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HP Practice Questions

Hypersensitivity pneumonitis | HP0-M35 boot camp and test Questions

  • 1.

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    Okamoto, T. et al. Nationwide epidemiological survey of continual hypersensitivity pneumonitis in Japan. Respir. Investig. 51, 191–199 (2013).

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    Raghu, G. et al. prognosis of hypersensitivity pneumonitis in adults: an respectable ATS/JRS/ALAT medical follow guideline. Am. J. Respir. Crit. Care. Med. 202, e36–e69 (2020).

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    Morell, F. et al. persistent hypersensitivity pneumonitis in patients diagnosed with idiopathic pulmonary fibrosis: a prospective case-cohort study. Lancet Respir. Med. 1, 685–694 (2013).

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    Salisbury, M. L. et al. Hypersensitivity pneumonitis: radiologic phenotypes are associated with distinct survival time and pulmonary characteristic trajectory. Chest 155, 699–711 (2019). This look at demonstrates that fibrotic features on HRCT are associated with worse results in HP.

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    Fernandez Perez, E. R. et al. settling on an inciting antigen is linked to superior survival in sufferers with persistent hypersensitivity pneumonitis. Chest 144, 1644–1651 (2013). This study highlights the important role of antigen identification to enhance survival in chronic HP.

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    Morisset, J. et al. Use of mycophenolate mofetil or azathioprine for the management of chronic hypersensitivity pneumonitis. Chest 151, 619–625 (2017). This examine suggests that using immunosuppressants can stabilize lung characteristic and in the reduction of prednisone dose in patients treated for continual HP.

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    Tsutsui, T. et al. The volume of avian antigen in family unit dirt predicts the prognosis of persistent chook-linked hypersensitivity pneumonitis. Ann. Am. Thorac. Soc. 12, 1013–1021 (2015).

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    Asai, N., Kaneko, N., Ohkuni, Y., Aoshima, M. & Kawamura, Y. Familial summer season-category hypersensitivity pneumonitis: a evaluate of 25 families and 50 instances in Japan. Intern. Med. fifty five, 279–283 (2016). This evaluate of familial HP in Japan provides powerful facts that genetic factors contribute to the building of HP.

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    Newton, C. A. et al. Telomere-linked lung fibrosis is diagnostically heterogeneous however uniformly progressive. Eur. Respir. J. forty eight, 1710–1720 (2016).

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    Falfan-Valencia, R. et al. Genetic susceptibility to multicase hypersensitivity pneumonitis is linked to the TNF-238 GG genotype of the promoter vicinity and HLA-DRB1*04 bearing HLA haplotypes. Respir. Med. 108, 211–217 (2014).

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    Camarena, A. et al. PSMB8 (LMP7) but no longer PSMB9 (LMP2) gene polymorphisms are associated to pigeon breeder’s hypersensitivity pneumonitis. Respir. Med. 104, 889–894 (2010).

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    Aquino-Galvez, A. et al. Transporter linked to antigen processing (faucet) 1 gene polymorphisms in sufferers with hypersensitivity pneumonitis. Exp. Mol. Pathol. 84, 173–177 (2008).

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    Ley, B. et al. The MUC5B promoter polymorphism and telomere length in sufferers with chronic hypersensitivity pneumonitis: an observational cohort-handle study. Lancet Respir. Med. 5, 639–647 (2017). This look at indicates that a MUC5B promoter polymorphism is linked to elevated possibility for chronic HP and reduced survival.

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    Reed, C. E. & Barbee, R. A. Pigeon-Breeders’ lung: a newly accompanied interstitial pulmonary ailment. JAMA 193, 261–265 (1965).

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    Choy, A. C., Patterson, R., Ray, A. H. & Roberts, M. Hypersensitivity pneumonitis in a raptor handler and a wild chicken fancier. Ann. allergy asthma Immunol. seventy four, 437–441 (1995).

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    Merget, R., Sander, I., Ewig, S., Sennekamp, J. & Bruening, T. Consort hypersensitivity pneumonitis. Eur. Respir. J. 33, 1223–1225 (2009).

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    Meyer, F. J., Bauer, P. C. & Costabel, U. Feather wreath lung: chasing a dead bird. Eur. Respir. J. 9, 1323–1324 (1996).

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