{"insert":{"type":"published_papers"},"similar_merge":{"see_also":[{"@id":"https://web.db.tokushima-u.ac.jp/cgi-bin/edb_browse?EID=469791","label":"url"}],"paper_title":{"en":"Successful treatment of Trichosporon asahii fungemia with isavuconazole in a patient with prominent renal dysfunction and intestinal absorption disorder.","ja":"Successful treatment of Trichosporon asahii fungemia with isavuconazole in a patient with prominent renal dysfunction and intestinal absorption disorder."},"authors":{"en":[{"name":"Takashima Takuya"},{"name":"Azuma Momoyo"},{"name":"Sato M"},{"name":"森脇 好乃美"},{"name":"Saijo Saki"},{"name":"Bando Natsuki"},{"name":"Sato Hiroki"},{"name":"Nakano Yuki"},{"name":"Nunomura Toshiyuki"},{"name":"Ishihara Manabu"},{"name":"Ueno Yoshitoyo"},{"name":"Itagaki Taiga"},{"name":"Oto Jun"}],"ja":[{"name":"髙島 拓也"},{"name":"東 桃代"},{"name":"Sato M"},{"name":"森脇 好乃美"},{"name":"西條 早希"},{"name":"板東 夏生"},{"name":"佐藤 裕紀"},{"name":"中野 勇希"},{"name":"布村 俊幸"},{"name":"石原 学"},{"name":"上野 義豊"},{"name":"板垣 大雅"},{"name":"大藤 純"}]},"publication_date":"2025","publication_name":{"en":"Kansenshōgaku Zasshi","ja":"Kansenshōgaku Zasshi"},"volume":"99","number":"5","starting_page":"352","ending_page":"356","languages":["eng"],"referee":true,"identifiers":{"issn":["0387-5911"]},"published_paper_type":"scientific_journal"},"priority":"input_data"}
{"insert":{"type":"published_papers"},"similar_merge":{"see_also":[{"@id":"https://www.ncbi.nlm.nih.gov/pubmed/41183938","label":"url"},{"@id":"https://www.scopus.com/pages/publications/105020772526","label":"url"},{"@id":"https://web.db.tokushima-u.ac.jp/cgi-bin/edb_browse?EID=458116","label":"url"}],"paper_title":{"en":"Effect of positive-pressure ventilation before extubation on respiratory function: physiological evaluation under simulated extubation","ja":"Effect of positive-pressure ventilation before extubation on respiratory function: physiological evaluation under simulated extubation"},"authors":{"en":[{"name":"Takashima Takuya"},{"name":"Okubo Marina"},{"name":"Otani Shotaro"},{"name":"Terazawa Masaki"},{"name":"Moriwaki Konomi"},{"name":"Saijo Saki"},{"name":"Bando Natsuki"},{"name":"Momota Kazuki"},{"name":"Sato Hiroki"},{"name":"Nakano Yuki"},{"name":"Nunomura Toshiyuki"},{"name":"Ishihara Manabu"},{"name":"Ueno Yoshitoyo"},{"name":"Itagaki Taiga"},{"name":"Oto Jun"}],"ja":[{"name":"髙島 拓也"},{"name":"Okubo Marina"},{"name":"大谷 将太郎"},{"name":"寺澤 壮毅"},{"name":"Moriwaki Konomi"},{"name":"西條 早希"},{"name":"板東 夏生"},{"name":"百田 和貴"},{"name":"佐藤 裕紀"},{"name":"中野 勇希"},{"name":"布村 俊幸"},{"name":"石原 学"},{"name":"上野 義豊"},{"name":"板垣 大雅"},{"name":"大藤 純"}]},"description":{"en":"Positive-pressure ventilation (PPV) before extubation may improve oxygenation and reduce complications after extubation. However, no study has quantitatively evaluated the effects of extubation on breathing and lung volume. A crossover randomized study was performed on 16 patients who received mechanical ventilation and planned to undergo extubation in the intensive-care unit. We used the automatic tube compensation (ATC) mode to simulate extubation. We used electrical impedance tomography and an esophageal balloon catheter to evaluate the work of breathing and lung volume after simulated extubation. We compared the work of breathing and lung volume with and without PPV before simulated extubation. There were no differences in the changes in end-expiratory lung impedance (-7.4 [-18.2-2.3] vs. -11.2 [-16.6-1.1] arbitrary units, p=0.53), anterior-to-posterior ventilation ratio (0.60 [0.49-0.74] vs. 0.60 [0.52-0.79], p=0.75), esophageal pressure swing (4.9 [2.1-8.7] vs. 5.4 [1.9-6.6] cmH2O, p=0.61), dynamic transpulmonary pressure (7.2 [6.7-9.9] vs. 7.6 [6.6-9.7] cmH2O, p=0.93), and pressure time product (2.4 [1.4-4.2] vs. 3.1 [1.0-4.3] cmH2O*s, p=0.84) with and without PPV before simulated extubation. PPV before extubation did not affect breathing work or lung volume after extubation. Therefore, it may delay extubation and increase patient stress. J. Med. Invest. 72 : 361-366, August, 2025.","ja":"Positive-pressure ventilation (PPV) before extubation may improve oxygenation and reduce complications after extubation. However, no study has quantitatively evaluated the effects of extubation on breathing and lung volume. A crossover randomized study was performed on 16 patients who received mechanical ventilation and planned to undergo extubation in the intensive-care unit. We used the automatic tube compensation (ATC) mode to simulate extubation. We used electrical impedance tomography and an esophageal balloon catheter to evaluate the work of breathing and lung volume after simulated extubation. We compared the work of breathing and lung volume with and without PPV before simulated extubation. There were no differences in the changes in end-expiratory lung impedance (-7.4 [-18.2-2.3] vs. -11.2 [-16.6-1.1] arbitrary units, p=0.53), anterior-to-posterior ventilation ratio (0.60 [0.49-0.74] vs. 0.60 [0.52-0.79], p=0.75), esophageal pressure swing (4.9 [2.1-8.7] vs. 5.4 [1.9-6.6] cmH2O, p=0.61), dynamic transpulmonary pressure (7.2 [6.7-9.9] vs. 7.6 [6.6-9.7] cmH2O, p=0.93), and pressure time product (2.4 [1.4-4.2] vs. 3.1 [1.0-4.3] cmH2O*s, p=0.84) with and without PPV before simulated extubation. PPV before extubation did not affect breathing work or lung volume after extubation. Therefore, it may delay extubation and increase patient stress. J. Med. Invest. 72 : 361-366, August, 2025."},"publication_date":"2025","publication_name":{"en":"The Journal of Medical Investigation : JMI","ja":"The Journal of Medical Investigation : JMI"},"volume":"72","number":"3","starting_page":"361","ending_page":"366","languages":["eng"],"referee":true,"identifiers":{"doi":["10.2152/jmi.72.361"],"issn":["1343-1420"]},"published_paper_type":"scientific_journal"},"priority":"input_data"}
