Harrie N Lafeber
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Explore the profile of Harrie N Lafeber including associated specialties, affiliations and a list of published articles.
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51
Citations
518
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Recent Articles
1.
van de Lagemaat M, Ruys C, Muts J, Finken M, Rotteveel J, van Goudoever J, et al.
Am J Clin Nutr
. 2024 May;
120(1):111-120.
PMID: 38719093
Background: Infants born moderate-to-late preterm (i.e., 32 wk-35 wk 6 d gestation) are, analogous to those born very preterm, at risk of later obesity, hypertension, and diabetes. Appropriate early life...
2.
Yumani D, Walschot F, Lafeber H, van Weissenbruch M
Nutrients
. 2024 Apr;
16(7).
PMID: 38612991
Insulin-like growth factor I (IGF-I) has been suggested as an important factor in the pathogenesis of bronchopulmonary dysplasia (BPD). In turn, nutrition has been associated with IGF-I levels and could...
3.
Yumani D, de Jongh D, Ket J, Lafeber H, van Weissenbruch M
Pediatr Res
. 2022 Aug;
93(5):1120-1140.
PMID: 35995939
Background: There are several methods to measure body composition in preterm infants. Yet, there is no agreement on which method should be preferred. Methods: PubMed, Embase.com, Wiley/Cochrane Library, and Google...
4.
Yumani D, Lafeber H, van Weissenbruch M
J Endocr Soc
. 2021 Jun;
5(7):bvab089.
PMID: 34159288
Context: There are concerns that a higher fat mass in the early life of preterm infants is associated with adverse cardiometabolic outcomes in young adulthood. Objective: To investigate the role...
5.
Ruys C, van de Lagemaat M, Rotteveel J, Finken M, Lafeber H
Eur J Pediatr
. 2021 Jan;
180(6):1665-1673.
PMID: 33517483
Preterm-born children are at risk for later neurodevelopmental problems and cardiometabolic diseases; early-life growth restriction and suboptimal neonatal nutrition have been recognized as risk factors. Prevention of these long-term sequelae...
6.
Yumani D, de Jongh D, Lafeber H, van Weissenbruch M
Eur J Pediatr
. 2020 Oct;
180(3):919-927.
PMID: 33006007
The aim of this study was to compare whole body composition, generated by air displacement plethysmography (ADP) and dual-energy X-ray absorptiometry (DXA), and to evaluate the potential predictive value of...
7.
Geurtzen R, van Heijst A, Draaisma J, Kuijpers L, Woiski M, Scheepers H, et al.
Pediatrics
. 2019 Jun;
143(6).
PMID: 31160512
Objectives: To develop a nationwide, evidence-based framework to support prenatal counseling in extreme prematurity, focusing on organization, decision-making, content, and style aspects. Methods: A nationwide multicenter RAND-modified Delphi method study...
8.
Ruys C, Broring T, van Schie P, van de Lagemaat M, Rotteveel J, Finken M, et al.
Clin Nutr ESPEN
. 2019 Mar;
30:190-198.
PMID: 30904221
Background: Children born very preterm are at risk for cognitive deficits and motor impairment. Enhanced protein intake immediately after very preterm birth has been associated with favorable growth and improved...
9.
Ruys C, Hollanders J, Broring T, van Schie P, van der Pal S, van de Lagemaat M, et al.
Pediatr Res
. 2018 Aug;
85(3):283-292.
PMID: 30140070
Background: Increasing numbers of preterm-born children survive nowadays, and improving long-term health and neurodevelopment is becoming more important. Early-life growth has been linked to neurodevelopmental outcomes. We aimed to study...
10.
Ruys C, van de Lagemaat M, Lafeber H, Rotteveel J, Finken M
Clin Endocrinol (Oxf)
. 2018 May;
89(1):76-84.
PMID: 29727484
Objective: Preterm birth has been associated with altered body composition, especially increased fat mass (FM) and decreased bone mineralization, and leptin and IGF-1 have been suggested to be involved in...