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Techniques for Temperature Monitoring of Myocardial Tissue Undergoing Radiofrequency Ablation Treatments: An Overview
by
Massaroni, Carlo
, Schena, Emiliano
, Zaltieri, Martina
, Cauti, Filippo Maria
in
Catheter Ablation
/ fiber bragg grating sensors
/ fluoroptic sensors
/ infrared thermometry
/ Myocardium
/ Radiofrequency Ablation
/ Review
/ Temperature
/ temperature measurements
/ thermistors
/ thermocouples
/ Thermometry
2021
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Techniques for Temperature Monitoring of Myocardial Tissue Undergoing Radiofrequency Ablation Treatments: An Overview
by
Massaroni, Carlo
, Schena, Emiliano
, Zaltieri, Martina
, Cauti, Filippo Maria
in
Catheter Ablation
/ fiber bragg grating sensors
/ fluoroptic sensors
/ infrared thermometry
/ Myocardium
/ Radiofrequency Ablation
/ Review
/ Temperature
/ temperature measurements
/ thermistors
/ thermocouples
/ Thermometry
2021
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Do you wish to request the book?
Techniques for Temperature Monitoring of Myocardial Tissue Undergoing Radiofrequency Ablation Treatments: An Overview
by
Massaroni, Carlo
, Schena, Emiliano
, Zaltieri, Martina
, Cauti, Filippo Maria
in
Catheter Ablation
/ fiber bragg grating sensors
/ fluoroptic sensors
/ infrared thermometry
/ Myocardium
/ Radiofrequency Ablation
/ Review
/ Temperature
/ temperature measurements
/ thermistors
/ thermocouples
/ Thermometry
2021
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Techniques for Temperature Monitoring of Myocardial Tissue Undergoing Radiofrequency Ablation Treatments: An Overview
Journal Article
Techniques for Temperature Monitoring of Myocardial Tissue Undergoing Radiofrequency Ablation Treatments: An Overview
2021
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Overview
Cardiac radiofrequency ablation (RFA) has received substantial attention for the treatment of multiple arrhythmias. In this scenario, there is an ever-growing demand for monitoring the temperature trend inside the tissue as it may allow an accurate control of the treatment effects, with a consequent improvement of the clinical outcomes. There are many methods for monitoring temperature in tissues undergoing RFA, which can be divided into invasive and non-invasive. This paper aims to provide an overview of the currently available techniques for temperature detection in this clinical scenario. Firstly, we describe the heat generation during RFA, then we report the principle of work of the most popular thermometric techniques and their features. Finally, we introduce their main applications in the field of cardiac RFA to explore the applicability in clinical settings of each method.
Publisher
MDPI,MDPI AG
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