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Zak Hillel

Publications and source records attributed to Zak Hillel.

3 recordsLinked to original sources

Beyond extended myectomy for hypertrophic cardiomyopathy: the resection-plication-release (RPR) repair.

BACKGROUND: Extended myectomy for left ventricular outflow tract obstruction (LVOTO) due to hypertrophic cardiomyopathy (HCM) has good long-term results. In addition to the midseptal resection (R) for HCM, our group has introduced a novel variation in anterior leaflet plication (P) and release (R) of papillary muscle attachments. We sought to investigate the medium-term success of this three-step repair that addresses all aspects of complex HCM pathology. METHODS: Nineteen patients underwent resection-plication-release repair for complex HCM pathology. Transesophageal echocardiography was performed on all patients preoperatively and postoperatively to assess adequacy of resection, left ventricular outflow tract gradients, and mitral valve function. All patients underwent transthoracic outpatient echocardiography at a mean follow-up of 2.4 +/- 2.1 years (range, 0.5 to 6). RESULTS: The average age of the patients was 57 +/- 14 years. The preoperative peak LVOTO was 137 +/- 45 mm Hg. The average degree of mitral regurgitation was 3.1. The average length of stay was 7.5 +/- 3.3 days. There were no readmissions or deaths in the group. Initial postoperative transesophageal echocardiography demonstrated marked reduction in LVOTO to 10 +/- 17 mm Hg (p < 0.0001) and significant improvement in mitral regurgitation to 0.2 (p < 0.0001). In follow-up, the LVOT gradient remained low at 6 +/- 14 (p > 0.0001) and mitral regurgitation remained insignificant at 0.4 (p < 0.0001). CONCLUSIONS: Anterior leaflet plication and papillary muscle release are logical adjuncts to septal resection in the treatment of the complicated pathophysiology of obstructive HCM. Durable long-term results can be achieved with an aggressive approach to mitral valve pathology in conjunction with extended myectomy.

Adult↗

Robotically assisted left ventricular epicardial lead implantation for biventricular pacing.

OBJECTIVES: Ventricular resynchronization might be achieved in a minimally invasive fashion using a robotically assisted, direct left ventricular (LV) epicardial approach. BACKGROUND: Approximately 10% of patients undergoing biventricular pacemaker insertion have a failure of coronary sinus (CS) cannulation. Rescue therapy for these patients currently is limited to standard open surgical techniques. METHODS: Ten patients with congestive heart failure (New York Heart Association class 3.4 +/- 0.5) and a widened QRS complex (184 +/- 31 ms) underwent robotic LV lead placement after failed CS cannulation. Mean patient age was 71 +/- 12 years, LV ejection fraction (EF) was 12 +/- 6%, and LV end-diastolic diameter was 7.1 +/- 1.3 cm. Three patients had previous cardiac surgery, and five patients had a prior device implanted. RESULTS: Nineteen epicardial leads were successfully placed on the posterobasal surface of the LV. Intraoperative lead threshold was 1.0 +/- 0.5 V at 0.5 ms, R-wave was 18.6 +/- 8.6 mV, and impedance was 1,143 +/- 261 ohms at 0.5 V. Complications included an intraoperative LV injury and a postoperative pneumonia. Improvements in exercise tolerance (8 of 10 patients), EF (19 +/- 13%, p = 0.04), and QRS duration (152 +/- 21 ms, p = 0.006) have been noted at three to six months follow-up. Lead thresholds have remained unchanged (2.1 +/- 1.4 V at 0.5 ms, p = NS), and a significant drop in impedance (310 +/- 59 ohms, p < 0.001) has been measured. CONCLUSIONS: Robotic LV lead placement is an effective and novel technique which can be used for ventricular resynchronization therapy in patients with no other minimally invasive options for biventricular pacing.

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