| Literature DB >> 27473872 |
Ahmed Almashrafi1, Mustafa Elmontsri2, Paul Aylin2.
Abstract
BACKGROUND: Intensive care unit (ICU) care is associated with costly and often scarce resources. In many parts of the world, ICUs are being perceived as major bottlenecks limiting downstream services such as operating theatres. There are many clinical, surgical and contextual factors that influence length of stay. Knowing these factors can facilitate resource planning. However, the extent at which this knowledge is put into practice remains unclear. The aim of this systematic review was to identify factors that impact the duration of ICU stay after cardiac surgery and to explore evidence on the link between understanding these factors and patient and resource management.Entities:
Keywords: Cardiac ICU resource utilisation; Cardiac surgery; Length of stay
Mesh:
Year: 2016 PMID: 27473872 PMCID: PMC4966741 DOI: 10.1186/s12913-016-1591-3
Source DB: PubMed Journal: BMC Health Serv Res ISSN: 1472-6963 Impact factor: 2.655
Search term used in electronic database
| Search terms | |
|---|---|
| LOS | LOS, Extended LOS, long LOS, prolonged LOS, excess LOS |
| Surgery | Cardiac surgery, heart surgery, AND post* |
| Intensive care unit | Critical care, cardiac ICU, ICU, and intensive care |
| Management strategies | Resource planning, bed management, patient flow, scheduling, throughputs, and efficiency |
*used to find other derivates associated with theterm
Fig. 1Search process flow for articles included in the review
Predictors of ICU LOS after cardiac surgery
| Predictive factors | Reference | Predictive factors | Reference |
|---|---|---|---|
| Patient related factors | Arrhythmia / Atrial fibrillation | [ | |
| Increased age | [ | Low Ejection Fraction | [ |
| Gender | [ | Left ventricular dysfunction | [ |
| BMI | [ | NYHA class III-IV | [ |
| Body service area | None | Chronic heart failure | [ |
| Smoking | [ | Critical preoperative state | [ |
| Platelet count | [ | Hypoactive delirium | [ |
| hyperglycaemia | [ | Surgical factors | |
| High preoperative serum creatinine | [ | Non-elective surgery | [ |
| Fat-free mass index | [ | Type of surgery | [ |
| Plasma disappearance rate of indocyanine green | [ | CPB use | [ |
| Previous cardiac surgery | [ | Bypass time | [ |
| Comorbidities | Cross clamp time | [ | |
| Hypertension | [ | Combined surgery | [ |
| COPD | [ | Intra-aortic balloon pump | [ |
| Diabetes | [ | Blood transfusion | [ |
| Insulin-dependent diabetes | [ | Inotropes support | [ |
| Hypercholesterolemia | [ | Triple vessel or left main disease | [ |
| Recent Myocardial infarction | [ | Complications | |
| Renal failure/ dysfunction | [ | Reoperation for bleeding | [ |
| Unstable Angina | [ | Pulmonary | None |
| Pulmonary hypertension | [ | Cardiac | None |
| Angina class IV | [ | Neurological | [ |
| Peripheral vascular disease | [ | Infection | [ |
| Renal complications | None | ||
Abbreviation: COPD chronic obstructive pulmonary disease, BMI Body Mass Index, CPB Cardiopulmonary bypass machine
Studies summary
| RN | First author and year | Country | Number of hospitals | Total patients | Cardiac surgery type | LOS definition | Objective type |
|---|---|---|---|---|---|---|---|
| 1 | Wang, 2012 [ | China | 1 | 3925 | Valve surgery | Prolonged > 7 days | Prediction model |
| 2 | Atoui, 2008 [ | Canada | 1 | 426 | CABG, valve, and combined surgery | Prolonged ≥ 2 days | General description of predictors |
| 3 | Abrahamyan 2006 [ | Armenia | 1 | 391 | Isolated CABG | Prolonged ≥ 3 days | General description of predictors |
| 4 | Augoustides 2006 [ | USA | 1 | 144 | Thoracic Aortic surgery | Prolonged > 5 days | General description of predictors |
| 5 | Ghotkar 2006 [ | UK | 5186 | Isolated CABG | Prolonged > 3 days | Prediction model | |
| 6 | Hein 2006 [ | Germany | 1 | 2683 | CABG, combined, and other | Prolonged > 3 days | General description of predictors |
| 7 | Rosenfeld 2006 [ | USA | 1 | 9869 | Isolated CABG | Prolonged ≥ 7 days | General description of predictors |
| 8 | Horer 2008 [ | Germany | 1 | 281 | Atrial septal defect closure | Prolonged > 2 days | General description of predictors |
