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Neurociencias
3
Novela mexicana
3
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3
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2
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2
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2
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1
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1
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1
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1
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6801por Zhang, Yuefei, Liu, Hongcui, Yao, Junlin, Huang, Yanfeng, Qin, Shenlu, Sun, Zheng, Xu, Yingchun, Wan, Shu, Cheng, Hongqiang, Li, Chunqi, Zhang, Xue, Ke, Yuehai“…Acute lung injury (ALI) and its more severe form, acute respiratory distress syndrome (ARDS), are life-threatening diseases that are associated with high mortality rates due to treatment limitations. …”
Publicado 2016
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6802por Buttignol, Monique, Pires-Neto, Ruy Camargo, Rossi e Silva, Renata Calciolari, Albino, Marina Ballarin, Dolhnikoff, Marisa, Mauad, Thais“…BACKGROUND: Diffuse alveolar damage (DAD), which is the histological surrogate for acute respiratory distress syndrome (ARDS), has a multifactorial aetiology. Therefore it is possible that the immunopathology differs among the various presentations of DAD. …”
Publicado 2017
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6803“…ARDS can be directly life-threatening because it is associated with low blood oxygenation levels and can result in organ failure. …”
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6804por Huang, S., Sanfilippo, F., Herpain, A., Balik, M., Chew, M., Clau-Terré, F., Corredor, C., De Backer, D., Fletcher, N., Geri, G., Mekontso-Dessap, A., McLean, A., Morelli, A., Orde, S., Petrinic, T., Slama, M., van der Horst, I. C. C., Vignon, P., Mayo, P., Vieillard-Baron, A.“…RESULTS: From January 2000 till December 2017 a total of 209 articles were included after systematic search and screening, 97 for LVSF, 48 for RVF, 51 for LVDF, 36 for FM and 24 for AET. Shock and ARDS were relatively common among LVSF articles (both around 15%) while ARDS comprised 25% of RVF articles. …”
Publicado 2020
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6805por Maury, Camille, Ramin, Severin, Bonfils, Jordi, Dagneaux, Louis, Faure, Patrick, Canovas, François, Capdevila, Xavier, Charbit, Jonathan“…In addition to trauma severity, global management of respiratory complications, the incidence of acute respiratory distress syndrome (ARDS) and mechanical ventilation requirements and outcome were compared. …”
Publicado 2020
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6806por Midega, Thais Dias, Bozza, Fernando A., Machado, Flávia Ribeiro, Guimarães, Helio Penna, Salluh, Jorge I., Nassar, Antonio Paulo, Normílio-Silva, Karina, Schultz, Marcus J., Cavalcanti, Alexandre Biasi, Serpa Neto, Ary“…BACKGROUND: Survival benefit from low tidal volume (V(T)) ventilation (LTVV) has been demonstrated for patients with acute respiratory distress syndrome (ARDS), and patients not having ARDS could also benefit from this strategy. …”
Publicado 2020
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6807por Hurtado, Daniel E., Erranz, Benjamín, Lillo, Felipe, Sarabia-Vallejos, Mauricio, Iturrieta, Pablo, Morales, Felipe, Blaha, Katherine, Medina, Tania, Diaz, Franco, Cruces, Pablo“…BACKGROUND: Protective mechanical ventilation (MV) aims at limiting global lung deformation and has been associated with better clinical outcomes in acute respiratory distress syndrome (ARDS) patients. In ARDS lungs without MV support, the mechanisms and evolution of lung tissue deformation remain understudied. …”
Publicado 2020
