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9041por Kshetry, Rohan Lal, Gupta, Arnab, Chattopadhyaya, Somnath, Srivastava, Madhulika, Sharma, Shubham, Singh, Jujhar, Gupta, Anirban Das, Rajkumar, S.“…Keeping the motto of Health for All as envisioned by the WHO, this low-cost indigenously engineered ventilator will definitely help the poor and afflicted towards their right to health and will help the medical professionals buy some time to manage the patient with acute respiratory distress syndrome (ARDS) towards recovery. Moreover, this instrument mostly includes readily available functional units having standard specifications and can be considered as standard bought-out items.…”
Publicado 2022
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9042“…Studies show that in susceptible individuals, SARS-CoV-2 infection can rapidly progress toward lung injury and acute respiratory distress syndrome (ARDS), with evidence for an underlying dysregulated innate immune response or cytokine release syndrome (CRS). …”
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9043por Chen, Wensen, Liu, Hanting, Yang, Gang, Wang, Wei, Liu, Qiongfang, Huang, Chaolin, Zou, Zhuoru, Liu, Yun, Zhuang, Guihua, Zhang, Lei“…During hospitalization, the elevated DBiL group had significantly higher risks of shock, acute respiratory distress syndrome (ARDS), and respiratory failure (χ(2)-test, all p < 0.001). …”
Publicado 2022
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9044por Xu, Zhifeng, Zhang, Yuanyuan, Zhang, Chun, Xiong, Fei, Zhang, Jianduan, Xiong, Jing“…COVID-19 patients with AKI were more likely to develop respiratory failure, gastrointestinal bleeding, acute liver injury, acute myocardial injury, heart failure, acute respiratory distress syndrome (ARDS), cerebrovascular accident, and disseminated intravascular coagulation (DIC) than those without AKI. …”
Publicado 2022
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9045por Guagnano, Maria Teresa, D'Ardes, Damiano, Ilaria, Rossi, Santilli, Francesca, Schiavone, Cosima, Bucci, Marco, Cipollone, FrancescoEnlace del recurso
Publicado 2022
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9046por Baratella, Elisa, Ruaro, Barbara, Marrocchio, Cristina, Poillucci, Gabriele, Pigato, Caterina, Bozzato, Alessandro Marco, Salton, Francesco, Confalonieri, Paola, Crimi, Filippo, Wade, Barbara, Quaia, Emilio, Cova, Maria Assunta“…Inclusion criteria were as follows: (1) patients with previous SARS-CoV-2 infection proven by a positive RT-PCR on nasopharyngeal swabs performed upon admission to the hospital, and with complete clinical recovery; (2) a diagnosis of SARS-CoV-2-related ARDS, according to the Berlin criteria, during hospitalization; (3) no recent history of other lung disease; and (4) complete imaging follow-up by CXR, DTS, and CT for at least 6 months and up to one year. …”
Publicado 2022
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9047por Laudanski, Krzysztof, Huffenberger, Ann Marie, Scott, Michael J., Williams, Maria, Wain, Justin, Jablonski, Juliane, Hanson, C. William“…During the observation period, there was a shift in intervention triggers with an increase in autonomous algorithmic ARDS detection concomitant with predominant utilization of asynchronous communication, phone engagements, and the tele-CCM module of electronic medical records at the expense of the share of proactive rounding. eRT communicated more frequently with bedside staff (% MD = 37.8%; % RN = 36.8, % RT = 49.0%) but mostly with other eRTs. …”
Publicado 2022
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9048por Markin, Sergey S., Lapshin, Roman D., Baskina, Olga S., Korotchenko, Svetlana A., Mukhina, Irina V., Ivanov, Sergei V., Semenov, Mikhail P., Beregovykh, Valerii V., Semenov, Andrey M.“…These data showed the effectiveness of nebulized nSta and the perspectives of its clinical usage in COVID-19 patients with acute respiratory distress syndrome (ARDS).…”
Publicado 2022
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9049“…BACKGROUND: COVID-19 has different presentations from mild flu like symptoms such as anosmia, dysgeusia, fever, sore throat, cough, dyspnea, headache, abdominal pain and diarrhoea to severe COVID-19 with the development of acute respiratory syndrome (ARDS), septic shock, metabolic acidosis, coagulation dysfunction, multiorgan failure or even death. …”
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9050por Guo, Yulin, Hu, Shun, Wang, Xiaohui, Jiang, Zhe, Duan, Shuangni, Cao, Feng, Li, Fei“…COVID-19 positive was associated with higher incidences of pancreatic necrosis (OR = 1.65; 95% CI: 1.13 to 2.42, P = 0.01; P = 0.82 for heterogeneity) and persistent organ failure (OR = 6.87; 95% CI: 2.37 to 19.98, P = 0.0004; P = 0.12 for heterogeneity), especially cardiovascular failure (OR = 2.92; 95% CI: 1.66 to 5.14, P = 0.0002; P = 0.58 for heterogeneity) and acute respiratory distress syndrome (ARDS) or acute lung injury (ALI) (OR = 3.03; 95% CI: 2.09 to 4.39, P < 0.00001; P = 0.20 for heterogeneity). …”
Publicado 2022
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9051por Huang, Allen Chung-Cheng, Lin, Shu-Min, Chiu, Tzu-Hsuan, Chang, Ko-Wei, Huang, Tse-Hung, Yang, Tsung-Hsien, Shiao, Yi-Hsien, Lee, Chung-Shu, Chung, Fu-Tsai, Chiu, Cheng-Hsun“…There were no significant differences in disease progression, rate of respiratory failure, subsequent development of acute respiratory distress syndrome (ARDS), acute kidney injury, cardiac injury, duration of stay in the intensive care unit or hospital, discharge rate, mortality rate, or viral RNA clearance time between the two groups. …”