| 9 | Lei 2009 [ | China | 1 | 298 | Aortic arch surgery | Prolonged > 5 days | General description of predictors |
| 10 | Widyastuti 2012 [ | Norway | 1 | 4994 | CABG, Valve, Combined, and other | Prolonged > 2, 5, 7 days | General description of predictors |
| 11 | Wagener 2011 [ | USA | 1 | 1201 | CABG, valve, Combined, and other | ICU LOS < 2 days | Prediction model |
| 12 | Tribuddharat 2014 [ | Thailand | 1 | 168 | CABG, Valve, and combined | ICU LOS < 42 h | Prediction model |
| 13 | Scott 2005 [ | USA | 1 | 1746 | CABG | Continuous | General description of predictors |
| 14 | Scott 2008 [ | USA | 1 | 1746 | CABG | Continuous | General description of predictors |
| 15 | Herman, 2009 [ | Canada | 1 | 3483 | CABG | Prolonged > 3 days | Prediction model |
| 16 | Graf, 2010 [ | Germany | 1 | CABG | Continuous | General description of predictors | |
| 17 | Giakoumidakis, 2011 [ | Greece | 1 | 313 | CABG, valve, and combined | Prolonged ≥ 2 days | General description of predictors |
| 18 | De Cocker, 2011 [ | Belgium | 1 | 1566 | CABG, valve, combined, and other | Prolonged > 2, 5, 7 days & continuous | Prediction model |
| 19 | Cacciatore, 2012 [ | Italy | 1 | 250 (≥65 years) | CABG, valve, and combined | Prolonged ≥ 3 days | General description of predictors |
| 20 | Azarfarin, 2014 [ | Iran | 1 | 280 | CABG, valve, and combined | Prolonged > 4 days | General description of predictors |
| 21 | Nakasuji, 2005 [ | Japan | 1 | 100 | CABG | Prolonged > 3 days | General description of predictors |
| 22 | Eltheni, 2012 [ | Greece | 1 | 150 | CABG, valve, combined, and other | Prolonged ≥ 2 days | General description of predictors |
| 23 | Bignami, 2012 [ | Italy | 1 | 27 | CABG, valve, combined, other | Prolonged > 24 h | General description of predictors |
| 24 | Stransky, 2011 [ | Germany | 1 | 506 | CABG, valve, combined, other | Continuous | General description of predictors |
| 25 | Weis, 2014 [ | Germany | 1 | 190 | CABG, valve, combined | Prolonged > 3 days | General description of predictors |
| 26 | Ezeldin, 2013 [ | Saudi Arabia | 1 | 1033 | CABG, valve | Prolonged > 3 days | General description of predictors |
| 27 | Oliveira, 2013 [ | Brazil | 1 | 104 | CABG | Prolonged > 3 days | General description of predictors |
| 28 | Venrooij, 2011 [ | Netherlands | 1 | 325 | CABG, valve, combined | Not specified | General description of predictors |
| 29 | Barili | Italy | 1 | 3861 | CABG, valve, combined, other | Continuous | Prediction model |
Newcastle-Ottawa modified for cross-sectional studies
| Study | Selection | Comparability | Outcome | Total | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Representativeness of the sample | Sample size | Confounding factors | Assessment | Statistical test | |||||||||||
| A* | B* | C | D | A* | B | A* | B* | A** | B** | C* | D | A* | B | ||
| 1. Abrahamyan, L., et al., Determinants of Morbidity and Intensive Care Unit Stay after Coronary Surgery. Asian Cardiovascular and Thoracic Annals | + | + | + | + | 5 | ||||||||||
| 2. Atoui, R., et al., Risk factors for prolonged stay in the intensive care unit and on the ward after cardiac surgery. | + | + | + | + | + | 4 | |||||||||
| 3. Augoustides, J.G., et al., Clinical predictors for prolonged intensive care unit stay in adults undergoing thoracic aortic surgery requiring deep hypothermic circulatory arrest. | + | + | + | + | + | 5 | |||||||||
| 4. Azarfarin, R., et al., Factors influencing prolonged ICU stay after open heart surgery. | + | + | + | + | 5 | ||||||||||
|
| + | + | + | + | + | + | 7 | ||||||||
| 6. De Cocker, J., et al., Preoperative prediction of intensive care unit stay following cardiac surgery. | + | + | + | + | + | + | 7 | ||||||||
| 7. Eltheni, R., et al., Predictors of prolonged stay in the intensive care unit following cardiac surgery. | + | + | + | + | + | 6 | |||||||||
| 8. Ghotkar, S.V., et al., Preoperative calculation of risk for prolonged intensive care unit stay following coronary artery bypass grafting. | + | + | + | + | 5 | ||||||||||
| 9. Giakoumidakis, K., et al., Risk factors for prolonged stay in cardiac surgery intensive care units. | + | + | + | + | + | 6 | |||||||||
