Han B, Zheng R, Zeng H, Wang S, Sun K, Chen R, Li L, Wei W, He J. Cancer incidence and mortality in China, 2022. J Natl Cancer Center. 2024. https://doi.org/10.1016/j.jncc.2024.01.006.
Langiano N, Fiorelli S, Deana C, Baroselli A, Bignami EG, Matellon C, Pompei L, Tornaghi A, Piccioni F, Orsetti R. Airway management in anesthesia for thoracic surgery: a “real life” observational study. J Thorac Dis. 2019;11(8):3257.
PubMed PubMed Central Google Scholar
Ng A, Swanevelder J. Hypoxaemia associated with one-lung anaesthesia: new discoveries in ventilation and perfusion. Oxford University Press; 2011. p. 761–3.
Ehrenfeld JM, Mulvoy W, Sandberg WS. Performance comparison of right-and left-sided double-lumen tubes among infrequent users. J Cardiothor Vasc Anesth. 2010;24(4):598–601.
Campos JH, Feider A. Hypoxia during one-lung ventilationa review and update. J Cardiothor Vasc Anesth. 2018;32(5):2330–8.
Visser WA, Liem TH, Gielen MJ. Arterial oxygenation during one-lung ventilation: combined versus general anesthesia. Anesth Analg. 1999;89(5):1332.
Ehrenfeld JM, Funk LM, Van Schalkwyk J, Merry AF, Sandberg WS, Gawande A. The incidence of hypoxemia during surgery: evidence from two institutions. Can J Anesth. 2010;57(10):888.
Cohen E. Current practice issues in thoracic anesthesia. Anesth Analg. 2021;133(6):1520–31.
Park HP, Yoon MJ, Jeon YT, Kang JM, Hwang JW, Oh YS. Which predictable variables identify patients at risk of arterial hypoxemia during one-lung ventilation?: analysis of preoperative and intraoperative variables. Korean J Anesthesiol. 2005;49(2):167–71.
Guenoun T, Journois D, Silleran-Chassany J, Frappier J, D’attellis N, Salem A, Safran D. Prediction of arterial oxygen tension during one-lung ventilation: analysis of preoperative and intraoperative variables. J Cardiothorac Vasc Anesth. 2002;16(2):199–203.
Slinger P, Suissa S, Triolet W. Predicting arterial oxygenation during one-lung anaesthesia. Can J Anaesth. 1992;39:1030–5.
Flacke J, Thompson D, Read R. Influence of tidal volume and pulmonary artery occlusion on arterial oxygenation during endobronchial anesthesia. South Med J. 1976;69(5):619–26.
Singh D, Agusti A, Anzueto A, Barnes PJ, Bourbeau J, Celli BR, Criner GJ, Frith P, Halpin DM, Han M. Global strategy for the diagnosis, management, and prevention of chronic obstructive lung disease: the GOLD science committee report 2019. Eur Respir J. 2019. https://doi.org/10.1183/13993003.00164-2019.
Article PubMed PubMed Central Google Scholar
Bae SY, Lee H, Na KJ, Na B, Park S, Park IK, Kang CH, Kim YT. Computed tomography volumetric analysis for predicting postoperative lung function for segmentectomy. Interact Cardiovasc Thorac Surg. 2022;35(2):ivac195.
PubMed PubMed Central Google Scholar
Park H, Yun J, Lee SM, Hwang HJ, Seo JB, Jung YJ, Hwang J, Lee SH, Lee SW, Kim N. Deep learning–based approach to predict pulmonary function at chest CT. Radiology. 2023;307(2): e221488.
Yamagishi H, Chen-Yoshikawa TF, Oguma T, Hirai T, Date H. Morphological and functional reserves of the right middle lobe: radiological analysis of changes after right lower lobectomy in healthy individuals. J Thorac Cardiov Sur. 2021;162(5):1417-232.e2.
Scharm SC, Vogel-Claussen J, Schaefer-Prokop C, Dettmer S, Knudsen L, Jonigk D, Fuge J, Apel R-M, Welte T, Wacker F. Quantification of dual-energy CT-derived functional parameters as potential imaging markers for progression of idiopathic pulmonary fibrosis. Eur Radiol. 2021;31:6640–51.
CAS PubMed PubMed Central Google Scholar
Ettinger DS, Wood DE, Akerley W, Bazhenova LA, Borghaei H, Camidge DR, Cheney RT, Chirieac LR, D’Amico TA, Dilling TJ. NCCN guidelines insights: non–small cell lung cancer, version 42016. J Natl Compr Cancer Netw. 2016;14(3):255–64.
Yin J, Yu C, Liu H, Du M, Sun F, Yu C, Wei L, Wang C, Wang X. A model to predict unstable carotid plaques in population with high risk of stroke. BMC Cardiovasc Disord. 2020;20:1–9.
Katz JA, Laverne RG, Fairley HB, Thomas AN. Pulmonary oxygen exchange during endobronchial anesthesia: effect of tidal volume and PEEP. Anesthesiology. 1982;56(3):164–71.
