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Biomedical subjects

Erle H Austin

Publications and source records attributed to Erle H Austin.

8 recordsLinked to original sources

Cardiac transplantation for pediatric giant cell myocarditis.

Giant cell myocarditis (GCM) is an organ-specific, autoimmune disease that infrequently affects children and generally has a more aggressive (often fatal) course than other forms of myocarditis. No data are available about the epidemiology of GCM in children. We describe a 13-year-old girl who presented with ventricular tachycardia and rapid hemodynamic deterioration that required extracorporeal membrane oxygenation (ECMO) as a bridge to heart transplantation. Histopathologic examination of the explanted heart revealed GCM. We review the demographic features, clinical course and post-transplant immunosuppressive therapy of all patients aged 19 years and younger reported to have had GCM.

Adolescent↗

Seven-year clinical experience with the extracardiac pedicled pericardial Fontan operation.

BACKGROUND: Although improved perioperative outcomes with growth potential of the extracardiac pedicled pericardial Fontan (EPPF) operation have been suggested, no advantage has been demonstrated. METHODS: We retrospectively reviewed our institutional experience of 54 consecutive patients undergoing EPPF between June 1996 and August 2003. Clinical and echocardiographic follow-up was obtained yearly with a mean follow-up of 2.8 +/- 2.0 years. RESULTS: There were 29 males, median age 3.3 years (2-6.8). Median cardiopulmonary bypass time was 79 min (39-295). Fibrillatory arrest was used briefly in 9 patients, of which 6 were for fenestration. One Fontan required takedown (1.8%) and there was 1 death (1.8%) from Candida mediastinitis. Median intensive care unit stay, hospital length of stay, and chest tube drainage were 4 days, 12 days, and 8 days, respectively. Arrhythmias occurred in 7 patients. Three (5.6%) of these had preexisting Holter abnormalities requiring permanent pacemaker implantation. Freedom from thromboembolic events, reoperation, and death at 2.8 years after discharge were 96.2%, 98.1%, and 100%, respectively. All patients were New York Heart Association class I-II, with median oxygen saturation of 94 %. Only 5 patients (9.4%) had mild self-restricted activities. Echocardiographic evaluation revealed excellent ventricular function and flow dynamics. CONCLUSIONS: At midterm follow-up this technique yields outcomes as good as the other Fontan techniques and with further follow-up may prove to be superior. However, at this point no clear advantage has been demonstrated. The low rate of complications and potential for growth are appealing features of this procedure.

Child↗

Routine mechanical ventricular assist following the Norwood procedure--improved neurologic outcome and excellent hospital survival.

BACKGROUND: Although excellent survival following the Norwood procedure for palliation of hypoplastic left heart syndrome (HLHS) is being achieved by some, most centers, especially the ones with small surgical volume and limited experience, continue to struggle with initial results. Survivors often showed evidence of significant neurologic injury. The early postoperative care is labor-intensive as attempts are made to balance the systemic and pulmonary circulation for these infants. We report our experience with routine use of mechanical circulatory assist to support the increased cardiac output requirements present following Norwood procedure. METHODS: Eighteen consecutive infants undergoing Norwood operation for HLHS (Oregon Health & Science University [OHSU] 13; University of Louisville [UL] 5) were placed on a ventricular assist device (VAD) immediately following modified ultrafiltration in the operating room using the cardiopulmonary bypass (CPB) cannulas that were in the right atrium and the neoaorta. VAD flows were maintained at approximately 200 mL x kg(-1) x min(-1) and the patients were transported to the intensive care unit (ICU). Patients operated at OHSU also received neurodevelopmental testing before their Glenn procedure, approximately 4 to 6 months following their Norwood operation. RESULTS: All patients were stable on VAD support and no attempt was made to balance the systemic and pulmonary circulation. The ventilator was manipulated to achieve systemic Pa0(2) between 30 and 45 mm Hg and PaC0(2) between 35 and 45 mm Hg. Evidence of hypoperfusion (increasing lactates) was managed by increasing the VAD flow. Lactates normalized [< 2 mmol/L]) by 1.8 +/- 1.1 days following surgery. Average time of VAD support was 3.1 +/- 1.0 (range, 2 to 5 days) and average time until chest closure was 3.4 +/- 1.5 (range, 2 to 8 days). There were two cases of postoperative bleeding (11.1%) requiring reexploration and one case of mediastinitis (5.5%) in a patient who has now gone on to successful Glenn. Sixteen of the eighteen patients survived (hospital survival mean 89% with a 95% confidence interval of 63.9% to 98.1%; 12/13 OHSU [92.3%]; 4/5 UL [80%]). Neurodevelopmental testing using the Mullen Scales of Early Learning and the Vineland Adaptive Behavior Scale were normal for all infants tested. CONCLUSIONS: Routine postoperative use of VAD can support the increased cardiac output demands of infants following Norwood operation and results in a stable postoperative convalescence that does not require aggressive ventilator or inotrope manipulation. Although not a panacea, this strategy can simplify postoperative management, lead to excellent hospital survival, and possibly augment cerebral oxygen delivery, resulting in improved neurologic outcomes for this challenging group of patients.

Cardiac Surgical Procedures↗

Cerebral oximetry for cardiac and vascular surgery.

The technology of transcranial near-infrared spectroscopy (NIRS) for the measurement of cerebral oxygen balance was introduced 25 years ago. Until very recently, there has been only occasional interest in its use during surgical monitoring. Now, however, substantial technologic advances and numerous clinical studies have, at least partly, succeeded in overcoming long-standing and widespread misunderstanding and skepticism regarding its value. Our goals are to clarify common misconceptions about near-infrared spectroscopy and acquaint the reader with the substantial literature that now supports cerebral oximetric monitoring in cardiac and major vascular surgery.

Brain↗