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Nutrition therapy and critical illness: practical guidance for the ICU, post-ICU, and long-term convalescence phases
by
van Zanten, Arthur Raymond Hubert
, De Waele, Elisabeth
, Wischmeyer, Paul Edmund
in
Amino acids
/ Autophagy
/ Best practice
/ Calories
/ Convalescence
/ Critical care
/ Critical Care - methods
/ Critical Care - standards
/ Critical Care Medicine
/ Critical Illness - therapy
/ Diet therapy
/ Disabilities
/ Emergency Medicine
/ Energy
/ Enteral nutrition
/ Evidence-based medicine
/ Exercise
/ Health aspects
/ Health care costs
/ Health care reform
/ Hospital admission and discharge
/ Hospital patients
/ Human nutrition
/ Humans
/ Hypophosphatemia
/ Illnesses
/ Intensive
/ Intensive care
/ Intensive Care Units - standards
/ Long-Term Care - methods
/ Long-Term Care - standards
/ Medical economics
/ Medicine
/ Medicine & Public Health
/ Metabolism
/ Mitochondrial dysfunction
/ Mortality
/ Nutrition
/ Nutrition therapy
/ Nutrition Therapy - methods
/ Nutrition Therapy - standards
/ Nutritional Status - physiology
/ Overfeeding
/ Parenteral nutrition
/ Phosphates
/ Protein
/ Protein synthesis
/ Proteins
/ Review
/ Underfeeding
2019
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Nutrition therapy and critical illness: practical guidance for the ICU, post-ICU, and long-term convalescence phases
by
van Zanten, Arthur Raymond Hubert
, De Waele, Elisabeth
, Wischmeyer, Paul Edmund
in
Amino acids
/ Autophagy
/ Best practice
/ Calories
/ Convalescence
/ Critical care
/ Critical Care - methods
/ Critical Care - standards
/ Critical Care Medicine
/ Critical Illness - therapy
/ Diet therapy
/ Disabilities
/ Emergency Medicine
/ Energy
/ Enteral nutrition
/ Evidence-based medicine
/ Exercise
/ Health aspects
/ Health care costs
/ Health care reform
/ Hospital admission and discharge
/ Hospital patients
/ Human nutrition
/ Humans
/ Hypophosphatemia
/ Illnesses
/ Intensive
/ Intensive care
/ Intensive Care Units - standards
/ Long-Term Care - methods
/ Long-Term Care - standards
/ Medical economics
/ Medicine
/ Medicine & Public Health
/ Metabolism
/ Mitochondrial dysfunction
/ Mortality
/ Nutrition
/ Nutrition therapy
/ Nutrition Therapy - methods
/ Nutrition Therapy - standards
/ Nutritional Status - physiology
/ Overfeeding
/ Parenteral nutrition
/ Phosphates
/ Protein
/ Protein synthesis
/ Proteins
/ Review
/ Underfeeding
2019
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Nutrition therapy and critical illness: practical guidance for the ICU, post-ICU, and long-term convalescence phases
by
van Zanten, Arthur Raymond Hubert
, De Waele, Elisabeth
, Wischmeyer, Paul Edmund
in
Amino acids
/ Autophagy
/ Best practice
/ Calories
/ Convalescence
/ Critical care
/ Critical Care - methods
/ Critical Care - standards
/ Critical Care Medicine
/ Critical Illness - therapy
/ Diet therapy
/ Disabilities
/ Emergency Medicine
/ Energy
/ Enteral nutrition
/ Evidence-based medicine
/ Exercise
/ Health aspects
/ Health care costs
/ Health care reform
/ Hospital admission and discharge
/ Hospital patients
/ Human nutrition
/ Humans
/ Hypophosphatemia
/ Illnesses
/ Intensive
/ Intensive care
/ Intensive Care Units - standards
/ Long-Term Care - methods
/ Long-Term Care - standards
/ Medical economics
/ Medicine
/ Medicine & Public Health
/ Metabolism
/ Mitochondrial dysfunction
/ Mortality
/ Nutrition
/ Nutrition therapy
/ Nutrition Therapy - methods
/ Nutrition Therapy - standards
/ Nutritional Status - physiology
/ Overfeeding
/ Parenteral nutrition
/ Phosphates
/ Protein
/ Protein synthesis
/ Proteins
/ Review
/ Underfeeding
2019
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Nutrition therapy and critical illness: practical guidance for the ICU, post-ICU, and long-term convalescence phases
Journal Article
Nutrition therapy and critical illness: practical guidance for the ICU, post-ICU, and long-term convalescence phases
2019
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Overview
Background
Although mortality due to critical illness has fallen over decades, the number of patients with long-term functional disabilities has increased, leading to impaired quality of life and significant healthcare costs. As an essential part of the multimodal interventions available to improve outcome of critical illness, optimal nutrition therapy should be provided during critical illness, after ICU discharge, and following hospital discharge.
Methods
This narrative review summarizes the latest scientific insights and guidelines on ICU nutrition delivery. Practical guidance is given to provide optimal nutrition therapy during the three phases of the patient journey.
Results
Based on recent literature and guidelines, gradual progression to caloric and protein targets during the initial phase of ICU stay is recommended. After this phase, full caloric dose can be provided, preferably based on indirect calorimetry. Phosphate should be monitored to detect refeeding hypophosphatemia, and when occurring, caloric restriction should be instituted. For proteins, at least 1.3 g of proteins/kg/day should be targeted after the initial phase. During the chronic ICU phase, and after ICU discharge, higher protein/caloric targets should be provided preferably combined with exercise. After ICU discharge, achieving protein targets is more difficult than reaching caloric goals, in particular after removal of the feeding tube. After hospital discharge, probably very high-dose protein and calorie feeding for prolonged duration is necessary to optimize the outcome. High-protein oral nutrition supplements are likely essential in this period. Several pharmacological options are available to combine with nutrition therapy to enhance the anabolic response and stimulate muscle protein synthesis.
Conclusions
During and after ICU care, optimal nutrition therapy is essential to improve the long-term outcome to reduce the likelihood of the patient to becoming a “victim” of critical illness. Frequently, nutrition targets are not achieved in any phase of recovery. Personalized nutrition therapy, while respecting different targets during the phases of the patient journey after critical illness, should be prescribed and monitored.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
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