Publicado 2022
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9052“…When compared with the surgical emergencies, the medical subgroup had higher sequential organ failure assessment (SOFA) scores (median score 5 v. 4, respectively) and simplified acute physiology score III (SAPS 3) scores (median 52.7 v. 48.5), a higher incidence of acute respiratory distress syndrome (ARDS) (7.7% v. 2.9%) and required more frequent dialysis (20.3% v. 5.5%). …”
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9053por Ghiani, Alessandro, Tsitouras, Konstantinos, Paderewska, Joanna, Kahnert, Kathrin, Walcher, Swenja, Gernhold, Lukas, Neurohr, Claus, Kneidinger, Nikolaus“…BACKGROUND: Evidence suggests differences in ventilation efficiency and respiratory mechanics between early COVID-19 pneumonia and classical acute respiratory distress syndrome (ARDS), as measured by established ventilatory indexes, such as the ventilatory ratio (VR; a surrogate of the pulmonary dead-space fraction) or mechanical power (MP; affected, e.g., by changes in lung-thorax compliance). …”
Publicado 2023
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9054por Becker, Sören, Lang, Hannah, Vollmer Barbosa, Clara, Tian, Zhejia, Melk, Anette, Schmidt, Bernhard M. W.“…INTRODUCTION: Cytokine adsorption using the CytoSorb® adsorber has been proposed in various clinical settings including sepsis, ARDS, hyperinflammatory syndromes, cardiac surgery or recovery after cardiac arrest. …”
Publicado 2023
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9055por Tiruvoipati, Ravindranath, Ludski, Jarryd, Gupta, Sachin, Subramaniam, Ashwin, Ponnapa Reddy, Mallikarjuna, Paul, Eldho, Haji, Kavi“…Six patients had acute respiratory distress syndrome (ARDS), and two patients each had exacerbations of asthma and chronic obstructive pulmonary disease (COPD). …”
Publicado 2023
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9056por Romero, Maritza J., Yue, Qian, Singla, Bhupesh, Hamacher, Jürg, Sridhar, Supriya, Moseley, Auriel S., Song, Chang, Mraheil, Mobarak A., Fischer, Bernhard, Zeitlinger, Markus, Chakraborty, Trinad, Fulton, David, Gan, Lin, Annex, Brian H., Csanyi, Gabor, Eaton, Douglas C., Lucas, Rudolf“…INTRODUCTION: Although both COVID-19 and non-COVID-19 ARDS can be accompanied by significantly increased levels of circulating cytokines, the former significantly differs from the latter by its higher vasculopathy, characterized by increased oxidative stress and coagulopathy in lung capillaries. …”
Publicado 2023
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9057por Condor Capcha, Jose M., Kamiar, Ali, Robleto, Emely, Saad, Ali G., Cui, Tengjiao, Wong, Amanda, Villano, Jason, Zhong, William, Pekosz, Andrew, Medina, Edgar, Cai, Renzhi, Sha, Wei, Ranek, Mark J., Webster, Keith A., Schally, Andrew V., Jackson, Robert M., Shehadeh, Lina A.“…COVID-19 pneumonia causes acute lung injury and acute respiratory distress syndrome (ALI/ARDS) characterized by early pulmonary endothelial and epithelial injuries with altered pulmonary diffusing capacity and obstructive or restrictive physiology. …”
Publicado 2023
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9058por Vallier, Heather A., Moore, Timothy A., Como, John J., Wilczewski, Patricia A., Steinmetz, Michael P., Wagner, Karl G., Smith, Charles E., Wang, Xiao-Feng, Dolenc, Andrea J.“…Complications including infections, sepsis, DVT, organ failure, pneumonia, acute respiratory distress syndrome (ARDS), and pulmonary embolism (PE) were identified and compared for early and delayed patients and with a historical cohort. …”
Publicado 2015
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9059“…BACKGROUND: Acute lung injury (ALI) and acute respiratory distress syndrome (ARDS) are characterized by acute lung inflammation. …”
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9060por Mirouse, Adrien, Vignon, Philippe, Piron, Prescillia, Robert, René, Papazian, Laurent, Géri, Guillaume, Blanc, Pascal, Guitton, Christophe, Guérin, Claude, Bigé, Naïke, Rabbat, Antoine, Lefebvre, Aurélie, Razazi, Keyvan, Fartoukh, Muriel, Mariotte, Eric, Bouadma, Lila, Ricard, Jean-Damien, Seguin, Amélie, Souweine, Bertrand, Moreau, Anne-Sophie, Faguer, Stanislas, Mari, Arnaud, Mayaux, Julien, Schneider, Francis, Stoclin, Annabelle, Perez, Pierre, Maizel, Julien, Lafon, Charles, Ganster, Frédérique, Argaud, Laurent, Girault, Christophe, Barbier, François, Lecuyer, Lucien, Lambert, Jérôme, Canet, Emmanuel“…Half the patients received mechanical ventilation within 1 (1–2) day following ICU admission (the ratio of arterial oxygen partial pressure to fractional inspired oxygen (PaO(2)/FiO(2)) = 150 (80–284), 80% with acute respiratory distress syndrome (ARDS)). Sequential Organ Failure Assessment (SOFA) score on day 1 (odds ratio (OR) 1.90 (1.33–2.70); p < 0.001), oxygen flow at ICU admission (OR 1.25 (1.08–1.45); p = 0.004), and early bacterial co-infection (OR 14.94 (2.00–111.8); p = 0.009) were independently associated with the need for mechanical ventilation. …”
Publicado 2017
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