Cryoablation

Cryoablation is a minimally invasive medical technique that destroys targeted tissue by exposing it to extreme cold, offering a controlled alternative to surgical removal or heat-based ablation. During treatment, a probe circulates a cryogenic agent such as argon, rapidly lowering tissue temperature and forming ice crystals that disrupt cell membranes; repeated freeze-thaw cycles and local vascular injury expand the lesion. Physicians use cryoablation to treat selected tumors, cardiac arrhythmias, and other abnormal tissues, often with image guidance. Its precise treatment zones, reduced damage to surrounding structures, and potential for shorter recovery make it valuable in interventional medicine.

Cryoablation - Related Videos

Research

JoVE Journal - Medicine

A New Technique for Treating Low-risk Prostate Cancer—Super Active Surveillance

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2025

Overtreatment is often administered to patients with low-risk prostate cancer; super-active surveillance can help avoid such overtreatment.

Research

JoVE Journal - Medicine
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Reduction of Iatrogenic Atrial Septal Defects with an Anterior and Inferior Transseptal Puncture Site when Operating the Cryoballoon Ablation Catheter

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Cited by 18 •

2015

The goal of this study is to demonstrate the preferential location of transseptal puncture during a cryoballoon catheter ablation procedure for the treatment of atrial fibrillation.

Research

JoVE Journal - Medicine
Free Sample

Thermal Ablation for the Treatment of Abdominal Tumors

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Cited by 19 •

2011

A thermal tumor ablation procedure is described. The entire procedure is detailed, including pretreatment planning and imaging studies, anesthesia, adjuvant techniques to facilitate a percutaneous approach, imaging guidance of the ablation device to the tumor, thermal treatment, post-treatment care and follow-up.

Research

JoVE Journal - Medicine
Free Sample

Direct Pressure Monitoring Accurately Predicts Pulmonary Vein Occlusion During Cryoballoon Ablation

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Cited by 18 •

2013

Effective pulmonary vein isolation utilizing a cryoballoon depends on complete pulmonary vein occlusion. The point of occlusion can be effectively predicted by direct analysis of pulmonary vein pressure waveform analysis during balloon inflation using a simple and reproducible technique.

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