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Semi-quantitative Assessment Using [18F]FDG Tracer in Patients with Severe Brain Injury
Published on: November 9, 2018
Variation in metabolic demand following severe pediatric traumatic brain injury: A case review
Melissa M Wallinga1,2, Melanie Newkirk1, Michelle T Gardner2
1Department of Clinical and Preventative Nutrition Sciences, School of Health Professions, Rutgers University, Newark, New Jersey, USA.
Insights
Early nutrition support is vital for pediatric traumatic brain injury (TBI) patients. Indirect calorimetry helps tailor nutrition, improving outcomes by avoiding under or overfeeding.
Area of Science:
- Pediatric Traumatology
- Clinical Nutrition
- Metabolic Medicine
Background:
- Traumatic brain injury (TBI) is a common pediatric trauma in the US.
- Early enteral nutrition within 48 hours is critical for TBI patients.
- Accurate nutrition support is challenging due to variable metabolic responses.
Observation:
- Indirect calorimetry (IC) is recommended for measuring energy needs in TBI, unlike predictive equations.
- A case review examined the metabolic response in a child with severe TBI using IC.
- The team successfully met measured energy requirements despite fluid overload.
Findings:
- IC identified a variable metabolic response to severe TBI in a pediatric patient.
- Early provision of nutrition based on measured needs was achieved.
- This likely positively impacted the patient's clinical and functional recovery.
Implications:
- Early, individualized nutrition support based on measured energy expenditure may improve TBI outcomes.
- Further research is needed on pediatric TBI metabolic responses and optimal feeding strategies.
- Implementing IC in clinical practice could enhance nutrition management for pediatric TBI survivors.
Abstract:
A traumatic brain injury (TBI) is one of the most common pediatric traumas among children in the United States. Appropriate nutrition support, including the initiation of early enteral nutrition, within the first 48 h after injury is crucial for children with a TBI. It is important that clinicians avoid both underfeeding and overfeeding, as both can lead to poor outcomes. However, the variable metabolic response to a TBI can make determining appropriate nutrition support difficult. Because of the dynamic metabolic demand, indirect calorimetry (IC) is recommended, instead of predictive equations, to measure energy requirements. Although IC is suggested and ideal, few hospitals have the technology available. This case review discusses the variable metabolic response, identified using IC, in a child with a severe TBI. The case report highlights the ability of the team to meet measured energy requirements early, even in the setting of fluid overload. It also highlights the presumed positive impact of early and appropriate nutrition provision on the patient's clinical and functional recovery. Further research is needed to investigate the metabolic response to TBIs in children and the impact optimal feedings based on the measured resting energy expenditure have on clinical, functional, and rehabilitation outcomes.
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