Surgical resection can be carried out in patients with DCLV when done sufficiently early, and careful echocardiographic examination is important in a continuing follow-up. Surgeons should keep in mind the possibility of a recurrence of DCLV.
Background: Imbalance in autonomic nervous system and impaired myocardial repolarization has been shown to increase the risk for arrhythmias in patients with coronary artery disease. This study evaluated the effects of coronary artery bypass grafting (CABG) on heart rate variability and QT interval dynamicity in subjects with coronary artery disease undergoing elective CABG surgery. Methods: The study group consisted of 68 consecutive patients (mean age ±SD: 61 ± 9 years) with coronary artery disease who underwent elective CABG. Twenty-four-hour Holter monitoring was performed 2–5 days before cardiac surgery and was repeated 10 days after CABG. ELATEC holter software was used to calculate heart rate variability and QT dynamicity parameters. All subjects had a complete history, laboratory examination and transthoracic echocardiography. Results: All patients had beta-blocking agent medication pre- and postoperatively. Standard deviation of all NN intervals for a selected time period, square root of the mean of the sum of the squares of differences between adjacent RR intervals, the proportion of differences in successive NN intervals greater than 50 ms, normalized low-frequency power, and normalized high-frequency power were significantly decreased after CABG surgery, whereas low-frequency/high-frequency ratio was significantly increased after CABG. QT/RR slopes over 24 h were significantly increased after CABG surgery for QT end and QT apex (QTapex/RR: 0.16 ± 0.13 vs. 0.28 ± 0.19, p < 0.001; QTend/RR: 0.18 ± 0.13 vs. 0.36 ± 0.23, p < 0.001). Conclusion: This prospective study showed for the first time that CABG was associated with a significant worsening of heart rate variability and QT dynamicity parameters in the postoperative period.
Noncompaction of the ventricular myocardium is a rare disorder that represents numerous prominent trabeculations and intratrabecular recesses in the ventricles. It is believed to represent not only an arrest in endomyocardial morphogenesis but also an unclassified cardiomyopathy. The pathology has been almost invariably associated with other congenital cardiac malformations. A female patient with noncompaction of the myocardium of both ventricles and congenitally corrected transposition of the great arteries (cTGA), situs inversus totalis, and atrial and ventricular septal defects is described. When she was 7 days old a permanent pacemaker was implanted because of complete heart block. Prazosin (Minipress), an alpha-receptor blocker, was administered, and the cardiac ejection fraction showed a striking increase from 20% to 42%. Despite careful and regular follow-up evaluations, the general condition of the patient slowly worsened. Five months after surgery she died of hepatorenal failure and low cardiac output. This case report is thought to be the first description of congenital complete heart block, cTGA, and situs inversus totalis with noncompaction of the myocardium of both ventricles.
CTA is useful and safe for detection of radial artery calcific disease and assessment of the forehand circulation and its anatomic variations. Preoperative imaging of the RA is a means to avoid unnecessary forearm exploration or inadvertent use of a diseased conduit in coronary artery bypass candidates with multiple risk factors such as diabetes mellitus.
Cardiac surgery and CPB stimulate systemic inflammatory processes characterized clinically by changes in cardiovascular and pulmonary function. Significant morbidity is rare, but most patients undergoing CPB exhibit some degree of organ dysfunction due to activation of the inflammatory response. This study showed that there were no major clinical results of TNF-alpha and white blood cell level, C-reactive protein, and erythrocyte sedimentation rate after the operation, but in patients with a high level of TNF-alpha (more than 20 pg/mL), increased mediastinal bleeding and longer orotracheal intubation time was observed. A number of studies have shown the increase of TNF-alpha after open heart surgery; however, the specific level of TNF-alpha was first described as 20 pg/mL in this study.
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