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Section 7 - Comfort and Recovery

Published online by Cambridge University Press:  27 July 2023

Ned Gilbert-Kawai
Affiliation:
The Royal Liverpool Hospital
Debashish Dutta
Affiliation:
Princess Alexandra Hospital NHS Trust, Harlow
Carl Waldmann
Affiliation:
Royal Berkshire Hospital, Reading
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Summary

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Type
Chapter
Information
Intensive Care Medicine
The Essential Guide
, pp. 653 - 670
Publisher: Cambridge University Press
Print publication year: 2021

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References

References and Further Reading

Clancy, O, Edginton, T, Casarin, A, Vizcaychipi, MP. The psychological and neurocognitive consequences of critical illness. A pragmatic review of current evidence. J Intensive Care Soc 2015;16:226–33.CrossRefGoogle ScholarPubMed
Hatch, R, Young, D, Barber, V, Griffiths, J, Harrison, DA, Watkinson, P. Anxiety, depression and post traumatic stress disorder after critical illness: a UK-wide prospective cohort study. Crit Care 2018;22:310.CrossRefGoogle ScholarPubMed
Marra, A, Ely, EW, Pandharipande, PP, Patel, MB. The ABCDEF bundle in critical care. Crit Care Clin 2017;33:225–43.CrossRefGoogle ScholarPubMed
National Institute for Health and Care Excellence. 2010. Costing report. Rehabilitation after critical illness costing report, February, 1–39.Google Scholar
National Institute for Health and Care Excellence. 2017. Rehabilitation after critical illness in adults. www.nice.org.uk/guidance/qs158/resources/rehabilitation-after-critical-illness-in-adults-pdf-75545546693317Google Scholar
Rawal, G, Yadav, S, Kumar, R. Post-intensive care syndrome: an overview. J Transl Intern Med 2017;5:90–2.CrossRefGoogle ScholarPubMed

References and Further Reading

Devlin, JW, Skrobik, Y, Gelinas, C, et al. Clinical practice guideline for the prevention and management of pain, agitation/sedation, delirium, immobility, and sleep disruption in adult patients in the ICU. Crit Care Med 2018;46:e825–73.CrossRefGoogle ScholarPubMed
Kemp, HI, Bantel, C, Gordon, F, Brett, SJ, Laycock, HC. Pain Assessment in INTensive care (PAINT): an observational study of physician-documented pain assessment in 45 intensive care units in the United Kingdom. Anaesthesia 2017;72:737–48.CrossRefGoogle ScholarPubMed
Laycock, HC, Ward, S, Halmshaw, C, Nagy, I, Bantel, C. Pain in intensive care: a personalized healthcare approach. J Intensive Care Soc 2013;14:312–18.Google Scholar
Payen, J, Bosson, JL, Chanques, G, Mantz, J, Labarere, J; DOLOREA Investigators. Pain assessment is associated with decreased duration of mechanical ventilation in the intensive care unit: a post hoc analysis of the DOLOREA Study. Anaesthesiology 2009;6:1308–16.Google Scholar
Payen, J, Bru, O, Bosson, JL, et al. Assessing pain in critically ill sedated patients by using a behavioural pain scale. Crit Care Med 2001;29:2258–63.CrossRefGoogle Scholar

References and Further Reading

Murray, M, DeBlock, H, Erstad, B, et al. Clinical practice guidelines for sustained neuromuscular blockade in the adult critically ill patient. Crit Care Med 2016;44:2079–98.Google Scholar
National Heart, Lung, and Blood Institute PETAL Clinical Trials Network; Moss, M, Huang, DT, Brower, RG, et al. Early neuromuscular blockade in the acute respiratory distress syndrome. N Engl J Med 2019;380:19972008.Google ScholarPubMed
Price, DR, Mikkelsen, ME, Umscheid, CA, Armstrong, EJ. Neuromuscular blocking agents and neuromuscular dysfunction acquired in critical illness: a systematic review and meta-analysis. Crit Care Med 2016;44:2070–8.CrossRefGoogle ScholarPubMed
Shehabi, Y, Howe, BD, Bellomo, R, et al. Early sedation with dexmedetomidine in critically ill patients. N Engl J Med 2019;380:2506–17.CrossRefGoogle ScholarPubMed
Whitehouse, T, Snelson, C, Grounds, M (eds). 2014. Intensive Care Society review of best practice for analgesia and sedation in the critical care. www.ics.ac.uk/Society/Guidance/PDFs/Analgesia_and_SedationGoogle Scholar

References and Further Reading

National Institute for Health and Care Excellence. 2017. Rehabilitation after critical illness in adults. Quality standard [QS158]. www.nice.org.uk/guidance/qs158Google Scholar
Puthucheary, ZA, Rawal, J, McPhail, M, et al. Acute skeletal muscle wasting in critical illness. JAMA 2013;310:1591–600.Google Scholar
Schaller, S, Anstey, M, Blobner, M, et al. Early, goal-directed mobilisation in the surgical intensive care unit: a randomised controlled trial. Lancet 2016;388:1377–88.CrossRefGoogle ScholarPubMed
Society of Critical Care Medicine. 2018. ICU Liberation Bundle (A–F). www.sccm.org/ICULiberation/ABCDEF-BundlesGoogle Scholar
Wright, SE, Thomas, K, Watson, G, et al. Intensive versus standard physical rehabilitation therapy in the critically ill (EPICC): a multicentre, parallel-group, randomised controlled trial. Thorax 2017;73:213–21.Google Scholar

References and Further Reading

Azoulay, E, Vincent, JL, Angus, DC, et al. Recovery after critical illness: putting the puzzle together – a consensus of 29. Crit Care 2017;21:296.Google Scholar
Cuthbertson, BH, Wunsch, H. Long-term outcomes after critical illness. The best predictor of the future is the past. Am J Respir Crit Care Med 2016;194:132–4.CrossRefGoogle ScholarPubMed
Needham, DM, Sepulveda, KA, Dinglas, VD, et al. Core outcome measures for clinical research in acute respiratory failure survivors. An International Modified Delphi Consensus study. Am J Respir Crit Care Med 2017;196:1122–30.CrossRefGoogle ScholarPubMed
Schofield-Robinson, OJ, Lewis, SR, Smith, AF, McPeake, J, Alderson, P. Follow-up services for improving long-term outcomes in intensive care unit (ICU) survivors. Cochrane Database Syst Rev 2018;2:CD012701.Google Scholar
Sevin, CM, Jackson, JC. Post-ICU clinics should be staffed by ICU clinicians. Crit Care Med 2019;47:268–72.CrossRefGoogle ScholarPubMed
Wang, T, Derhovanessian, A, De Cruz, S, et al. Subsequent infections in survivors of sepsis: epidemiology and outcomes. J Intensive Care Med 2014;29:8795.Google Scholar

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