| 10. Hein, O.V., et al., Prolonged intensive care unit stay in cardiac surgery: risk factors and long-term-survival. | + | + | + | + | + | 6 | |||||||||
| 11. Herman, C., et al., Predicting prolonged intensive care unit length of stay in patients undergoing coronary artery bypass surgery--development of an entirely preoperative scorecard. | + | + | + | + | + | 6 | |||||||||
| 12. Horer, J., et al., Risk factors for prolonged intensive care treatment following atrial septal defect closure in adults. | + | + | + | + | 3 | ||||||||||
| 13. Lei, Q., et al., Preoperative and intraoperative risk factors for prolonged intensive care unit stay after aortic arch surgery. | + | + | + | + | + | 5 | |||||||||
| 14. Nakasuji, M., M. Matsushita, and A. Asada, Risk factors for prolonged ICU stay in patients following coronary artery bypass grafting with a long duration of cardiopulmonary bypass. | + | + | + | + | 4 | ||||||||||
| 15. Scott, B.H., F.C. Seifert, and R. Grimson, Blood transfusion is associated with increased resource utilisation, morbidity and mortality in cardiac surgery. | + | + | + | + | 5 | ||||||||||
| 16. Scott, B.H., et al., Octogenarians undergoing coronary artery bypass graft surgery: resource utilization, postoperative mortality, and morbidity. | + | + | + | + | + | 6 | |||||||||
| 17. Tribuddharat, S., et al., Development of an open-heart intraoperative risk scoring model for predicting a prolonged intensive care unit stay. | + | + | + | + | + | 5 | |||||||||
| 18. Wagener, G., et al., The Surgical Procedure Assessment (SPA) score predicts intensive care unit length of stay after cardiac surgery. | + | + | + | + | + | 5 | |||||||||
| 19. Wang, C., et al., Risk model of prolonged intensive care unit stay in Chinese patients undergoing heart valve surgery. | + | + | + | + | + | 6 | |||||||||
| 20. Widyastuti, Y., et al., Length of intensive care unit stay following cardiac surgery: is it impossible to find a universal prediction model? | + | + | + | + | + | 6 | |||||||||
| 21. Bignami et al. Urinary neutrophil gelatinase-associated lipocalin as an early predictor of prolonged intensive care unit stay after cardiac surgery | + | + | + | + | 5 | ||||||||||
| 22. Venrooij et al. The impact of low preoperative fat-free body mass on infections and length of stay after cardiac surgery: A prospective cohort study | + | + | + | + | + | 6 | |||||||||
| 23. Stransky et al. Hypoactive Delirium After Cardiac Surgery as an Independent Risk Factor for Prolonged Mechanical Ventilation | + | + | + | + | + | 6 | |||||||||
| 24. Ezeldin Relation between serum creatinine and postoperative results of open-heart surgery | + | + | + | + | + | 6 | |||||||||
| 25. Wies et al. Indocyanine green clearance as an outcome prediction tool in cardiac surgery: A prospective study | + | + | + | + | + | + | 7 | ||||||||
| 26. Barili et al. An original model to predict Intensive Care Unit length-of stay after cardiac surgery in a competing risk framework | + | + | + | + | + | 6 | |||||||||
| 27. Oliveira E, et al., Risk factors for prolonged hospital stay after isolated coronary artery bypass grafting | + | + | + | + | + | 6 | |||||||||
The number of stars for each item is represented by asterisks*
Newcastle-Ottawa: case-control studies
| Study | Selection | Comparability | Exposure | Total | |||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Case definition | Representativeness of the cases | Selection of controls | Definition of controls | Confounding factors | Ascertainment of exposure | Same method of ascertainment for case and controls | Non-response rate | ||||||||||||||||
| A* | B | C | A* | B | A* | B | C | A* | B | A* | B* | A* | B | C | D | E | A* | B | A* | B | C | ||
| 28. Graf, K., et al., Economic aspects of deep sternal wound infections. | + | + | + | + | + | + | + | + | 5 | ||||||||||||||
| 29. Rosenfeld, R., et al., Predictors and outcomes of extended intensive care unit length of stay in patients undergoing coronary artery bypass graft surgery. | + | + | + | + | + | + | + | + | 5 | ||||||||||||||
The number of stars for each item is represented by asterisks*