Bipolar Radiofrequency Electrode at Ellen Megan blog

Bipolar Radiofrequency Electrode. Radiofrequency (rf) catheter ablation is an effective option for ventricular tachycardia (vt) in many patients, but its efficacy is limited when the origin of the vt is intramural. The basic principle underlying the physics of bipolar rf is the increased current flow within the tissue encompassed between the catheter tips, thus. Bipolar radiofrequency catheter ablation creates confluent lesions at a larger interelectrode. A total number of 93 bipolar applications (12±10 application/patient) were delivered (mean bipolar rf time 508±565 s, mean power 35±13 w, and mean impedance 163±18 ω). Bipolar radiofrequency (rf) ablation strategies are increasingly used, mainly to target deep myocardial reentrant circuits responsible for ventricular tachycardia that cannot be. We therefore developed a radiofrequency bipolar electrode for controlled, targeted ablation through joule heating induction.

Disposable Bipolar Plasma Electrode for Endoscope Spine Ablation Surgery
from www.endotopmed.com

The basic principle underlying the physics of bipolar rf is the increased current flow within the tissue encompassed between the catheter tips, thus. A total number of 93 bipolar applications (12±10 application/patient) were delivered (mean bipolar rf time 508±565 s, mean power 35±13 w, and mean impedance 163±18 ω). Bipolar radiofrequency catheter ablation creates confluent lesions at a larger interelectrode. Radiofrequency (rf) catheter ablation is an effective option for ventricular tachycardia (vt) in many patients, but its efficacy is limited when the origin of the vt is intramural. Bipolar radiofrequency (rf) ablation strategies are increasingly used, mainly to target deep myocardial reentrant circuits responsible for ventricular tachycardia that cannot be. We therefore developed a radiofrequency bipolar electrode for controlled, targeted ablation through joule heating induction.

Disposable Bipolar Plasma Electrode for Endoscope Spine Ablation Surgery

Bipolar Radiofrequency Electrode A total number of 93 bipolar applications (12±10 application/patient) were delivered (mean bipolar rf time 508±565 s, mean power 35±13 w, and mean impedance 163±18 ω). Radiofrequency (rf) catheter ablation is an effective option for ventricular tachycardia (vt) in many patients, but its efficacy is limited when the origin of the vt is intramural. Bipolar radiofrequency catheter ablation creates confluent lesions at a larger interelectrode. A total number of 93 bipolar applications (12±10 application/patient) were delivered (mean bipolar rf time 508±565 s, mean power 35±13 w, and mean impedance 163±18 ω). Bipolar radiofrequency (rf) ablation strategies are increasingly used, mainly to target deep myocardial reentrant circuits responsible for ventricular tachycardia that cannot be. The basic principle underlying the physics of bipolar rf is the increased current flow within the tissue encompassed between the catheter tips, thus. We therefore developed a radiofrequency bipolar electrode for controlled, targeted ablation through joule heating induction.

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