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The primary composite end point was admission to an intensive care unit (ICU), the use of mechanical ventilation, or death.The median age of the patients was 47 years; 41.9% of the patients were female. The primary composite end point occurred in 67 patients (6.1%), including 5.0% who were admitted to the ICU, 2.3% who underwent invasive mechanical ventilation, and 1.4% who died. Only 1.9% of the patients had a history of direct contact with wildlife. Among nonresidents of Wuhan, 72.3% had contact with residents of Wuhan, including 31.3% who had visited the city. The most common symptoms were fever (43.8% on admission and 88.7% during hospitalization) and cough (67.8%). Diarrhea was uncommon (3.8%). The median incubation period was 4 days (interquartile range, 2 to 7). On admission, ground-glass opacity was the most common radiologic finding on chest computed tomography (CT) (56.4%). No radiographic or CT abnormality was found in 157 of 877 patients (17.9%) with nonsevere disease and in 5 of 173 patients (2.9%) with severe disease. Lymphocytopenia was present in 83.2% of the patients on admission.During the first 2 months of the current outbreak, Covid-19 spread rapidly throughout China and caused varying degrees of illness. Patients often presented without fever, and many did not have abnormal radiologic findings. (Funded by the National Health Commission of China and others.)."],"publicationDate":"2020-04-30","publisher":"Massachusetts Medical Society","embargoEndDate":null,"sources":["Crossref","New England Journal of Medicine","N Engl J Med"],"formats":null,"contributors":null,"coverages":null,"bestAccessRight":{"code":"c_abf2","label":"OPEN","scheme":"http://vocabularies.coar-repositories.org/documentation/access_rights/"},"container":{"name":"New England Journal of 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Techniques"},"provenance":null},{"subject":{"scheme":"keyword","value":"Animals"},"provenance":null},{"subject":{"scheme":"keyword","value":"Humans"},"provenance":null},{"subject":{"scheme":"keyword","value":"Bayes Theorem"},"provenance":null},{"subject":{"scheme":"keyword","value":"Resources"},"provenance":null},{"subject":{"scheme":"keyword","value":"Software"},"provenance":null}],"mainTitle":"MEGA11: Molecular Evolutionary Genetics Analysis Version 11","subTitle":null,"descriptions":["<jats:title>Abstract</jats:title>                   <jats:p>The Molecular Evolutionary Genetics Analysis (MEGA) software has matured to contain a large collection of methods and tools of computational molecular evolution. Here, we describe new additions that make MEGA a more comprehensive tool for building timetrees of species, pathogens, and gene families using rapid relaxed-clock methods. Methods for estimating divergence times and confidence intervals are implemented to use probability densities for calibration constraints for node-dating and sequence sampling dates for tip-dating analyses. They are supported by new options for tagging sequences with spatiotemporal sampling information, an expanded interactive Node Calibrations Editor, and an extended Tree Explorer to display timetrees. Also added is a Bayesian method for estimating neutral evolutionary probabilities of alleles in a species using multispecies sequence alignments and a machine learning method to test for the autocorrelation of evolutionary rates in phylogenies. The computer memory requirements for the maximum likelihood analysis are reduced significantly through reprogramming, and the graphical user interface has been made more responsive and interactive for very big data sets. These enhancements will improve the user experience, quality of results, and the pace of biological discovery. Natively compiled graphical user interface and command-line versions of MEGA11 are available for Microsoft Windows, Linux, and macOS from www.megasoftware.net.