Atrial fibrillation (AF) is one of the most concerning diseases in the field of cardiac arrhythmias. It is a type of rapid supraventricular arrhythmia characterized by rapid and disorganized contraction of the atria, which leads to ventricular rate disturbance, impaired cardiac function, and an increased risk of atrial mural thrombus formation. AF severely reduces patients' quality of life and can cause complications such as heart failure, stroke, and sudden death. Currently, the vast majority of AF episodes are triggered by pulmonary vein (PV) ectopic foci. Therefore, catheter ablation is the preferred treatment strategy, with pulmonary vein isolation (PVI) being the cornerstone procedure. However, a small proportion of patients may have non-PV triggers, particularly originating from the superior vena cava (SVC). Conventional radiofrequency ablation (RFA) for SVC isolation carries unpredictable risks, including damage to the sinus node and the phrenic nerve. Therefore, this study aims to investigate the impact of empirical SVC electrical isolation in addition to PVI on the success rate of AF ablation, using pulsed field ablation (PFA)-a non-thermal ablation modality with tissue selectivity and a favorable safety profile.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
TRIPLE
Enrollment
200
Eligible patients with atrial fibrillation who are randomized to the experimental group will undergo superior vena cava (SVC) electrical isolation in addition to pulmonary vein isolation (PVI) during the pulsed field ablation procedure
Eligible patients with atrial fibrillation who are randomized to the control group will undergo pulmonary vein isolation (PVI) during the pulsed field ablation procedure
Qiang Hu
Chengdu, Sichuan, China
RECRUITINGthe success rate of atrial fibrillation ablation
it is assessed by 7-day Holter monitoring
Time frame: at 3 month
the success rate of atrial fibrillation ablation
it is assessed by 7-day Holter monitoring
Time frame: at 6 month and 12 month
6-min walk distance
During the test, patients were asked to walk for 6 minutes on a long corridor with a length of 37.5 meters between the 2 marks
Time frame: at 3 month, 6 month and 12 month
red blood cell count
It is obtained from the routine blood test.
Time frame: at 3 month, 6 month and 12 month
hemoglobin
It is obtained from the routine blood test.
Time frame: at 3 month, 6 month and 12 month
white blood cell count
It is obtained from the routine blood test.
Time frame: at 3 month, 6 month and 12 month
platelet count
It is obtained from the routine blood test.
Time frame: at 3 month, 6 month and 12 month
alanine aminotransferase
It is obtained from the liver function test.
Time frame: at 3 month, 6 month and 12 month
aspartate aminotransferase
It is obtained from the liver function test.
Time frame: at 3 month, 6 month and 12 month
creatinine
It is obtained from the renal function test
Time frame: at 3 month, 6 month and 12 month
urea
It is obtained from the renal function test
Time frame: at 3 month, 6 month and 12 month
estimated glomerular filtration rate
It is obtained from the renal function test
Time frame: at 3 month, 6 month and 12 month
activated partial thromboplastin time
It is obtained from the coagulation function test
Time frame: at 3 month, 6 month and 12 month
prothrombin time
It is obtained from the coagulation function test
Time frame: at 3 month, 6 month and 12 month
international normalized ratio
It is obtained from the coagulation function test
Time frame: at 3 month, 6 month and 12 month
B-type natriuretic peptide
It is obtained from a blood sample.
Time frame: at 3 month, 6 month and 12 month
left ventricular end-systolic diameter
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
left ventricular end-diastolic diameter
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
left ventricular posterior wall thickness
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
interventricular septal thickness
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
left ventricular ejection fraction
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
E/A
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
E/e'
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
left atrial volume index
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
left atrial anteroposterior diameter
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
left atrial strain
it is measured by echocardiography
Time frame: at 3 month, 6 month and 12 month
New York Heart Association class
The NYHA is measured by Classification of NYHA heart function
Time frame: at 3 month, 6 month and 12 month
Atrial Fibrillation Effect on Quality of Life Questionnaire
AFEQT questionnaire was used to assess the quality of life of patients with atrial fibrillation.
Time frame: at 3 month, 6 month and 12 month
Major adverse events
Major adverse events is a composite endpoint of death, stroke, and myocardial infarction.
Time frame: at 3 month, 6 month and 12 month
readmission
Rehospitalization was indicated for atrial fibrillation.
Time frame: at 3 month, 6 month and 12 month
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