Kuberan Pushparajah
Overview
Explore the profile of Kuberan Pushparajah including associated specialties, affiliations and a list of published articles.
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120
Citations
948
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Recent Articles
1.
Cromb D, Finck T, Bonthrone A, Uus A, Van Poppel M, Steinweg J, et al.
J Neurodev Disord
. 2025 Feb;
17(1):7.
PMID: 39939911
Background: Improved long-term outcomes, related to advances in surgical and clinical care of infants with congenital heart disease (CHD), has shifted focus onto the accompanying and later-onset cognitive and neuropsychiatric...
2.
Stephenson N, Rosenthal E, Jones M, Deng S, Wheeler G, Pushparajah K, et al.
Circ Cardiovasc Interv
. 2024 Nov;
17(12):e013964.
PMID: 39498563
Background: Covered stent correction (CSC) of a superior sinus venosus atrial septal defect is an alternative to surgery in selected patients, but anatomic variation means that assessment for CSC requires...
3.
Wilson S, Cromb D, Bonthrone A, Uus A, Price A, Egloff A, et al.
J Am Heart Assoc
. 2024 Oct;
13(21):e035880.
PMID: 39450739
Background: Altered structural brain development has been identified in fetuses with congenital heart disease (CHD), suggesting that the neurodevelopmental impairment observed later in life might originate in utero. There are...
4.
Cromb D, Wilson S, Bonthrone A, Chew A, Kelly C, Kumar M, et al.
Brain Commun
. 2024 Oct;
6(5):fcae356.
PMID: 39429246
Congenital heart disease is associated with impaired early brain development and adverse neurodevelopmental outcomes. This study investigated how individualized measures of preoperative cortical gyrification index differ in 142 infants with...
5.
Bonthrone A, Kyriakopoulou V, Mason L, Chew A, Falconer S, Kelly C, et al.
JCPP Adv
. 2024 Oct;
4(3):e12232.
PMID: 39411470
Background: Congenital Heart Disease (CHD) is the most common congenital abnormality. Survival rates are over 90%, however infants with CHD remain at high risk of attention and executive function impairments....
6.
Zhang C, Cleri M, Woodgate T, Gilliland P, Bansal S, Aviles Verdera J, et al.
Front Pediatr
. 2024 Sep;
12:1418645.
PMID: 39318614
Purpose: This study aims to investigate the feasibility of using a commercially available clinical 0.55 T MRI scanner for comprehensive structural and functional fetal cardiac imaging. Methods: Balanced steady-state free...
7.
Hermida U, van Poppel M, Sabry M, Keramati H, Steinweg J, Simpson J, et al.
Comput Biol Med
. 2024 Sep;
182:109077.
PMID: 39265477
Accurate prenatal diagnosis of coarctation of the aorta (CoA) is challenging due to high false positive rate burden and poorly understood aetiology. Despite associations with abnormal blood flow dynamics, fetal...
8.
Kowalik G, Kerfoot E, Kunze K, Neji R, Moon T, Mellor N, et al.
Magn Reson Med
. 2024 Sep;
93(1):311-320.
PMID: 39219165
Purpose: MRI-guidance of cardiac catheterization is currently performed using one or multiple 2D imaging planes, which may be suboptimal for catheter navigation, especially in patients with complex anatomies. The purpose...
9.
Cromb D, Steinweg J, Aviles Verdera J, van Poppel M, Bonthrone A, Lloyd D, et al.
J Magn Reson Imaging
. 2024 Jul;
61(3):1246-1255.
PMID: 38994701
Background: Congenital heart disease (CHD) has been linked to impaired placental and fetal brain development. Assessing the placenta and fetal brain in parallel may help further our understanding of the...
10.
Voges I, Raimondi F, McMahon C, Ait-Ali L, Babu-Narayan S, Botnar R, et al.
Eur Heart J Cardiovasc Imaging
. 2024 Jul;
25(12):e274-e294.
PMID: 38985851
Cardiovascular magnetic resonance (CMR) imaging is recommended in patients with congenital heart disease (CHD) in clinical practice guidelines as the imaging standard for a large variety of diseases. As CMR...