</jats:p>"],"publicationDate":"2021-04-23","publisher":"Oxford University Press (OUP)","embargoEndDate":null,"sources":["Crossref","Mol Biol Evol"],"formats":null,"contributors":null,"coverages":null,"bestAccessRight":{"code":"c_abf2","label":"OPEN","scheme":"http://vocabularies.coar-repositories.org/documentation/access_rights/"},"container":{"name":"Molecular Biology and 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grave"},"provenance":null},{"subject":{"scheme":"keyword","value":"Humans"},"provenance":null},{"subject":{"scheme":"keyword","value":"Mortality"},"provenance":null},{"subject":{"scheme":"keyword","value":"Aged"},"provenance":null},{"subject":{"scheme":"keyword","value":"Aged, 80 and over"},"provenance":null},{"subject":{"scheme":"keyword","value":"SARS-CoV-2"},"provenance":null},{"subject":{"scheme":"keyword","value":"Clinical Laboratory Techniques"},"provenance":null},{"subject":{"scheme":"keyword","value":"Age Factors"},"provenance":null},{"subject":{"scheme":"keyword","value":"COVID-19"},"provenance":null},{"subject":{"scheme":"keyword","value":"Articles"},"provenance":null},{"subject":{"scheme":"keyword","value":"General Medicine"},"provenance":null},{"subject":{"scheme":"SDG","value":"3. Good health"},"provenance":null},{"subject":{"scheme":"keyword","value":"Coronavirus"},"provenance":null},{"subject":{"scheme":"keyword","value":"Risk factors"},"provenance":null},{"subject":{"scheme":"keyword","value":"Cardiovascular Diseases"},"provenance":null},{"subject":{"scheme":"keyword","value":"Hypertension"},"provenance":null},{"subject":{"scheme":"keyword","value":"Disease Progression"},"provenance":null},{"subject":{"scheme":"keyword","value":"Female"},"provenance":null},{"subject":{"scheme":"keyword","value":"Coronavirus Infections"},"provenance":null}],"mainTitle":"Clinical course and risk factors for mortality of adult inpatients with COVID-19 in Wuhan, China: a retrospective cohort study","subTitle":null,"descriptions":["Since December, 2019, Wuhan, China, has experienced an outbreak of coronavirus disease 2019 (COVID-19), caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Epidemiological and clinical characteristics of patients with COVID-19 have been reported but risk factors for mortality and a detailed clinical course of illness, including viral shedding, have not been well described.In this retrospective, multicentre cohort study, we included all adult inpatients (≥18 years old) with laboratory-confirmed COVID-19 from Jinyintan Hospital and Wuhan Pulmonary Hospital (Wuhan, China) who had been discharged or had died by Jan 31, 2020. Demographic, clinical, treatment, and laboratory data, including serial samples for viral RNA detection, were extracted from electronic medical records and compared between survivors and non-survivors. We used univariable and multivariable logistic regression methods to explore the risk factors associated with in-hospital death.191 patients (135 from Jinyintan Hospital and 56 from Wuhan Pulmonary Hospital) were included in this study, of whom 137 were discharged and 54 died in hospital. 91 (48%) patients had a comorbidity, with hypertension being the most common (58 [30%] patients), followed by diabetes (36 [19%] patients) and coronary heart disease (15 [8%] patients). Multivariable regression showed increasing odds of in-hospital death associated with older age (odds ratio 1·10, 95% CI 1·03-1·17, per year increase; p=0·0043), higher Sequential Organ Failure Assessment (SOFA) score (5·65, 2·61-12·23; p<0·0001), and d-dimer greater than 1 μg/mL (18·42, 2·64-128·55; p=0·0033) on admission. Median duration of viral shedding was 20·0 days (IQR 17·0-24·0) in survivors, but SARS-CoV-2 was detectable until death in non-survivors. The longest observed duration of viral shedding in survivors was 37 days.The potential risk factors of older age, high SOFA score, and d-dimer greater than 1 μg/mL could help clinicians to identify patients with poor prognosis at an early stage. Prolonged viral shedding provides the rationale for a strategy of isolation of infected patients and optimal antiviral interventions in the future.Chinese Academy of Medical Sciences Innovation Fund for Medical Sciences; National Science Grant for Distinguished Young Scholars; National Key Research and Development Program of China; The Beijing Science and Technology Project; and Major Projects of National Science and Technology on New Drug Creation and Development."],"publicationDate":"2020-03-01","publisher":"Elsevier BV","embargoEndDate":null,"sources":["Crossref","The