Jacques M T de Bakker
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Explore the profile of Jacques M T de Bakker including associated specialties, affiliations and a list of published articles.
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122
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3407
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Recent Articles
1.
de Bakker J, Coronel R
PLoS One
. 2023 May;
18(5):e0286103.
PMID: 37205655
In Mimosa pudica plants, local and global responses to environmental stimuli are associated with different types of electrical activity. Non-damaging stimuli (e.g. cooling) generate action potentials (APs), whereas damaging stimuli...
2.
Groen M, van Driel V, Neven K, van Wessel H, de Bakker J, Doevendans P, et al.
Circ Arrhythm Electrophysiol
. 2022 Aug;
15(8):e010835.
PMID: 35917465
Background: Irreversible electroporation (IRE) ablation is generally performed with multielectrode catheters. Electrode-tissue contact is an important predictor for the success of pulmonary vein (PV) isolation; however, contact force is difficult...
3.
van Weperen V, Dunnink A, Bossu A, Beekman J, Meijborg V, de Bakker J, et al.
Front Physiol
. 2021 May;
12:642083.
PMID: 33981248
Introduction: Torsade de pointes arrhythmias (TdP) in the chronic atrioventricular block (CAVB) dog model result from proarrhythmic factors, which trigger TdP and/or reinforce the arrhythmic substrate. This study investigated electrophysiological...
4.
de Bakker J, Belterman C, Coronel R
Bioelectrochemistry
. 2021 Apr;
140:107810.
PMID: 33845442
Mammalian heart cells and cells of leaves of Dionaea muscipula share the ability to generate propagated action potentials, because the excitable cells are electrically coupled. In the heart the propagated...
5.
Roudijk R, Bosman L, van der Heijden J, de Bakker J, Hauer R, van Tintelen J, et al.
J Clin Med
. 2020 Feb;
9(2).
PMID: 32079223
Fragmented QRS complexes (fQRS) are common in patients with arrhythmogenic cardiomyopathy (ACM). A new method of fQRS quantification may aid early disease detection in pathogenic variant carriers and assessment of...
6.
van Opbergen C, Noorman M, Pfenniger A, Copier J, Vermij S, Li Z, et al.
Int J Mol Sci
. 2019 Aug;
20(17).
PMID: 31438494
Human variants in plakophilin-2 (PKP2) associate with most cases of familial arrhythmogenic cardiomyopathy (ACM). Recent studies show that PKP2 not only maintains intercellular coupling, but also regulates transcription of genes...
7.
Cardiomyocyte Progenitor Cells as a Functional Gene Delivery Vehicle for Long-Term Biological Pacing
Vegh A, den Haan A, Cocera Ortega L, Verkerk A, Sluijter J, Bakker D, et al.
Molecules
. 2019 Jan;
24(1).
PMID: 30621310
Sustained pacemaker function is a challenge in biological pacemaker engineering. Human cardiomyocyte progenitor cells (CMPCs) have exhibited extended survival in the heart after transplantation. We studied whether lentivirally transduced CMPCs...
8.
Veldkamp M, Geuzebroek G, Baartscheer A, Verkerk A, Schumacher C, Suarez G, et al.
Nat Commun
. 2018 Oct;
9(1):4357.
PMID: 30341287
The cardiac autonomic nervous system (ANS) controls normal atrial electrical function. The cardiac ANS produces various neuropeptides, among which the neurokinins, whose actions on atrial electrophysiology are largely unknown. We...
9.
van Dongen I, Kolk M, Elias J, Meijborg V, Coronel R, de Bakker J, et al.
J Electrocardiol
. 2018 Sep;
51(5):906-912.
PMID: 30177338
Introduction: Chronic total coronary occlusions (CTOs) have been associated with a higher prevalence of ventricular arrhythmias compared to patients without a CTO. We evaluated the effect of CTO revascularization on...
10.
Vandersickel N, Bossu A, De Neve J, Dunnink A, Meijborg V, van der Heyden M, et al.
JACC Clin Electrophysiol
. 2018 May;
3(13):1565-1576.
PMID: 29759839
Objectives: This study investigated the arrhythmogenic mechanisms responsible for torsade de pointes (TdP) in the chronic atrioventricular block dog model, known for its high susceptibility for TdP. Background: The mechanism...