Peltola K. Central haemodynamics and oxygenation during thoracic anaesthesia. Acta Anaesth Scand. 1983;27:1–45.
Purohit A, Bhargava S, Mangal V, Parashar VK. Lung isolation, one-lung ventilation and hypoxaemia during lung isolation. Indian J Anaesth. 2015;59(9):606–17.
CAS PubMed PubMed Central Google Scholar
Park B, Park J, Lim J-K, Shin KM, Lee J, Seo H, Lee YH, Heo J, Lee WK, Kim JY. Prognostic implication of volumetric quantitative ct analysis in patients with COVID-19: a multicenter study in Daegu, Korea. Korean J Radiol. 2020;21(11):1256.
PubMed PubMed Central Google Scholar
Risoli C, Nicolò M, Colombi D, Moia M, Rapacioli F, Anselmi P, Michieletti E, Ambrosini R, Di Terlizzi M, Grazioli L. Different lung parenchyma quantification using dissimilar segmentation software: a multi-center study for COVID-19 patients. Diagnostics. 2022;12(6):1501.
CAS PubMed PubMed Central Google Scholar
Wu M-T, Pan H-B, Chiang AA, Hsu H-K, Chang H-C, Peng N-J, Lai P-H, Liang H-L, Yang C-F. Prediction of postoperative lung function in patients with lung cancer: comparison of quantitative CT with perfusion scintigraphy. Am J Roentgenol. 2002;178(3):667–72.
Ueda K, Tanaka T, Hayashi M, Li T-S, Tanaka N, Hamano K. Computed tomography-defined functional lung volume after segmentectomy versus lobectomy. Eur J Cardio-Thorac. 2010;37(6):1433–7.
Shikuma K, Chen-Yoshikawa TF, Oguma T, Kubo T, Ohata K, Hamaji M, Kawaguchi A, Motoyama H, Hijiya K, Aoyama A. Radiologic and functional analysis of compensatory lung growth after living-donor lobectomy. Ann Thorac Surg. 2018;105(3):909–14.
Chobola M, Homolka P, Benej M, Chovanec Z, Brat K, Sramek V, Olson LJ, Cundrle I Jr. Ventilatory efficiency identifies patients prone to hypoxemia during one-lung ventilation. J Cardiothor Vasc Anesth. 2019;33(7):1956–62.
Fan Z, Zhao S, Wang L, Li F, Wang J, Gu C. Comparison between functional lung volume measurement and segment counting for predicting postoperative pulmonary function after pulmonary resection in lung cancer patients. BMC Pulm Med. 2023;23(1):6.
PubMed PubMed Central Google Scholar
Li C, Lai X-M, Liu N, Lin Y, Hu W. Correlation analysis of the vertebral compression degree and CT HU value in elderly patients with osteoporotic thoracolumbar fractures. J Orthop Surg Res. 2023;18(1):457.
PubMed PubMed Central Google Scholar
Sverzellati N, Randi G, Spagnolo P, Marchianò A, Silva M, Kuhnigk J-M, La Vecchia C, Zompatori M, Pastorino U. Increased mean lung density: another independent predictor of lung cancer? Eur J Radiol. 2013;82(8):1325–31.
Liu X, Reeves AP, Antoniak K, San José Estépar R, Doucette JT, Jeon Y, Weber J, Xu D, Celedón JC, de la Hoz RE. Association of quantitative CT lung density measurements and lung function decline in World Trade Center workers. Clin Respir J. 2021;15(6):613–21.
Herth FJ, Kirby M, Sieren J, Herth J, Schirm J, Wood S, Schuhmann M. The modern art of reading computed tomography images of the lungs: quantitative CT. Respiration. 2018;95(1):8–17.
Gawlitza J, Haubenreisser H, Henzler T, Akin I, Schönberg S, Borggrefe M, Trinkmann F. Finding the right spot: where to measure airway parameters in patients with COPD. Eur J Radiol. 2018;104:87–93.
Peng J, Zhao L, Wang Y, Yang H, Wang H, Zhang M, Wang Q, Ye L, Wang Z. A study of the correlation between total lung volume and the percent of low attenuation volume and PFT indicators in patients with preoperative lung cancer. Medicine. 2023;102(29): e34201.
CAS PubMed PubMed Central Google Scholar
Ozeki N, Iwano S, Nakamura S, Kawaguchi K, Mizuno Y, Inoue T, Nagaya M, Chen-Yoshikawa TF. Chest three-dimensional-computed tomography imaging data analysis for the variation of exercise capacity after lung lobectomy. Clin Physiol Funct I. 2022;42(5):362–71.
Sticher J, Junger A, Hartmann B, Benson M, Jost A, Golinski M, Scholz S, Hempelmann G. Computerized anesthesia record keeping in thoracic surgery-suitability of electronic anesthesia records in evaluating predictors for hypoxemia during one-lung ventilation. J Clin Monit Comput. 2002;17:335–43.
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