Lancet","Lancet"],"formats":["9 páginas","image/jepg","image/png","application/pdf"],"contributors":null,"coverages":null,"bestAccessRight":{"code":"c_abf2","label":"OPEN","scheme":"http://vocabularies.coar-repositories.org/documentation/access_rights/"},"container":{"name":"The 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Safe and effective vaccines are needed urgently.In an ongoing multinational, placebo-controlled, observer-blinded, pivotal efficacy trial, we randomly assigned persons 16 years of age or older in a 1:1 ratio to receive two doses, 21 days apart, of either placebo or the BNT162b2 vaccine candidate (30 μg per dose). BNT162b2 is a lipid nanoparticle-formulated, nucleoside-modified RNA vaccine that encodes a prefusion stabilized, membrane-anchored SARS-CoV-2 full-length spike protein. The primary end points were efficacy of the vaccine against laboratory-confirmed Covid-19 and safety.A total of 43,548 participants underwent randomization, of whom 43,448 received injections: 21,720 with BNT162b2 and 21,728 with placebo. There were 8 cases of Covid-19 with onset at least 7 days after the second dose among participants assigned to receive BNT162b2 and 162 cases among those assigned to placebo; BNT162b2 was 95% effective in preventing Covid-19 (95% credible interval, 90.3 to 97.6). Similar vaccine efficacy (generally 90 to 100%) was observed across subgroups defined by age, sex, race, ethnicity, baseline body-mass index, and the presence of coexisting conditions. Among 10 cases of severe Covid-19 with onset after the first dose, 9 occurred in placebo recipients and 1 in a BNT162b2 recipient. The safety profile of BNT162b2 was characterized by short-term, mild-to-moderate pain at the injection site, fatigue, and headache. The incidence of serious adverse events was low and was similar in the vaccine and placebo groups.A two-dose regimen of BNT162b2 conferred 95% protection against Covid-19 in persons 16 years of age or older. Safety over a median of 2 months was similar to that of other viral vaccines. 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Here, we introduce ‘weighted-nearest neighbor’ analysis, an unsupervised framework to learn the relative utility of each data type in each cell, enabling an integrative analysis of multiple modalities. We apply our procedure to a CITE-seq dataset of hundreds of thousands of human white blood cells alongside a panel of 228 antibodies to construct a multimodal reference atlas of the circulating immune system. We demonstrate that integrative analysis substantially improves our ability to resolve cell states and validate the presence of previously unreported lymphoid subpopulations. Moreover, we demonstrate how to leverage this reference to rapidly map new datasets, and to interpret immune responses to vaccination and COVID-19. Our approach represents a broadly applicable strategy to analyze single-cell multimodal datasets, including paired measurements of RNA and chromatin state, and to look beyond the transcriptome towards a unified and multimodal definition of cellular identity.</jats:p>                 <jats:sec>                   <jats:title>Availability</jats:title>                   <jats:p>                     Installation instructions, documentation, tutorials, and CITE-seq datasets are available at                     <jats:ext-link xmlns:xlink=\"http://www.w3.org/1999/xlink\" ext-link-type=\"uri\" xlink:href=\"http://www.satijalab.org/seurat\">http://www.satijalab.org/seurat</jats:ext-link>                   </jats:p>                 </jats:sec>"],"publicationDate":"2020-10-12","publisher":"openRxiv","embargoEndDate":null,"sources":["Crossref","Cell"],"formats":null,"contributors":null,"coverages":null,"bestAccessRight":{"code":"c_abf2","label":"OPEN","scheme":"http://vocabularies.coar-repositories.org/documentation/access_rights/"},"container":{"name":"Cell","issnPrinted":"0092-8674","issnOnline":null,"issnLinking":null,"ep":"3587.e29","iss":null,"sp":"3573","vol":"184","edition":null,"conferencePlace":null,"conferenceDate":null},"documentationUrls":null,"codeRepositoryUrl":null,"programmingLanguage":null,"contactPeople":null,"contactGroups":null,"tools":null,"size":null,"version":null,"geoLocations":null,"id":"doi_dedup