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6808por Gupta, Aakriti, Madhavan, Mahesh V., Poterucha, Timothy J., DeFilippis, Ersilia M., Hennessey, Jessica A., Redfors, Bjorn, Eckhardt, Christina, Bikdeli, Behnood, Platt, Jonathan, Nalbandian, Ani, Elias, Pierre, Cummings, Matthew J., Nouri, Shayan N., Lawlor, Matthew, Ranard, Lauren S., Li, Jianhua, Boyle, Claudia, Givens, Raymond, Brodie, Daniel, Krumholz, Harlan M., Stone, Gregg W., Sethi, Sanjum S., Burkhoff, Daniel, Uriel, Nir, Schwartz, Allan, Leon, Martin B., Kirtane, Ajay J., Wan, Elaine Y., Parikh, Sahil A.“…The coronavirus disease 2019 (COVID-19), caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), can result in a hyperinflammatory state, leading to acute respiratory distress syndrome (ARDS), myocardial injury, and thrombotic complications, among other sequelae. …”
Publicado 2020
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6809por Hariri, Lida P., North, Crystal M., Shih, Angela R., Israel, Rebecca A., Maley, Jason H., Villalba, Julian A., Vinarsky, Vladimir, Rubin, Jonah, Okin, Daniel A., Sclafani, Alyssa, Alladina, Jehan W., Griffith, Jason W., Gillette, Michael A., Raz, Yuval, Richards, Christopher J., Wong, Alexandra K., Ly, Amy, Hung, Yin P., Chivukula, Raghu R., Petri, Camille R., Calhoun, Tiara F., Brenner, Laura N., Hibbert, Kathryn A., Medoff, Benjamin D., Hardin, C. Corey, Stone, James R., Mino-Kenudson, Mari“…BACKGROUND: Patients with severe coronavirus disease 2019 (COVID-19) have respiratory failure with hypoxemia and acute bilateral pulmonary infiltrates, consistent with ARDS. Respiratory failure in COVID-19 might represent a novel pathologic entity. …”
Publicado 2021
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6810por Qadri, Syeda Kashfi, Ng, Priscilla, Toh, Theresa Shu Wen, Loh, Sin Wee, Tan, Herng Lee, Lin, Cheryl Bin, Fan, Eddy, Lee, Jan Hau“…INTRODUCTION: Prone position is known to improve mortality in patients with acute respiratory distress syndrome (ARDS). The impact of prone position in critically ill patients with coronavirus disease of 2019 (COVID-19) remains to be determined. …”
Publicado 2020
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6811por Shrestha, Ekta, Charkviani, Mariam, Musurakis, Clio, Kansakar, Aswin Ratna, Devkota, Amrit, Banjade, Rabin, Pudasainee, Prasun, Chitrakar, Solab, Sharma, Alisha, Sous, Mina, Padhamanbhan, Shanmugha, Friedman, Harvey J., Nava, Guillermo Rodriguez“…Patients with T2D had higher requirement of ICU admission (31.5% vs 12.2%; p = .004), higher incidence of ARDS (35.6% vs 16.2%, p = .007), higher rates of intubation (32.9% vs 12.2%, p = .003), and higher use neuromuscular blocking agents (23.3% vs 9.5%, p = .02). …”
Publicado 2021
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6812por Helms, Julie, Severac, François, Merdji, Hamid, Schenck, Maleka, Clere-Jehl, Raphaël, Baldacini, Mathieu, Ohana, Mickaël, Grunebaum, Lélia, Castelain, Vincent, Anglés-Cano, Eduardo, Sattler, Laurent, Meziani, Ferhat“…We aimed to compare the occurrence of thrombotic/ischemic events in COVID-19 patients with acute respiratory distress syndrome (ARDS) treated with either prophylactic or therapeutic dosage of heparin. …”
Publicado 2021
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6813por Gu, Tingxuan, Zhao, Simin, Jin, Guoguo, Song, Mengqiu, Zhi, Yafei, Zhao, Ran, Ma, Fayang, Zheng, Yaqiu, Wang, Keke, Liu, Hui, Xin, Mingxia, Han, Wei, Li, Xiang, Dong, Christopher D., Liu, Kangdong, Dong, Zigang“…Cytokine storm syndrome (CSS) can lead to acute respiratory distress syndrome (ARDS), which contributes to most COVID-19 mortalities. …”
Publicado 2021
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6814por Morin, François, Douillet, Delphine, Hamel, Jean-Francois, Rakotonjanahary, Josué, Dupriez, Florence, Savary, Dominique, Aubé, Christophe, Riou, Jeremie, Dubée, Vincent, Roy, Pierre-Marie“…Severity mainly depends on the development of acute respiratory distress syndrome (ARDS) with a predominance of subpleural lesions. …”
Publicado 2021
