Background: The David procedure is a well-known technique in selected patients with aortic root pathology. A minimally invasive approach in heart surgery increases open interest.
Methods: From 1991 to 2015, the David technique was performed in 296 patients in our unit. In 90 cases, operations were performed through partial upper sternotomy. The patient mean age was 57 ± 14 years in the minimally invasive group ( = 90) and 58 ± 14 years in the complete sternotomy group ( = 206; = 0.2). The neosinus modification was performed in 80 patients (89%) in the minimally invasive group and in 79 patients (38%) in the complete sternotomy group ( < 0.01). Mean follow-up was 3 ± 2 years in the minimally invasive group and 8 ± 4 years in the complete sternotomy group.
Results: Thirty-day mortality was zero in the minimally invasive group and was 3% ( = 6) in the complete sternotomy group ( = 0.1). The need for packed red blood cells was significantly lower in the minimally invasive group (1.6 ± 3 U) than in the complete sternotomy group (3.7 ± 6 U; < 0.01). Thirty late deaths (2% per patient-year) were observed in the complete sternotomy group versus zero in the minimally invasive group ( < 0.01). One patient (0.5% per patient-year) in the minimally invasive group and 12 patients (0.8% per patient-year) in the complete sternotomy group required reoperation in the follow-up period ( = 0.05).
Conclusions: Minimally invasive David technique for patients with ascending aortic aneurysm and aortic valve insufficiency offers a good solution with low perioperative blood transfusion rate. Our midterm results show low valve-related complications and reoperation rate. However, long-term follow-up of the minimally invasive group is necessary.
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http://dx.doi.org/10.1055/s-0037-1603495 | DOI Listing |
J Neurosurg Spine
January 2025
2Anesthesiology, University of Miami Miller School of Medicine, Miami, Florida.
Objective: Awake, endoscopic spinal fusion has been utilized as an ultra-minimally invasive surgery technique to accomplish the goals of spinal fixation, fusion, and disc height restoration. While many techniques exist for this approach, this series represents a single institution's experience with a large cohort and the evolution of this method.
Methods: The medical records of a consecutive series of 400 patients treated over a 10-year period were retrospectively reviewed.
J Neurosurg
January 2025
Departments of1Neurological Surgery.
Objective: Tumor consistency, or fibrosity, affects the ability to optimally resect meningiomas, especially with recent trends evolving toward minimally invasive approaches. The authors' team previously validated a practical 5-point scale for intraoperative grading of meningioma consistency. The impact of meningioma consistency on surgical management and outcomes, however, has yet to be explored.
View Article and Find Full Text PDFJ Neurosurg Spine
January 2025
15Department of Neurological Surgery, University of California, San Francisco, California.
Objective: The goal of this study was to compare the impact of using a lower thoracic (LT) versus upper lumbar (UL) level as the upper instrumented vertebra (UIV) on clinical and radiographic outcomes following minimally invasive surgery for adult spinal deformity.
Methods: A multicenter retrospective study design was used. Inclusion criteria were age ≥ 18 years, and one of the following: coronal Cobb angle > 20°, sagittal vertical axis > 50 mm, pelvic tilt > 20°, pelvic incidence-lumbar lordosis mismatch > 10°.
Otol Neurotol
February 2025
Department of Otorhinolaryngology-Head and Neck Surgery, Donders Center for Neuroscience, Radboud University Medical Center, Radboud University, Nijmegen, the Netherlands.
Objective: To compare the 3-year outcomes of the modified minimally invasive Ponto surgery (m-MIPS) to both the original MIPS (o-MIPS) and linear incision technique with soft tissue preservation (LIT-TP) for inserting bone-anchored hearing implants (BAHIs).
Study Design: Prospective study with three patient groups: m-MIPS, o-MIPS, and LIT-TP.
Setting: Tertiary referral center.
Objective: The aim of this study is to test the feasibility of a custom 3D-printed guide for performing a minimally invasive cochleostomy for cochlear implantation.
Study Design: Prospective performance study.
Setting: Secondary care.
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