___::8e1010c15c3fa7a74c1d33798b21370c","originalIds":["10.1101/2020.10.12.335331","50|doiboost____|8e1010c15c3fa7a74c1d33798b21370c","S0092867421005833","10.1016/j.cell.2021.04.048","50|doiboost____|a772caeded2e1950a6dff787d3fe2d17","50|openapc_____::a772caeded2e1950a6dff787d3fe2d17","od_______267::6d849a22e1d9e239f2a3050c21ccb618","34062119","PMC8238499","50|od_______267::6d849a22e1d9e239f2a3050c21ccb618","oai:pubmedcentral.nih.gov:8238499","3091832721","3164692211"],"pids":[{"scheme":"doi","value":"10.1101/2020.10.12.335331"},{"scheme":"doi","value":"10.1016/j.cell.2021.04.048"},{"scheme":"pmid","value":"34062119"},{"scheme":"pmc","value":"PMC8238499"}],"dateOfCollection":null,"lastUpdateTimeStamp":null,"indicators":{"citationImpact":{"citationCount":13130.0,"influence":3.1713776E-7,"popularity":8.956839E-6,"impulse":4868.0,"citationClass":"C1","influenceClass":"C1","impulseClass":"C1","popularityClass":"C1"}},"instances":[{"pids":[{"scheme":"doi","value":"10.1101/2020.10.12.335331"}],"license":"CC 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The mRNA-1273 vaccine is a lipid nanoparticle-encapsulated mRNA-based vaccine that encodes the prefusion stabilized full-length spike protein of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the virus that causes Covid-19.This phase 3 randomized, observer-blinded, placebo-controlled trial was conducted at 99 centers across the United States. Persons at high risk for SARS-CoV-2 infection or its complications were randomly assigned in a 1:1 ratio to receive two intramuscular injections of mRNA-1273 (100 μg) or placebo 28 days apart. The primary end point was prevention of Covid-19 illness with onset at least 14 days after the second injection in participants who had not previously been infected with SARS-CoV-2.The trial enrolled 30,420 volunteers who were randomly assigned in a 1:1 ratio to receive either vaccine or placebo (15,210 participants in each group). More than 96% of participants received both injections, and 2.2% had evidence (serologic, virologic, or both) of SARS-CoV-2 infection at baseline. Symptomatic Covid-19 illness was confirmed in 185 participants in the placebo group (56.5 per 1000 person-years; 95% confidence interval [CI], 48.7 to 65.3) and in 11 participants in the mRNA-1273 group (3.3 per 1000 person-years; 95% CI, 1.7 to 6.0); vaccine efficacy was 94.1% (95% CI, 89.3 to 96.8%; P<0.001). Efficacy was similar across key secondary analyses, including assessment 14 days after the first dose, analyses that included participants who had evidence of SARS-CoV-2 infection at baseline, and analyses in participants 65 years of age or older. Severe Covid-19 occurred in 30 participants, with one fatality; all 30 were in the placebo group. Moderate, transient reactogenicity after vaccination occurred more frequently in the mRNA-1273 group. Serious adverse events were rare, and the incidence was similar in the two groups.The mRNA-1273 vaccine showed 94.1% efficacy at preventing Covid-19 illness, including severe disease. Aside from transient local and systemic reactions, no safety concerns were identified. (Funded by the Biomedical Advanced Research and Development Authority and the National Institute of Allergy and Infectious Diseases; COVE ClinicalTrials.gov number, NCT04470427.)."],"publicationDate":"2021-02-04","publisher":"Massachusetts Medical Society","embargoEndDate":null,"sources":["Crossref","N Engl J Med","New England Journal of Medicine"],"formats":["application/pdf"],"contributors":null,"coverages":null,"bestAccessRight":{"code":"c_abf2","label":"OPEN","scheme":"http://vocabularies.coar-repositories.org/documentation/access_rights/"},"container":{"name":"New England Journal of 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Pharmacology"},"provenance":null},{"subject":{"scheme":"keyword","value":"COVID-19 Drug Treatment"},"provenance":null},{"subject":{"scheme":"keyword","value":"RECOVERY Collaborative Group"},"provenance":null},{"subject":{"scheme":"keyword","value":"Coronavirus"},"provenance":null},{"subject":{"scheme":"keyword","value":"/dk/atira/pure/core/keywords/uob_covid19"},"provenance":null},{"subject":{"scheme":"keyword","value":"/dk/atira/pure/core/keywords/uob_covid19; name=Covid19"},"provenance":null},{"subject":{"scheme":"keyword","value":"intravenous"},"provenance":null},{"subject":{"scheme":"keyword","value":"Length