A cardiac electrophysiology study (EP test or EP study) is a minimally invasive procedure using catheters introduced through a vein or artery to record electrical activity from within the heart. This electrical activity is recorded when the heart is in a normal rhythm (sinus rhythm) to assess the conduction system of the heart and to look for additional electrical connections (accessory pathways), and during any abnormal heart rhythms that can be induced. EP studies are used to investigate the cause, location of origin, and best treatment for various abnormal heart rhythms, and are often followed by a catheter ablation during the same procedure.
It is important for patients not to eat or drink for up to 12 hours before the procedure. This is to prevent vomiting, which can result in aspiration, and also cause severe bleeding from the insertion site of the catheter. Failure to follow this simple preparation may result in dangerous consequences. In general, small amounts of water can be consumed up to 2 hours before the exam. Patients should try to schedule the exam at a time when they will be having symptoms and will not need to drive for 2 to 3 days.
An EP study is typically performed in an EP lab or cath lab. These are specially equipped operating rooms that usually contain an X-ray machine capable of acquiring live X-ray video images (a fluoroscope), equipment to record electrical signals from the heart, a stimulator to electrically excite the heart and control the heart rate, and ablation equipment to destroy abnormal tissue. A 3D navigation system that tracks and records the catheter position and associated electrical signals may also be used.
The procedure may be performed awake under local anaesthetic, or under general anaesthetic. Monitoring equipment is attached including an automated blood pressure cuff and a pulse oximeter to measure the oxygen saturation of the blood. A peripheral venous cannula is generally inserted to allow medication to be given such as sedatives, anesthesia, or drugs.
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Les troubles du rythme cardiaque ou arythmies sont une famille de maladies cardiaques. Un rythme sinusal correspond au rythme cardiaque normal, c'est-à-dire piloté par le nœud sinusal avec conservation de la séquence « contraction des oreillettes »-« contraction des ventricules ». Un trouble du rythme correspond donc à un rythme cardiaque non sinusal : on parle de « tachycardie » lorsque la fréquence cardiaque est rapide ; et de « bradycardie » lorsque la fréquence cardiaque est lente.
Cardiac electrophysiology is a branch of cardiology and basic science focusing on the electrical activities of the heart. The term is usually used in clinical context, to describe studies of such phenomena by invasive (intracardiac) catheter recording of spontaneous activity as well as of cardiac responses to programmed electrical stimulation - clinical cardiac electrophysiology. However, cardiac electrophysiology also encompasses basic research and translational research components.
La tachycardie ventriculaire polymorphe catécholergique est un trouble génétique du rythme cardiaque caractérisé par une instabilité électrique de la cellule musculaire cardiaque exacerbée par la stimulation du système nerveux sympathique. Des mutations sur deux gènes sont connus responsables de cette maladie : le RYR2 (codant le récepteur à la ryanodine) qui se transmet de façon autosomique dominante mais avec un taux de mutation de novo de 50 % et le CASQ2 (codant la calsequestrine cardiaque) qui se transmet de façon autosomique récessive mais avec un taux de mutation de novo de 1 à 2 %.
Explore la régulation du système cardiovasculaire, en se concentrant sur les influences sympathiques et parasympathiques, le cycle cardiaque et la résistance vasculaire.
Explore la modélisation détaillée des canaux ioniques et des morphologies neuronales dans les neurosciences silico, couvrant la classification des neurones, la cinétique des canaux ioniques et les observations expérimentales.
In this research paper, we conducted a study to investigate the connection between three objective measures: Electrocardiogram(ECG), Electrogastrogram (EGG), and Electroencephalogram (EEG), and individuals' susceptibility to cybersickness. Our primary obje ...
2024
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Background Superimposition of farfield (FF) and nearfield (NF) bipolar voltage electrograms (BVE) complicates the confirmation of pulmonary vein (PV) isolation after catheter ablation of atrial fibrillation. Our aim was to develop an automatic algorithm ba ...
SPRINGER2023
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When generating in-silico clinical electrophysiological outputs, such as electrocardiograms (ECGs) and body surface potential maps (BSPMs), mathematical models have relied on single physics, i.e. of the cardiac electrophysiology (EP), neglecting the role o ...