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Septicemia
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29641Publicado 2021“…Factors significantly associated with higher mortality for all patients combined included country income status (low-income vs high-income countries, risk ratio 2·78 [95% CI 1·88–4·11], p<0·0001; middle-income vs high-income countries, 2·11 [1·59–2·79], p<0·0001), sepsis at presentation (1·20 [1·04–1·40], p=0·016), higher American Society of Anesthesiologists (ASA) score at primary intervention (ASA 4–5 vs ASA 1–2, 1·82 [1·40–2·35], p<0·0001; ASA 3 vs ASA 1–2, 1·58, [1·30–1·92], p<0·0001]), surgical safety checklist not used (1·39 [1·02–1·90], p=0·035), and ventilation or parenteral nutrition unavailable when needed (ventilation 1·96, [1·41–2·71], p=0·0001; parenteral nutrition 1·35, [1·05–1·74], p=0·018). …”
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29642por Li, Cong, Liu, Ling, Gao, Zhiwei, Zhang, Junwei, Chen, Hui, Ma, Shaolei, Liu, Airan, Mo, Min, Wu, Changde, Chen, Dongyu, Liu, Songqiao, Xie, Jianfeng, Huang, Yingzi, Qiu, Haibo, Yang, Yi“…Secondary outcomes showed that synbiotics were more effective in preventing hospital-acquired pneumonia (HAP) (OR 0.34; 95% CrI 0.11–0.85), catheter-related bloodstream infection (OR 0.08; 95% CrI 0.01–0.80), urinary tract infection (OR 0.27; 95% CrI 0.08–0.71) and sepsis (OR 0.34; 95% CrI 0.16–0.70) than EPN. Amongst the treatments, probiotics were most effective for shortening the mechanical ventilation duration (MD −3.93; 95% CrI −7.98 to −0.02), prebiotics were most effective for preventing diarrhea (OR 0.24; 95% CrI 0.05–0.94) and TPN was the least effective in shortening hospital length of stay (MD 4.23; 95% CrI 0.97–7.33). …”
Publicado 2021
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29643por Bolton, Kelly L., Foote, Michael, Jee, Justin, Safonov, Anton, Ptashkin, Ryan, Devlin, Sean, Gedvilaite, Erika, Gao, Teng, Papaemmanuil, Elli, Pessin, Melissa S., Kamboj, Mini, Vijai, Joseph, Offit, Kenneth, Awadalla, Phillip, Nataranjan, Pradeep, Berger, Michael F., Norton, Larry, Levine, Ross L., Zehir, Ahmet“…CH was associated with risk of sepsis (HR=1.13; 95% CI 1.01-1.25, p=0.04) and bacterial enteritis (HR=1.8, 95% CI 1.1-2.8, p=0.01). …”
Publicado 2020
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29644por Kumar, Aarti, Mishra, Shambhavi, Singh, Shambhavi, Ashraf, Sana, Kan, Peiyi, Ghosh, Amit Kumar, Kumar, Alok, Krishna, Raghav, Stevenson, David K., Tian, Lu, Elias, Peter M., Darmstadt, Gary L., Kumar, Vishwajeet“…BACKGROUND: Hospitalized preterm infants with compromised skin barrier function treated topically with sunflower seed oil (SSO) have shown reductions in sepsis and neonatal mortality rate (NMR). Mustard oil and products commonly used in high-mortality settings may possibly harm skin barrier integrity and enhance risk of infection and mortality in newborn infants. …”
Publicado 2021
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29645Cerebral autoregulation in anoxic brain injury patients treated with targeted temperature managementpor Crippa, Ilaria Alice, Vincent, Jean-Louis, Zama Cavicchi, Federica, Pozzebon, Selene, Annoni, Filippo, Cotoia, Antonella, Njimi, Hassane, Gaspard, Nicolas, Creteur, Jacques, Taccone, Fabio Silvio“…Exclusion criteria: trauma; sepsis, intoxication; acute intra-cranial disease; history of supra-aortic vascular disease; severe hemodynamic instability; cardiac output mechanical support; arterial carbon dioxide partial pressure (PaCO(2)) > 60 mmHg; arrhythmias; lack of acoustic window. …”
Publicado 2021