of stay"},"provenance":null},{"subject":{"scheme":"keyword","value":"Therapy"},"provenance":null},{"subject":{"scheme":"keyword","value":"Respiration, artificial"},"provenance":null},{"subject":{"scheme":"keyword","value":"Anti-Infective agents/therapeutic use"},"provenance":null}],"mainTitle":"Dexamethasone in Hospitalized Patients with Covid-19","subTitle":null,"descriptions":["BACKGROUND: Coronavirus disease 2019 (Covid-19) is associated with diffuse lung damage. Glucocorticoids may modulate inflammation-mediated lung injury and thereby reduce progression to respiratory failure and death. METHODS: In this controlled, open-label trial comparing a range of possible treatments in patients who were hospitalized with Covid-19, we randomly assigned patients to receive oral or intravenous dexamethasone (at a dose of 6 mg once daily) for up to 10 days or to receive usual care alone. The primary outcome was 28-day mortality. Here, we report the final results of this assessment. RESULTS: A total of 2104 patients were assigned to receive dexamethasone and 4321 to receive usual care. Overall, 482 patients (22.9%) in the dexamethasone group and 1110 patients (25.7%) in the usual care group died within 28 days after randomization (age-adjusted rate ratio, 0.83; 95% confidence interval [CI], 0.75 to 0.93; P&lt;0.001). The proportional and absolute between-group differences in mortality varied considerably according to the level of respiratory support that the patients were receiving at the time of randomization. In the dexamethasone group, the incidence of death was lower than that in the usual care group among patients receiving invasive mechanical ventilation (29.3% vs. 41.4%; rate ratio, 0.64; 95% CI, 0.51 to 0.81) and among those receiving oxygen without invasive mechanical ventilation (23.3% vs. 26.2%; rate ratio, 0.82; 95% CI, 0.72 to 0.94) but not among those who were receiving no respiratory support at randomization (17.8% vs. 14.0%; rate ratio, 1.19; 95% CI, 0.92 to 1.55). CONCLUSIONS: In patients hospitalized with Covid-19, the use of dexamethasone resulted in lower 28-day mortality among those who were receiving either invasive mechanical ventilation or oxygen alone at randomization but not among those receiving no respiratory support. (Funded by the Medical Research Council and National Institute for Health Research and others; RECOVERY ClinicalTrials.gov number, NCT04381936; ISRCTN number, 50189673.)."],"publicationDate":"2021-02-25","publisher":"Massachusetts Medical Society","embargoEndDate":"2020-09-03","sources":["Crossref","New England Journal of Medicine","1533-4406","0028-4793","Roehr, C C 2021, 'Dexamethasone in Hospitalized Patients with Covid-19', New England Journal of Medicine, vol. 384, no. 8, pp. 693-704. https://doi.org/10.1056/NEJMoa2021436","The RECOVERY Collaborative Group, Ustianowski, A, Felton, T & Dark, P 2021, 'Dexamethasone in Hospitalized Patients with Covid-19', New England Journal Of Medicine, vol. 384, no. 8, pp. 693-704. https://doi.org/10.1056/NEJMoa2021436"],"formats":["application/pdf","text/url","12","687214","693 - 704"],"contributors":["Apollo - University of Cambridge Repository","University of St Andrews.School of Medicine","National Institute for Health Research","UK Research 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The study included all sequentially hospitalized patients between March 1, 2020, and April 4, 2020, inclusive of these dates.Confirmed severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection by positive result on polymerase chain reaction testing of a nasopharyngeal sample among patients requiring admission.Clinical outcomes during hospitalization, such as invasive mechanical ventilation, kidney replacement therapy, and death. Demographics, baseline comorbidities, presenting vital signs, and test results were also collected.A total of 5700 patients were included (median age, 63 years [interquartile range {IQR}, 52-75; range, 0-107 years]; 39.7% female). The most common comorbidities were hypertension (3026; 56.6%), obesity (1737; 41.7%), and diabetes (1808; 33.8%). At triage, 30.7% of