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P50 | author | Catherine Bouman | Q114443081 |
Heleen M Oudemans-van Straaten | Q114443083 | ||
Beginning and Ending Supportive Therapy for the Kidney (BEST Kidney) Investigators | Q114443084 | ||
Rinaldo Bellomo | Q28321777 | ||
Claudio Ronco | Q28324237 | ||
Hiroshi Morimatsu | Q46532698 | ||
Noel Gibney | Q58621178 | ||
Etienne Macedo | Q59708165 | ||
Miet Schetz | Q87482524 | ||
John A Kellum | Q88345864 | ||
Ashita J Tolwani | Q88628094 | ||
Sean M Bagshaw | Q93022635 | ||
Dinna N. Cruz | Q114371810 | ||
Shigehiko Uchino | Q114443077 | ||
Stanislao Morgera | Q114443080 | ||
P2093 | author name string | Ian Tan | |
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P433 | issue | 9 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | patient | Q181600 |
handgun | Q1574963 | ||
P304 | page(s) | 2739-2744 | |
P577 | publication date | 2009-04-06 | |
P1433 | published in | Nephrology Dialysis Transplantation | Q15710302 |
P1476 | title | A comparison of observed versus estimated baseline creatinine for determination of RIFLE class in patients with acute kidney injury | |
P478 | volume | 24 |
Q36928243 | A comparison of RIFLE with and without urine output criteria for acute kidney injury in critically ill patients |
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Q33853372 | Acute kidney injury in non-severe pneumonia is associated with an increased immune response and lower survival |
Q44601675 | Acute kidney injury in patients with influenza A (H1N1) 2009. |
Q88315477 | Acute kidney injury in patients with severe sepsis or septic shock: a comparison between the 'Risk, Injury, Failure, Loss of kidney function, End-stage kidney disease' (RIFLE), Acute Kidney Injury Network (AKIN) and Kidney Disease: Improving Global |
Q33663205 | Acute kidney injury in severe trauma assessed by RIFLE criteria: a common feature without implications on mortality? |
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Q37419305 | Acute kidney injury subphenotypes based on creatinine trajectory identifies patients at increased risk of death |
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Q70590407 | Advanced age affects the outcome-predictive power of RIFLE classification in geriatric patients with acute kidney injury |
Q26765785 | Applications for detection of acute kidney injury using electronic medical records and clinical information systems: workgroup statements from the 15(th) ADQI Consensus Conference |
Q35692503 | Are surrogate assumptions and use of diuretics associated with diagnosis and staging of acute kidney injury after cardiac surgery? |
Q36086640 | Assessment of the RIFLE criteria for the diagnosis of Acute Kidney Injury; a retrospective study in South-Western Ghana |
Q95792936 | Authors' response |
Q39556406 | Back-calculating baseline creatinine overestimates prevalence of acute kidney injury with poor sensitivity. |
Q33944834 | Back-calculating baseline creatinine with MDRD misclassifies acute kidney injury in the intensive care unit |
Q42955480 | Baseline creatinine to define acute kidney injury: is there any consensus? |
Q93016679 | Big Data and Pediatric Acute Kidney Injury: The Promise of Electronic Health Record Systems |
Q44078659 | Biomarkers for acute kidney injury: combining the new silver with the old gold |
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Q37848650 | Classification and staging of acute kidney injury: beyond the RIFLE and AKIN criteria |
Q37900798 | Clearance and beyond: the complementary roles of GFR measurement and injury biomarkers in acute kidney injury (AKI). |
Q35567192 | Clinical accuracy of RIFLE and Acute Kidney Injury Network (AKIN) criteria for acute kidney injury in patients undergoing cardiac surgery |
Q39837354 | Clinical analysis of etiology, risk factors and outcome in patients with acute kidney injury |
Q33752077 | Combining creatinine and volume kinetics identifies missed cases of acute kidney injury following cardiac arrest |
Q33750591 | Comparison of RIFLE with and without urine output criteria for acute kidney injury in critically ill patients: a task still not concluded! |
Q45730187 | Comparison of kidney disease: improving global outcomes and acute kidney injury network criteria for assessing patients in intensive care units |
Q26764989 | Creatinine-based definitions: from baseline creatinine to serum creatinine adjustment in intensive care |
Q82558614 | Defining acute kidney injury: Further steps in the right direction but can détente be maintained?* |
Q34469775 | Defining the cause of death in hospitalised patients with acute kidney injury |
Q33617822 | Diagnosis and outcomes of acute kidney injury using surrogate and imputation methods for missing preadmission creatinine values |
Q41148547 | Early Acute Kidney Injury based on Serum Creatinine or Cystatin C in Intensive Care Unit after Major Trauma |
Q43158426 | Early intervention with erythropoietin does not affect the outcome of acute kidney injury (the EARLYARF trial). |
Q35939256 | Establishing a continuum of acute kidney injury - tracing AKI using data source linkage and long-term follow-up: Workgroup Statements from the 15th ADQI Consensus Conference |
Q35917438 | Estimating baseline kidney function in hospitalized patients with impaired kidney function |
Q55478103 | Evaluation of Acute Kidney Injury and Mortality After Intensive Blood Pressure Control in Patients With Intracerebral Hemorrhage. |
Q47853225 | Evaluation of the accuracy of estimated baseline serum creatinine for acute kidney injury diagnosis |
Q42224730 | Evaluation of trial outcomes in acute kidney injury by creatinine modeling. |
Q36633733 | Four hour creatinine clearance is better than plasma creatinine for monitoring renal function in critically ill patients |
Q34775926 | Identification and predicting short-term prognosis of early cardiorenal syndrome type 1: KDIGO is superior to RIFLE or AKIN |
Q44516040 | Identification of IGFBP-7 by urinary proteomics as a novel prognostic marker in early acute kidney injury |
Q50942539 | Impact of Cystatin C and RIFLE on Renal Function Assessment After Cardiac Surgery |
Q37448863 | Improved performance of urinary biomarkers of acute kidney injury in the critically ill by stratification for injury duration and baseline renal function |
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Q33594947 | Long-term risk of mortality after acute kidney injury in patients with sepsis: a contemporary analysis |
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Q34439098 | The growth of acute kidney injury: a rising tide or just closer attention to detail? |
Q33881260 | The impact of transient and persistent acute kidney injury on short-term outcomes in very elderly patients |
Q44077397 | The incidence of acute kidney injury in patients with traumatic brain injury |
Q50531638 | The initial development and assessment of an automatic alert warning of acute kidney injury |
Q33751128 | The urine output definition of acute kidney injury is too liberal |
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Q39873347 | Timed and targeted therapy for acute kidney injury: a glimpse of the future |
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Q36492516 | Use of multiple imputation method to improve estimation of missing baseline serum creatinine in acute kidney injury research |
Q36496441 | Validity of the International Classification of Diseases, Tenth Revision code for acute kidney injury in elderly patients at presentation to the emergency department and at hospital admission. |
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