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29646por Hou, Can, Hu, Yihan, Yang, Huazhen, Chen, Wenwen, Zeng, Yu, Ying, Zhiye, Hu, Yao, Sun, Yajing, Qu, Yuanyuan, Gottfreðsson, Magnús, Valdimarsdóttir, Unnur A., Song, Huan“…The life-threatening secondary infections were defined as diagnoses of severe secondary infections with high mortality rates (i.e., sepsis, endocarditis, and central nervous system infections) from the UK Biobank inpatient hospital data, or deaths from these infections from mortality data. …”
Publicado 2021
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29647por Williams, Marvin, Jones, Alyssa B., Maxedon, Amanda L., Tabakh, Jennifer E., McCloskey, Cindy B., Bard, David E., Heruth, Daniel P., Chavez-Bueno, Susana“…BACKGROUND: Escherichia coli is a major neonatal pathogen and the leading cause of early-onset sepsis in preterm newborns. Maternal E. coli strains are transmitted to the newborn causing invasive neonatal disease. …”
Publicado 2021
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29648por Colussi, GianLuca, Perrotta, Giacomo, Pillinini, Pierpaolo, Dibenedetto, Alessia G., Da Porto, Andrea, Catena, Cristiana, Sechi, Leonardo A.“…METHODS: Data of 121 patients (age 73 ± 10 years, 58% males, Charlson Comorbidity Index 5.7 ± 2.1) with a confirmed sepsis were included in a retrospective study between January 2017 and February 2020. …”
Publicado 2021
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29649por Nebbioso, Andrea, Ogundipe, Oluwakemi F., Repetto, Ernestina Carla, Mekiedje, Calorine, Sanke-Waigana, Hugues, Ngaya, Gilles, Ingelbeen, Brecht, Gil-Cuesta, Julita“…Globally, antibiotic resistance (ABR) has been increasingly challenging neonatal sepsis treatment, with 26 to 84% of gram-negative bacteria resistant to third-generation cephalosporins. …”
Publicado 2021
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29650“…Perioperative complications within the 30-day period following operation were identified and categorized as major complications (mortality, surgical site infections, myocardial infarctions, pulmonary embolisms, deep venous thromboembolisms, cerebral vascular accidents, sepsis, peri-prosthetic fracture, and peripheral nerve injury), minor complications, and 30-day readmission rate. …”
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29651por Ashraf, Bilal, Jeon-slaughter, Haekyung, Webb, Christopher, Lee, Nicholas C.J., Chen, Weina, Choi, Sung-Hee, Bat, Taha, Ibrahim, Ibrahim F.“…However, the relationship between immature platelets and outcomes in acute illness can be complex, as in sepsis, where the trend of IPC is associated with mortality, rather than the initial value. …”
Publicado 2021
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29652por Wu, Jianghua, Mei, Heng, Li, Jianwei, Zhang, Jingpeng, Tang, Lu, Du, Mengyi, Li, Fangting, Hu, Yu“…Moreover, our model predicted that the insufficient SARS-CoV-2-specific naïve T/B cell pools and inactive APC caused a series of chain reactions, including viral shedding, bacterial infection, sepsis and cytokine storms. Finally, pseudopotential analysis revealed that a high state characterized by severe bacterial infections and cytokine storms was a stable attractor for patients with insufficient SARS-CoV-2-specific naïve T/B cells and inactive APC (Figure 1). …”
Publicado 2021
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29653por Ababneh, Hazim, Alqadi, Fadwa, ma'Akoseh, Mohammad, Halahleh, Khalid, abo Abed, Layan, Akkawi, Mohammad, Al-Rabi, Kamal“…Among the 89 patients, complications were recognized in 36% of the patients (n=32), with sepsis (n=12, 13%), acute kidney injury (n=11, 12%), and cardiovascular complications (n=3, 3%) being the most prevalent complications. …”
Publicado 2021