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6815por Cillo, Anthony R., Somasundaram, Ashwin, Shan, Feng, Cardello, Carly, Workman, Creg J., Kitsios, Georgios D., Ruffin, Ayana, Kunning, Sheryl, Lampenfeld, Caleb, Onkar, Sayali, Grebinoski, Stephanie, Deshmukh, Gaurav, Methe, Barbara, Liu, Chang, Nambulli, Sham, Andrews, Lawrence, Duprex, W. Paul, Joglekar, Alok V., Benos, Panayiotis V., Ray, Prabir, Ray, Anuradha, McVerry, Bryan J., Zhang, Yingze, Lee, Janet S., Das, Jishnu, Singh, Harinder, Morris, Alison, Bruno, Tullia C., Vignali, Dario A.A.“…Coronavirus disease 2019 (COVID-19) caused by SARS-CoV-2 infection presents with varied clinical manifestations(1), ranging from mild symptoms to acute respiratory distress syndrome (ARDS) with high mortality(2,3). Despite extensive analyses, there remains an urgent need to delineate immune cell states that contribute to mortality in severe COVID-19. …”
Publicado 2021
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6816por Li, Jiucui, Lu, Kongmiao, Sun, Fenglan, Tan, Shanjuan, Zhang, Xiao, Sheng, Wei, Hao, Wanming, Liu, Min, Lv, Weihong, Han, Wei“…BACKGROUND: Acute lung injury (ALI)/acute respiratory distress syndrome (ARDS) induces uncontrolled and self-amplified pulmonary inflammation, and has high morbidity and mortality rates in critically ill patients. …”
Publicado 2021
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6817por Torres-Peña, José David, Pérez-Belmonte, Luis M., Fuentes-Jiménez, Francisco, López Carmona, Mª Dolores, Pérez-Martinez, Pablo, López-Miranda, José, Carrasco Sánchez, Francisco Javier, Vargas Núñez, Juan Antonio, del Corral Beamonte, Esther, Magallanes Gamboa, Jeffrey Oskar, González García, Andrés, González Moraleja, Julio, Cortés Troncoso, Andrés, Taboada Martínez, María Luisa, del Fidalgo Montero, María del Pilar, Seguí Ripol, José Miguel, Gil Sánchez, Ricardo, Alegre González, Diana, Boixeda, Ramon, Cortés Rodríguez, Begoña, Ena, Javier, García García, Gema María, Ventura Esteve, Ana, Ramos Rincón, José Manuel, Gómez-Huelgas, Ricardo“…In addition, statin therapy was associated with a decreased probability that patients with COVID-19 will develop AKI, ARDS, or sepsis and decreases the need for IMV.…”
Publicado 2021
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6818por Romberg, Erin K., Menashe, Sarah J., Kronman, Matthew P., Tang, Elizabeth R., Stanescu, A. Luana, Otto, Randolph K., Otjen, Jeffrey P.“…PRECIS: Radiologic findings of COVID-19 in pediatric patients are similar to those seen in adults, and may range from normal to severe ARDS type appearance.…”
Publicado 2021
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6819“…Incidence rates [95% CI] of various complications were: pain (20% [1, 2]), fever (14% [3, 4]), dyspnea (13% [5, 6]), pneumothorax (6% [7, 8]) pneumonia (4% [0, 12]), emphysema (3% [3, 7]), prolonged air leakage (3% [0, 7]), prolonged drainage (3% [9, 10]), thromboembolism (3% [9, 11]), lung injury (2% [7, 12]), respiratory insufficiency (2% [0, 5]), re-expansion pulmonary edema (1% [0, 3]), empyema (1% [0, 2]), respiratory failure (0% [0, 1]), and acute respiratory distress syndrome (ARDS; 0% [0, 1]. CONCLUSIONS: Whereas pain and fever were the most frequent complications of thoracoscopic talc insufflation, the incidence of ARDS was low. …”
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6820por Donamou, Joseph, Touré, Abdoulaye, Camara, Amadou Yalla, Camara, Djiki, Camara, M’mah Lamine, Traoré, Abdourhamane Dine, Camara, Mariame Mohamed, Bangoura, Almamy, Dramé, Boubacar Atigou, Sossa, Luc Kouessi, Abékan, Jean-Marc Roméo, Edemessi, Axel Irvin, Saliou, Sow Mamadou“…In multivariate analysis, the factors predictive of mortality were: Acute Respiratory Distress Syndrome (ARDS) (OR= 6.33, 95% CI [1.66-29]; p=0.007), a Brescia score ≥ 2 (OR =5.8, 95% CI [1.7-19.2]; p=0.004) and admission delay (OR =5.6, 95% CI [1.8-17.5]; p=0.003). …”
Publicado 2021
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