6-17.

[10]徐辉,蔡宇星,陈凯,等.血浆组织蛋白酶S和胱抑素C作为慢阻肺急性加重的潜在生物标志物的临床研究[J].临床肺科杂志,2018,23 (4): 678-681.

[11]刘星,冯旰珠.生物标志物在慢性阻塞性肺疾病急性加重期研究进展[J].临床肺科杂志,2017,22 (5):934-937.

[12]戴飘飘,刘婷,柳明坤,等.慢性阻塞性肺疾病相关血清生物学标志物[J].中国组织化学与细胞化学杂志,2016,25 (5): 463-466.

[13]刘尚军,李西西,罗英男,等.硬金属粉尘职业暴露危害的研究进展[J].实用预防医学,2016,23 (4):509-513.

[14]严蓉,阮艳君,孙道远.硬金属肺病的研究进展[J].中华劳动卫生职业病杂志,2016,34 (3): 228-231.

[15]代静泓,苗立云,肖永龙,等.硬金属致巨细胞间质性肺炎一例报道及文献复习[J].中华结核和呼吸杂志,2009,32: 493-496.

[16]许天培.螺旋藻粉尘致职业性变态反应性肺泡炎1例报告[J].职业卫生与病伤,2004,19 (4): 257.

[17]郭英.被误会的工人和被误诊的棉尘病[N].中国安全生产报,2009-11-19 (7).

[18]黄燕,张瑞丹,杨丽莉,等.1例制药企业职业性变应原致职业性哮喘死亡病例分析[J].中国职业医学,2014,41 (3): 295-296.

[19]蔡丽娜.油漆配料工异氰酸酯职业性哮喘1例[J].工业卫生与职业病,2008,34 (2): 121.

[20]胡炜燚.铁末肺沉着病一例报道及其诊断思考[J].中华劳动卫生职业病杂志,2016,34 (4): 293-294.

[21]周瑜,朱建全,徐琪,等.职业性慢性甲醛中毒性阻塞性肺病1例分析[J].中国职业医学,2013,40(2): 124-127.

[22]李颖,肖雄斌,肖云龙,等.职业性硬金属肺病一例并文献复习[J].环境与职业医学,2016,33 (1):73-76.

[23] LIU F, WENG D, CHEN Y, et al. Depletion of CD4 + CD25 + Foxp3 + regulatory T cells with anti-CD25 antibody may exacerbate the 1, 3-β-glucan-induced lung inflammatory response in mice [J]. Arch Toxicol, 2011, 85 (11): 1383-1394.

[24] SHINOHARA T, TSUJI S, OKANO Y, et al. Elevated levels of intelectin-1, a pathogen-binding lectin, in the BAL fluid of patients with chronic eosinophilic pneumonia and hypersensitivity pneumonitis. Intern Med. 2018, 57 (24): 3507-3514.

[25] SOUMAGNE T, DALPHIN JC. Current and emerging techniques for the diagnosis of hypersensitivity pneumonitis [J]. Expert Rev Respir Med, 2018, 12 (6): 493-507.

[26] NUKUI Y, MIYAZAKI Y, MASUO M, et al. Periostin as a predictor of prognosis in chronic bird-related hypersensitivity pneumonitis [J]. Allergol Int, 2019, 68 (3): 363-369.

[27] DABA WAMI S, CHERCOS D H, DESSIE A, et al. Cotton dust exposure and self-reported respiratory symptoms among textile factory workers in Northwest Ethiopia: a comparative cross-sectional study [J]. Journal of Occupational Medicine & Toxicology, 2018, 13 (1): 13.

[28] HOMSPM AV, LOKOSSOU VK, SCHLUNSSEN V, et al. Cotton dust exposure and respiratory disorders among textile workers at a textile company in the southern part of Benin [J]. Int J Environ Res Public Health. 2016, 13 (9): 895.

[29] ER M, EMRI SA, DEMIR AU, et al. Byssinosis and COPD rates among factory workers manufacturing hemp and jute [J]. Int J Occup Med Environ Health, 2016, 29 (1): 55-68.

[30] TARLO SM, LEMIERE C. Occupational asthma [J]. N Engl J Med, 2014, 370 (7): 640-649.

[31] KENYON NJ, MORRISSEY BM, SCHIVO M, et al. Occupational asthma [J]. Clin Rev Allergy Immunol, 2012, 43 (1-2): 3-13.

[32] KEFELI M, AKPOLAT I, ZEREN H, et al. Clinical, histopathological and mineralogical analysis findings of an unusual case of pneumoconiosis [J]. Turk Patoloji Derg, 2012, 28 (2): 184-188.

[33] TANAKA J, MORIYAMA H, TERADA M, et al. An observational study of giant cell interstitial pneumonia and lung fibrosis in hard metal lung disease [J]. BMJ Open, 2014, 4 (3): e004407.

[34] HUR GY, PARK HS. Biological and genetic markers in occupational asthma [J]. Curr Allergy Asthma Rep, 2015, 15 (1): 488. /pEGcWqXXhMiM1HLwb7a0OBHTlSDCxJeLMzSxsrXKqWq0MYg73vJJV6rMsFJPHNC

点击中间区域
呼出菜单
上一章
目录
下一章
×