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29654por Moody, William E., Holloway, Benjamin, Arumugam, Parthiban, Gill, Sharon, Wahid, Yasmin S., Boivin, Chris M., Thomson, Louise E., Berman, Daniel S., Armstrong, Matthew J., Ferguson, James, Steeds, Richard P.“…Most deaths (78%) were attributed to noncardiovascular causes (malignancy, sepsis, renal failure). Of the 32 subjects with abnormal perfusion (20%), nine (6%) had a high-risk perfusion abnormality defined as a total perfusion defect size (PDS) ≥ 15% and/or an ischemic PDS ≥ 10%. …”
Publicado 2020
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29655por Schønemann-Lund, Martin, Itenov, Theis S., Larsson, Johan E., Lindegaard, Birgitte, Johansson, Pär I., Bestle, Morten H.“…BACKGROUND: Endotheliopathy is suggested as pivotal pathophysiology of sepsis and trauma-associated organ failure, but its role in acute respiratory failure is not yet determined. …”
Publicado 2022
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29656“…INTRODUCTION: COVID-19 is a disease caused by the SARS-CoV-2 virus; atypical pneumonia and sepsis are the most severe manifestations of the disease. …”
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29657por Das, Nandana, Banavali, Shripad, Bakhshi, Sameer, Trehan, Amita, Radhakrishnan, Venkatraman, Seth, Rachna, Arora, Brijesh, Narula, Gaurav, Sinha, Subir, Roy, Prakriti, Gogoi, Manash Pratim, Chatterjee, Sayan, Abraham, Bindhu, Das, Parag, Saha, Vaskar, Krishnan, Shekhar“…Primary outcome measures include event-free survival (overall, by risk groups), sepsis rates in induction (first randomisation) and event-free survival rates following second randomisation. …”
Publicado 2022
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29658por Landman, Anadeijda J. E. M. C., de Boer, Marjon A., Visser, Laura, Nijman, Tobias A. J., Hemels, Marieke A. C., Naaktgeboren, Christiana N., van der Weide, Marijke C., Mol, Ben W., van Laar, Judith O. E. H., Papatsonis, Dimitri N. M., Bekker, Mireille N., van Drongelen, Joris, van Pampus, Mariëlle G., Sueters, Marieke, van der Ham, David P., Sikkema, J. Marko, Zwart, Joost J., Huisjes, Anjoke J. M., van Huizen, Marloes E., Kleiverda, Gunilla, Boon, Janine, Franssen, Maureen T. M., Hermes, Wietske, Visser, Harry, de Groot, Christianne J. M., Oudijk, Martijn A.“…Secondary outcomes included a composite of poor neonatal outcome (bronchopulmonary dysplasia, periventricular leukomalacia > grade 1, intraventricular hemorrhage > grade 2, necrotising enterocolitis > stage 1, retinopathy of prematurity, culture proven sepsis, or perinatal death). Analyses were performed by intention to treat. …”
Publicado 2022
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29659por Care, Angharad, Nevitt, Sarah J, Medley, Nancy, Donegan, Sarah, Good, Laura, Hampson, Lynn, Tudur Smith, Catrin, Alfirevic, Zarko“…Only progesterone treatments are associated with reduction in neonatal respiratory distress syndrome, neonatal sepsis, necrotising enterocolitis, and admission to neonatal intensive care unit compared with controls. …”
Publicado 2022
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29660por Schonfeld, Sara J., Tucker, Margaret A., Engels, Eric A., Dores, Graça M., Sampson, Joshua N., Shiels, Meredith S., Chanock, Stephen J., Morton, Lindsay M.“…Immune checkpoint inhibitors also were associated with other immune-related AEs (HR, 2.2; 95% CI, 1.7-2.8), including Cushing syndrome (HR, 11.8; 95% CI, 1.4-97.2), hyperthyroidism (HR, 6.3; 95% CI, 2.0-19.5), hypothyroidism (HR, 3.8; 95% CI, 2.4-6.1), hypopituitarism (HR, 19.8; 95% CI, 5.4-72.9), other pituitary gland disorders (HR, 6.0; 95% CI, 1.2-30.2), diarrhea (HR, 3.5; 95% CI, 2.5-4.9), and sepsis or septicemia (HR, 2.2; 95% CI, 1.4-3.3). Most associations were pronounced within 6 months following the first ICI claim and comparable with or without a baseline history of autoimmune disease. …”
Publicado 2022
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