T Alexander Quinn

T Alexander Quinn

Dalhousie University

H-index: 28

North America-Canada

About T Alexander Quinn

T Alexander Quinn, With an exceptional h-index of 28 and a recent h-index of 21 (since 2020), a distinguished researcher at Dalhousie University, specializes in the field of Cardiovascular Physiology.

His recent articles reflect a diverse array of research interests and contributions to the field:

POPDC1 Variants Cause Atrioventricular Node Dysfunction and Arrhythmogenic Changes in Cardiac Electrophysiology and Intracellular Calcium Handling in …

Repolarisation-relaxation dyscoupling and TRPA1 activation permit systolic mechano-arrhythmogenesis

An In-Silico Study on Integrated Mechanisms of Mechano-Electric Coupling in Ischemic Arrhythmogenesis

Heart rate and rhythm: molecular Basis, pharmacological modulation and clinical implications

Mechano-Electric Coupling in the Heart: Effects on Heart Rate and Rhythm

Mechanistic Basis of Sinoatrial Node Pacemaker Failure in Atrial Cardiomyopathy

Suppressors of cGAS‐STING are downregulated during fin‐limb regeneration and aging in aquatic vertebrates

Towards the Development of an in Silico Model for the Zebrafish Action Potential

T Alexander Quinn Information

University

Position

___

Citations(all)

3030

Citations(since 2020)

1654

Cited By

1931

hIndex(all)

28

hIndex(since 2020)

21

i10Index(all)

52

i10Index(since 2020)

33

Email

University Profile Page

Google Scholar

T Alexander Quinn Skills & Research Interests

Cardiovascular Physiology

Top articles of T Alexander Quinn

POPDC1 Variants Cause Atrioventricular Node Dysfunction and Arrhythmogenic Changes in Cardiac Electrophysiology and Intracellular Calcium Handling in …

Genes

2024/2/23

Thomas Brand
Thomas Brand

H-Index: 20

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Repolarisation-relaxation dyscoupling and TRPA1 activation permit systolic mechano-arrhythmogenesis

bioRxiv

2024

T Alexander Quinn
T Alexander Quinn

H-Index: 19

An In-Silico Study on Integrated Mechanisms of Mechano-Electric Coupling in Ischemic Arrhythmogenesis

arXiv preprint arXiv:2312.06535

2023/12/11

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Heart rate and rhythm: molecular Basis, pharmacological modulation and clinical implications

2023/12/8

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Mechano-Electric Coupling in the Heart: Effects on Heart Rate and Rhythm

2023/12/8

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Rebecca A Capel
Rebecca A Capel

H-Index: 8

Mechanistic Basis of Sinoatrial Node Pacemaker Failure in Atrial Cardiomyopathy

Circulation

2023/11/7

Martin Mackasey
Martin Mackasey

H-Index: 8

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Suppressors of cGAS‐STING are downregulated during fin‐limb regeneration and aging in aquatic vertebrates

Journal of Experimental Zoology Part B: Molecular and Developmental Evolution

2023/10/25

Towards the Development of an in Silico Model for the Zebrafish Action Potential

2023/10/1

Ludovica Cestariolo
Ludovica Cestariolo

H-Index: 1

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Cellular and subcellular mechanisms of ventricular mechano-arrhythmogenesis

2023/4/20

T Alexander Quinn
T Alexander Quinn

H-Index: 19

The in vivo study of cardiac mechano-electric and mechano-mechanical coupling during heart development in zebrafish

Frontiers in Physiology

2023/3/16

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Cell-contact-mediated assembly of contractile airway smooth muscle rings

Biomedical Materials

2023/3/1

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Perivascular Excitation Tunnelling: a Novel and Preventable Cause of Cardiac Reperfusion Arrhythmias

bioRxiv

2023

Bo Han
Bo Han

H-Index: 3

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Guidelines for assessment of cardiac electrophysiology and arrhythmias in small animals

2022/12/1

Matthew W Kay
Matthew W Kay

H-Index: 20

Na Li
Na Li

H-Index: 5

T Alexander Quinn
T Alexander Quinn

H-Index: 19

The Bainbridge effect: stretching our understanding of cardiac pacemaking for more than a century

2022/10

T Alexander Quinn
T Alexander Quinn

H-Index: 19

PO-614-02 MICROTUBULE DETYROSINATION AND TRPA1 DRIVE STRETCH-INDUCED ARRHYTHMIAS IN THE ISOLATED RABBIT HEART

Heart Rhythm

2022/5/1

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Drivers of sinoatrial node automaticity in zebrafish: comparison with mechanisms of mammalian pacemaker function

Frontiers in Physiology

2022/2/28

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Optogenetic suppression of drug-induced early afterdepolarisations in the zebrafish heart

Biophysical Journal

2022/2/11

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Seeing the light: The use of zebrafish for optogenetic studies of the heart

2021/12/23

T Alexander Quinn
T Alexander Quinn

H-Index: 19

Stretch-Induced Arrhythmias Are Increased by Microtubule Detyrosination in a TRPA1 Dependent Manner in the Rabbit Heart

Circulation

2021/11/16

T Alexander Quinn
T Alexander Quinn

H-Index: 19

From mice to mainframes: Experimental models for investigation of the intracardiac nervous system

2021/11/4

T Alexander Quinn
T Alexander Quinn

H-Index: 19

See List of Professors in T Alexander Quinn University(Dalhousie University)

Co-Authors

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