Increase in threshold to ventricular activation related to atrial contraction

1971 ◽  
Vol 82 (4) ◽  
pp. 531-535 ◽  
Author(s):  
Ronald Danzig ◽  
George Diamond
Heart Rhythm ◽  
2021 ◽  
Vol 18 (8) ◽  
pp. S60
Author(s):  
Alan Cheng ◽  
Larry A. Chinitz ◽  
Surinder Kaur Khelae ◽  
Clemens Steinwender ◽  
Todd J. Sheldon ◽  
...  

2019 ◽  
pp. 199-206
Author(s):  
О. З. Скакун ◽  
С. В. Федоров ◽  
О. С. Вербовська ◽  
І. З. Твердохліб

Distinctive atrioventricular type I heart block is diagnosed when the PQ interval is 0.30 s. or more. Prolongation of the PQ interval more than 0.50 s. is a very rare condition. Usually it is associated with a pseudo-pacemaker syndrome. The last one manifests itself with dizziness, syncope, general weakness, shortness of breath upon physical exertion, cough, seizures, cold sweat, a feeling of pulsation in the head, neck and abdomen, a headache, paroxysmal nocturnal dyspnea, swelling of the lower extremities, tachypnea and jugular venous pulsation. The P wave appears immediately after the previous QRS complex. Atrial contraction occurs at the moment when the ventricles don’t relax after the previous contraction; due to the fact that pressure in the ventricles at this moment is higher than in the atria, the tricuspid and mitral valves remains closed. During the atrial contraction, most of the blood is ejected not into the ventricles, but backward into the pulmonary veins from the left atrium and into the venae cavae from the right atrium. Also, an atrial kick is absent which results in a less ventricular filling. There is increased pressure in the atria leading to their distension and excessive secretion of the atrial natriuretic peptide. A case report of the distinctive atrioventricular type I heart block associated with the pseudo-pacemaker syndrome is described. The patient suffered from a pre-syncope, short-term dizziness during the previous two days, tinnitus, general weakness, feeling of pulsation in the abdomen, neck, head, which interfered with his sleep. He developed these complaints after an infectious disease, which manifested as a runny nose and sore throat. In this patient, an extremely prolonged PQ interval up to 0.70 s. was observed. Also, episodes of Mobitz I and Mobitz type II atrioventricular block were detected. During the monitoring of patient state, the interval PQ was gradually shortening, and in 1 month it reached the normаl duration. It can be assumed that in the case of distinctive atrioventricular type I heart block, a significant prolongation of the refractory period in the rapid pathways of the AV-node plays a key role in the pathogenesis of this condition. According to the recommendations of the ACC/AHA (1998), for patients with distinctive atrioventricular type I heart block accompanied by the pseudo-pacemaker syndrome and documented alleviation of symptoms with temporary AV pacing, the pacemaker implantation should be considered (IIaB). The implantation of dual chamber pacemaker may reduce symptoms and lead to an improvement in the functional state of patients, in whom shortening of the interval between atrial and ventricular contractions improves hemodynamics. For asymptomatic patients with the PQ interval of ≥ 0.30 s, pacemaker is not recommended. The distinctive atrioventricular type I heart block in patients with pseudo-pacemaker syndrome is a rare condition and often remains undiagnosed. But it may have a benign course with a gradual normalization of the PQ interval. Indications for permanent pacemaker implantation should be reviewed as this block may be completely reversible. A permanent pacemaker may be used in the case of absence of positive dynamics in a shortening of the PQ interval.    


2021 ◽  
pp. 102143
Author(s):  
Julia Camps ◽  
Brodie Lawson ◽  
Christopher Drovandi ◽  
Ana Minchole ◽  
Zhinuo Jenny Wang ◽  
...  

2004 ◽  
Vol 52 (Suppl 2) ◽  
pp. S357.3-S357
Author(s):  
D. Xing ◽  
F. G. Devecchi ◽  
T. R. Staley ◽  
D. S. Glassman ◽  
J. B. Martins

Sensors ◽  
2021 ◽  
Vol 21 (9) ◽  
pp. 3235
Author(s):  
Koichi Fujiwara ◽  
Shota Miyatani ◽  
Asuka Goda ◽  
Miho Miyajima ◽  
Tetsuo Sasano ◽  
...  

Heart rate variability, which is the fluctuation of the R-R interval (RRI) in electrocardiograms (ECG), has been widely adopted for autonomous evaluation. Since the HRV features that are extracted from RRI data easily fluctuate when arrhythmia occurs, RRI data with arrhythmia need to be modified appropriately before HRV analysis. In this study, we consider two types of extrasystoles—premature ventricular contraction (PVC) and premature atrial contraction (PAC)—which are types of extrasystoles that occur every day, even in healthy persons who have no cardiovascular diseases. A unified framework for ectopic RRI detection and a modification algorithm that utilizes an autoencoder (AE) type of neural network is proposed. The proposed framework consists of extrasystole occurrence detection from the RRI data and modification, whose targets are PVC and PAC. The RRI data are monitored by means of the AE in real time in the detection phase, and a denoising autoencoder (DAE) modifies the ectopic RRI caused by the detected extrasystole. These are referred to as AE-based extrasystole detection (AED) and DAE-based extrasystole modification (DAEM), respectively. The proposed framework was applied to real RRI data with PVC and PAC. The result showed that AED achieved a sensitivity of 93% and a false positive rate of 0.08 times per hour. The root mean squared error of the modified RRI decreased to 31% in PVC and 73% in PAC from the original RRI data by DAEM. In addition, the proposed framework was validated through application to a clinical epileptic seizure problem, which showed that it correctly suppressed the false positives caused by PVC. Thus, the proposed framework can contribute to realizing accurate HRV-based health monitoring and medical sensing systems.


2020 ◽  
Vol 41 (Supplement_2) ◽  
Author(s):  
K Miyajima ◽  
T Urushida ◽  
K Ito ◽  
F Kin ◽  
A Okazaki ◽  
...  

Abstract Background Right ventricular (RV) septal pacing is often selected to preserve a more physiologic ventricular activation. But the pacing leads are not always located in true septal wall, rather in hinge or free wall in some cases with the conventional stylet-guided lead implantation. In recent years, new guiding catheter systems has attracted attention as a solution to that problem. Objective The aim of this study is to investigate that true ventricular sepal pacing can be achieved by use of the new guiding catheter system for pacing lead. Methods We enrolled 198 patients who underwent RV septal lead implantation and computed tomography (CT) after pacemaker implantation. 16 cases were used delivery catheter (Delivery), and 182 cases were used stylet for targeting ventricular septum (Conventional). We analyzed the lead locations with CT, and evaluated capture thresholds, R-wave amplitudes, lead impedances and 12-lead electrocardiogram findings one month after implantation. Results All cases of delivery catheter group had true septal lead positions (Delivery; 100% vs Conventional; 44%, p<0.01). Capture thresholds and lead impedances had not significant differences between between two groups (0.65±0.15V vs 0.60±0.15V, p=0.21, 570±95Ω vs 595±107Ω, p=0.39, respectively). R-wave amplitudes were significantly higher in delivery catheter group (13.0±4.8mV vs 10±4.6mV, p<0.01). Paced QRS durations were shorter in delivery catheter group (128±16ms vs 150±21ms, p<0.01). Conclusions The delivery catheter system designated for pacing lead can contribute to select the true ventricular septal sites and to attain the more physiologic ventricular activation. Funding Acknowledgement Type of funding source: None


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