scholarly journals Electrophysiological Characteristics Related to Outcome after Catheter Ablation of Idiopathic Ventricular Arrhythmia Originating from the Papillary Muscle in the Left Ventricle

2013 ◽  
Vol 43 (12) ◽  
pp. 811 ◽  
Author(s):  
Ji-Eun Ban ◽  
Hyun-Soo Lee ◽  
Dae-In Lee ◽  
Hwan-Cheol Park ◽  
Jae-Seok Park ◽  
...  
2020 ◽  
Vol 27 (2) ◽  
pp. 16-25
Author(s):  
A. V. Chapurnykh ◽  
S. V. Lakomkin ◽  
V. B. Nizhnichenko ◽  
V. Yu. Tcivkovskii ◽  
I. S. Gilfanova

Author(s):  
Javier Pinos ◽  
Tiago Luiz Luz Leiria ◽  
Bernardo Boccalon ◽  
Marcelo Lapa Kruse ◽  
Gustavo Glotz De Lima

Heart Rhythm ◽  
2021 ◽  
Vol 18 (8) ◽  
pp. S442-S443
Author(s):  
Zain Gowani ◽  
Brett Matthew Tomashitis ◽  
Leah John ◽  
Ahmadreza Karimianpour ◽  
Patrick Badertscher ◽  
...  

2021 ◽  
Vol 8 (31) ◽  
pp. 2865-2869
Author(s):  
Praveen Mulki Shenoy ◽  
Amith Ramos ◽  
Narasimha Pai ◽  
Bharath Shetty ◽  
Aravind Pallipady Rao

BACKGROUND The papillary muscle basal connections have significant clinical implications. Variety of studies done on its morphology and function by various specialists in different departments. A close look on these revealed the interconnections of papillary muscles to one another and to the interventricular septum of both ventricles is related to uncoordinated contractions of papillary muscles, leading to hyper or hypokinesia or prolapse or even its rupture. METHODS Our study done in 25 formalin soaked hearts revealed after the deep and meticulous dissection, reflecting the walls of ventricles laterally the numerous interconnections of papillary muscles at its bases and IVS. Ventricles are opened by inverted ‘L’ shaped incision and its reflected more laterally till all the papillary muscles is visible in one frame after incising the moderator band. The connections were noted, measured, photographed, tabulated, compared with similar studies and analysed with experts with respective fields. RESULTS Almost all the specimens did have the interconnections. Further the post mortem findings of the cardiac related deaths with involvement of papillary muscles suggest damage to such ‘bridges’. The moderator band extensions to the base of right APM, and its extension to the posterior groups is noted in all the specimens. The bridge from the IVS to bases of both the groups of papillary muscles is noted in left ventricle. In90% of specimens the one PPM is found to be loosely connected, more so in left ventricle. CONCLUSIONS We are of a conclusion that such basal interconnections and to the interventricular septum are responsible for rhythmic contractions of papillary muscles of both ventricles. Since the AV valves have to open simultaneously, interconnections becomes mandatory as the impulse has to reach it before it reaches the trabeculae carniae. One of the Posterior papillary muscles is loosely connected to other papillary muscles, may be the reason for its rupture, more so in left ventricle. KEYWORDS Papillary Muscle, Interbasal Connection, Moderator Band, Valvular Prolapse, AV Valves


2020 ◽  
Vol 9 (2) ◽  
pp. 97-103
Author(s):  
Fouad Khalil ◽  
Konstantinos Siontis ◽  
Gabor Bagameri ◽  
Ammar M Killu ◽  
◽  
...  

Catheter ablation is a rapidly expanding and evolving field. The advent of interventional techniques and advances in technology have allowed catheter ablation to supplant antiarrhythmic surgery for ventricular arrhythmia treatment. However, issues related to access and energy delivery limit the use of catheter ablation in some cases. Hybrid catheter-based and surgical techniques represent a novel approach to overcome these limitations. The hybrid technique combines the strengths and minimises the limitations of either catheter or surgical ablation alone. There is a growing body of evidence in the literature supporting the safety and efficacy of the hybrid surgical technique. This review aims to provide an overview of hybrid surgical-catheter ablation for ventricular arrhythmia.


Author(s):  
Guy Rozen ◽  
Gabby Elbaz‐Greener ◽  
Nizar Andria ◽  
E. Kevin Heist ◽  
Jeremy N. Ruskin ◽  
...  

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