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Lauren D Holinger

Publications and source records attributed to Lauren D Holinger.

3 recordsLinked to original sources

Trends in vascular ring surgery.

OBJECTIVE: We sought to review our experience with infants and children with anatomically complete vascular rings (ie, double aortic arch and right aortic arch with left ligamentum) and define perioperative trends in diagnostic imaging, operative techniques, and clinical outcomes. METHODS: From 1946 through 2003, 209 patients (113 with double aortic arch and 96 with right aortic arch) underwent surgical repair. Mean and median ages at the time of the operation were as follows: double aortic arch, 1.4 +/- 2.4 years and 0.75 years, respectively; right aortic arch, 2.7 +/- 3.9 years and 0.9 years, respectively. Fourteen (14.6%) patients with right aortic arch had an associated Kommerell diverticulum. Cardiac diagnoses were present in 26 (12.4%) of 209 patients. RESULTS: There has been no operative mortality since 1959. In the past 30 years, mean hospital stay decreased from 8 to 3 days. Primary means of diagnosis has shifted from barium swallow and angiography to computed tomographic scanning or magnetic resonance imaging. In the past 10 years, 73% of patients had preoperative or intraoperative bronchoscopy. The technique of operation has shifted to a muscle-sparing left thoracotomy without routine chest drainage. In 7 recent patients with right aortic arch and a Kommerell diverticulum, the diverticulum was resected, and the left subclavian artery was transferred to the left carotid artery as a primary procedure. CONCLUSIONS: At our institution, computed tomographic scanning has replaced barium swallow as the diagnostic procedure of choice for vascular ring evaluation. We recommend both preoperative bronchoscopy and echocardiography. Use of a muscle-sparing thoracotomy without routine chest drainage has decreased mean hospital stay. For patients with a right aortic arch and associated Kommerell diverticulum, we recommend diverticulum resection with left subclavian artery transfer to the left carotid artery.

Aorta, Thoracic↗

Inflammatory myofibroblastic tumor (inflammatory pseudotumor) of the neck infiltrating the trachea.

Inflammatory myofibroblastic tumor (IMT), popularly known as inflammatory pseudotumor, is a slow growing quasi-neoplastic lesion with a distinct histologic appearance and benign clinical course. A case of a neck IMT with infiltration into the trachea causing asthmalike symptoms in a 12-year-old girl is described. Both tracheal and neck IMT have been described, but no other case has displayed this infiltration. A review of the pertinent literature and the etiology, diagnosis, treatment, and outcomes of this tumor are discussed. It is important to consider IMT in a differential diagnosis because it can be easily misdiagnosed as a malignancy. A surgeon must not perform radical surgery, radiation, or chemotherapy until a final pathologic diagnosis is made because of the nature of this lesion.

Asthma↗

Repair of congenital tracheal stenosis.

We have used six different techniques in 61 operations performed at Children's Memorial Hospital (Chicago, IL) between 1982 and 2001 on 54 infants with complete tracheal rings and primary or recurrent tracheal stenosis. Short-term and long-term outcomes are reviewed for all techniques including pericardial tracheoplasty, tracheal autograft, tracheal resection, cartilage tracheoplasty, slide tracheoplasty, and aortic homograft patch tracheoplasty. Patients' ages ranged from 7 days to 72 months; mean age at operation was 6 months. There were 33 boys and 21 girls. Associated pulmonary artery sling was present in 19 of 54 patients (35%). Significant associated intracardiac anomaly was present in 13 of 54 patients (24%). The number of complete tracheal rings involved ranged from two to 18 rings (mean, 14+/-5). All procedures were performed with the use of cardiopulmonary bypass. Simultaneous repair of pulmonary artery sling and cardiac abnormalities was undertaken. There were three early deaths, two after pericardial tracheoplasty and one after tracheal autograft. There were eight late deaths, five after pericardial tracheoplasty, one after tracheal autograft, one after slide tracheoplasty, and one after tracheal resection. Median length of hospital stay was 60 days for pericardial tracheoplasty, 28 days for tracheal autograft, 14 days for tracheal resection, and 18 days for the slide tracheoplasty. Follow-up is complete in all patients. Tracheal autograft is currently our procedure of choice for patients with long-segment tracheal stenosis because of its use of all-autologous material, technical ease of performance, already-present epithelial lining of the autograft, intrinsic maintenance of the cartilage contour, potential for growth, and ready availability. We limit the use of tracheal resections to patients with eight or less rings of tracheal stenosis.

Cardiopulmonary Bypass↗