Background: Iliosacral screws are commonly used for fixation of pelvic ring injuries. Previous reports using different screw insertion techniques have reported high neurologic complication rates, leading to recommendations for intraoperative neurodiagnostic monitoring. The purpose of this study was to evaluate the neurologic complications after percutaneous iliosacral screw placement without neurodiagnostic monitoring.
Methods: During a 21-month period, 326 patients with pelvic ring disruptions were treated at a level 1 trauma center. One hundred seventy-four patients underwent percutaneous stabilization of their pelvic ring injuries without neurodiagnostic monitoring. Patients who were not intubated preoperatively, were neurologically normal, and who underwent a closed reduction were included. Sixty-eight patients who had 106 screws placed met the inclusion criteria and formed the study group. A careful and detailed neurologic examination was performed preoperatively and postoperatively. Plain pelvic radiographs and computed tomography scans were evaluated postoperatively in all patients to assess screw position.
Results: No planned screw placement was abandoned because of inadequate fluoroscopic visualization. There were no neurologic injuries as a result of either the closed reduction or the screw placement. Computed tomography scans confirmed the screw position and demonstrated placement as intraosseous in 75 (70.8%) and juxtaforaminal in 31 (29.2%). No screws perforated a nerve root tunnel, spinal canal, or sacral cortex.
Conclusions: Using a standardized technique, appropriate and reliable fluoroscopic landmarks are available in the vast majority of percutaneous iliosacral screw fixation procedures. Iliosacral screw placement without neurodiagnostic monitoring has a low rate of neurologic complications.
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http://dx.doi.org/10.1097/TA.0b013e31818080e9 | DOI Listing |
Sci Rep
January 2025
College of Medicine, Mohammed Bin Rashid University of Medicine and Health Sciences, Dubai Health, Dubai, UAE.
The first cervical vertebra (C1) is atypical in shape and bears a complex relationship with important neurovascular structures such as the vertebral artery and cervical spinal cord which are at risk of injury during misplaced screw fixation of C1. Placement of screws into the lateral mass of C1 vertebra is performed for stabilization of the craniovertebral junction. The objective of this study was to describe ideal screw dimensions, precise entry points, safe bony corridors, and ideal trajectories for placement of lateral mass screws in the Emirati population.
View Article and Find Full Text PDFWorld Neurosurg
January 2025
Department of Endocrinology, Yinzhou No.2 Hospital, Ningbo, Zhejiang 315040, China. Electronic address:
Objective: This study aims to evaluate the clinical outcomes of utilizing C1 posterior arch screws (PAS) combined with C2 translaminar screws as an adjunct for reinforcing upper cervical spine fixation.
Methods: A retrospective analysis was conducted on four male patients who underwent surgery involving C1 PASs and C2 translaminar screws between January 2022 and February 2024. Surgical technique involved the insertion of standard C1 lateral mass screws (LMS) and C2 pedicle screws, followed by the placement of C1 PASs and C2 translaminar screws for additional fixation.
J Am Acad Orthop Surg
September 2024
From the Department of Orthopaedic Surgery, Keck Medical Center of the University of Southern California, Los Angeles, CA (Ihn, Chung, Lovro, Patterson, Christ, and Heckmann), the Department of Orthopaedic Surgery, Mayo Clinic, Rochester, MN (Chen), the Department of Orthopaedic Surgery, University of Pittsburgh, Pittsburgh, PA (Tucker), and the Department of Radiology, Keck Medical Center of the University of Southern California, Los Angeles, CA (White, and Hwang).
Introduction: Vascular injury during acetabular screw fixation is a life-threatening complication of total hip arthroplasty. This study uses three-dimensional computed tomography to (1) measure absolute distance from the external iliac artery (EIA) to the acetabulum, (2) determine available bone stock along the EIA path, and (3) create a novel acetabular vascular risk map.
Methods: A retrospective radiographic study was conducted using three-dimensional CT.
Eur Spine J
January 2025
Center for Musculoskeletal Surgery, Charité- Universitätsmedizin Berlin, Charitéplatz 1, 10117, Berlin, Germany.
Purpose: Although idiopathic scoliosis is a common three-dimensional deformity, there is a lack of studies evaluating the associations between the aortic-vertebral distance (AVD) and spinal deformities in all planes. The study therefore aimed to evaluate how the coronal and sagittal curvature, vertebral rotation and aortic-vertebral angle (AVA) affect the AVD in idiopathic scoliosis.
Methods: The AVD, AVA, vertebral rotation and curve angles were measured on preoperative magnetic resonance imaging and radiographs in 46 patients who underwent posterior spinal fusion with pedicle screw instrumentation for idiopathic scoliosis Lenke types 1 and 2.
J Orthop
July 2025
Orthopedic Spine Surgeon, USA.
Background: High-grade Isthmic Spondylolisthesis often requires surgical intervention for spinal realignment and decompression. This study describes a modified Bohlman procedure utilizing robotic-assisted navigation and a Globus SI-LOK interbody device.
Methods: A retrospective review was conducted on three patients who underwent the modified Bohlman procedure for high-grade spondylolisthesis at a single hospital between 2022 and 2023.
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