Objective: Current understanding of how the pediatric craniocervical junction develops remains incomplete. Measurements of anatomical relationships at the craniocervical junction can influence clinical and surgical decision-making. The purpose of this analysis was to quantitatively define clinically relevant craniocervical junction measurements in a population of children with CT scans that show normal anatomy.
Methods: A total of 1458 eligible patients were identified from children between 1 and 18 years of age who underwent cervical spine CT scanning at a single institution. Patients were separated by both sex and age in years into 34 groups. Following this, patients within each group were randomly selected for inclusion until a target of 15 patients in each group had been reached. Each patient underwent measurement of the occipital condyle-C1 interval (CCI), pB-C2, atlantodental interval (ADI), basion-dens interval (BDI), basion-opisthion diameter (BOD), basion-axial interval (BAI), dens angulation, and canal diameter at C1. Mean values were calculated in each group. Each measurement was performed by two teams and compared for intraclass correlation coefficient (ICC).
Results: The data showed that CCI, ADI, BDI, and dens angulation decrease in magnitude throughout childhood, while pB-C2, PADI, BAI, and BOD increase throughout childhood, with an ICC of fair to good (range 0.413-0.912). Notably, CCI decreases continuously on coronal CT scans, whereas on parasagittal CT scans, CCI does not decrease until after age 9, when it shows a continuous decline similar to measurements on coronal CT scans.
Conclusions: These morphometric analyses establish parameters for normal pediatric craniocervical spine growth for each year of life up to 18 years. The data should be considered when evaluating children for potential surgical intervention.
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http://dx.doi.org/10.3171/2019.4.PEDS1968 | DOI Listing |
J Orthop Surg Res
December 2024
The First School of Clinical Medicine, Southern Medical University, No.1838 North of Guangzhou Road, Guangzhou, 510515, People's Republic of China.
Background: This study is aimed to compare the differences in clinical outcomes between the crossed rod configuration and the parallel rod configuration applied in posterior occipitocervical and atlantoaxial fixations, and to assess the clinical applicability of crossed rods.
Methods: From January 2015 to December 2021, 21 patients with craniocervical junction disorders were treated surgically with the crossed rod technique (CR group). Meanwhile, 27 corresponding patients treated with the conventional parallel rod technique were included as control (PR group).
Neurochirurgie
December 2024
Aix Marseille Univ, APM, UH Timone, Department of Neurosurgery, Marseille, France.
Background: The Da Vinci robot ® (DVR), released in the early 2000s, provided a set of innovation aiming at pushing minimally invasive surgery forward. Its stereoscopic magnified visualization camera, motions that exceed the natural range of the human hand, or tremor reduction enhanced the surgeon's skills and added value in many surgical fields.
Objective: To map the current use of the DVR in spine surgery, identify gaps, address its limits and future perspectives.
J Neurosurg Pediatr
December 2024
1Division of Pediatric Neurosurgery, Department of Surgery, Texas Children's Hospital, Houston.
Objective: Tumors in the ventral craniocervical junction (CCJ) pose unique challenges, particularly in children. The potential constraints with endoscopic approaches to tumors extending inferiorly and laterally and the risk of CSF leakage can be exacerbated in the pediatric population. Here, the authors present their experience with the extreme lateral transodontoid (ELTO) approach in children with large ventral CCJ tumors as an alternative or complement to anterior approaches.
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December 2024
Dr Mahwish Shoaib, FCPS Radiology. Assistant Professor, Department of Diagnostic Radiology, Punjab Institute of Neurosciences, Lahore, Pakistan.
Background And Objective: Chiari I Malformation-associated syringomyelia (CM) and idiopathic syringomyelia (IS) are often confused together. They require different diagnostic approach and treatment modalities; it is important to distinguish between the two. We aimed to evaluate the radiological and morphologic characteristics of CM and IS in adult and pediatric patients in Pakistani population.
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