patients were febrile, 17.3% had a respiratory rate greater than 24 breaths/min, and 27.8% received supplemental oxygen. The rate of respiratory virus co-infection was 2.1%. Outcomes were assessed for 2634 patients who were discharged or had died at the study end point. During hospitalization, 373 patients (14.2%) (median age, 68 years [IQR, 56-78]; 33.5% female) were treated in the intensive care unit care, 320 (12.2%) received invasive mechanical ventilation, 81 (3.2%) were treated with kidney replacement therapy, and 553 (21%) died. As of April 4, 2020, for patients requiring mechanical ventilation (n = 1151, 20.2%), 38 (3.3%) were discharged alive, 282 (24.5%) died, and 831 (72.2%) remained in hospital. The median postdischarge follow-up time was 4.4 days (IQR, 2.2-9.3). A total of 45 patients (2.2%) were readmitted during the study period. The median time to readmission was 3 days (IQR, 1.0-4.5) for readmitted patients. Among the 3066 patients who remained hospitalized at the final study follow-up date (median age, 65 years [IQR, 54-75]), the median follow-up at time of censoring was 4.5 days (IQR, 2.4-8.1).This case series provides characteristics and early outcomes of sequentially hospitalized patients with confirmed COVID-19 in the New York City area."],"publicationDate":"2020-05-26","publisher":"American Medical Association (AMA)","embargoEndDate":null,"sources":["Crossref","JAMA"],"formats":null,"contributors":null,"coverages":null,"bestAccessRight":{"code":"c_abf2","label":"OPEN","scheme":"http://vocabularies.coar-repositories.org/documentation/access_rights/"},"container":{"name":"JAMA","issnPrinted":"0098-7484","issnOnline":null,"issnLinking":null,"ep":null,"iss":null,"sp":"2052","vol":"323","edition":null,"conferencePlace":null,"conferenceDate":null},"documentationUrls":null,"codeRepositoryUrl":null,"programmingLanguage":null,"contactPeople":null,"contactGroups":null,"tools":null,"size":null,"version":null,"geoLocations":null,"id":"doi_dedup___::138f07073c33609ec3c80094d6fbbaf3","originalIds":["10.1001/jama.2020.6775","50|doiboost____|138f07073c33609ec3c80094d6fbbaf3","od_______267::b6510da3369b00595f7686e1551a0dbe","32320003","PMC7177629","3016535995","50|od_______373::fce86d425d4fdc6359f42996427fed68","oai:eprints.whiterose.ac.uk:179361","50|who_________::138f07073c33609ec3c80094d6fbbaf3"],"pids":[{"scheme":"doi","value":"10.1001/jama.2020.6775"},{"scheme":"pmid","value":"32320003"},{"scheme":"pmc","value":"PMC7177629"}],"dateOfCollection":null,"lastUpdateTimeStamp":null,"indicators":{"citationImpact":{"citationCount":7797.0,"influence":6.0280854E-7,"popularity":4.815023E-6,"impulse":7095.0,"citationClass":"C1","influenceClass":"C1","impulseClass":"C1","popularityClass":"C1"}},"instances":[{"pids":[{"scheme":"doi","value":"10.1001/jama.2020.6775"}],"type":"Article","urls":["https://doi.org/10.1001/jama.2020.6775"],"publicationDate":"2020-05-26","refereed":"peerReviewed"},{"pids":[{"scheme":"doi","value":"10.1001/jama.2020.6775"}],"type":"Article","urls":["https://jamanetwork.com/journals/jama/articlepdf/2765184/jama_richardson_2020_oi_200043.pdf"],"refereed":"nonPeerReviewed"},{"pids":[{"scheme":"pmid","value":"32320003"},{"scheme":"pmc","value":"PMC7177629"}],"alternateIdentifiers":[{"scheme":"doi","value":"10.1001/jama.2020.6775"}],"type":"Article","urls":["https://pubmed.ncbi.nlm.nih.gov/32320003"],"publicationDate":"2020-09-25","refereed":"nonPeerReviewed"},{"alternateIdentifiers":[{"scheme":"doi","value":"10.1001/jama.2020.6775"},{"scheme":"mag_id","value":"3016535995"}],"type":"Article","urls":["https://dx.doi.org/10.1001/jama.2020.6775"],"refereed":"nonPeerReviewed"},{"type":"Article","urls":["https://eprints.whiterose.ac.uk/id/eprint/179361/"],"publicationDate":"2020-04-22","refereed":"nonPeerReviewed"},{"alternateIdentifiers":[{"scheme":"doi","value":"10.1001/jama.2020.6775"}],"type":"Article","urls":["http://dx.doi.org/10.1001/jama.2020.6775"],"publicationDate":"2020-05-26","refereed":"nonPeerReviewed"},{"alternateIdentifiers":[{"scheme":"mag_id","value":"3016535995"},{"scheme":"doi","value":"10.1001/jama.2020.6775"}],"type":"Article","urls":["https://dx.doi.org/10.1001/jama.2020.6775"],"refereed":"nonPeerReviewed"}],"isGreen":true,"isInDiamondJournal":false}]}