Ossification of the posterior longitudinal ligament (OPLL) is a rare pathologic process of lamellar bone deposition that can result in spinal cord compression. While multiple genetic and environmental factors have been related to the development of OPLL, the pathophysiology remains poorly understood. Asymptomatic patients may be managed conservatively and patients with radiculopathy or myelopathy should be considered for surgical decompression. Multiple studies have demonstrated the morphology and size of the OPLL as well as the cervical alignment have significant implications for the appropriate surgical approach and technique. In this review, we aim to address all the available literature on the etiology, history, presentation, and management of OPLL in an effort to better understand OPLL and give our recommendations for the treatment of patients presenting with OPLL.
Background-Staphylococcus aureus is the most common cause of healthcare-associated pneumonia. Despite the significant morbidity and mortality associated with the disease, animal models of S. aureus pneumonia are rare.
OBJECTIVEThe Patient-Reported Outcomes Measurement Information System (PROMIS), which is funded by the National Institutes of Health, is a set of adaptive, responsive assessment tools that measures patient-reported health status. PROMIS measures have not been validated for surgical patients with cervical spine disorders. The objective of this project is to evaluate the validity (e.g., convergent validity, known-groups validity, responsiveness to change) of PROMIS computer adaptive tests (CATs) for pain behavior, pain interference, and physical function in patients undergoing cervical spine surgery.METHODSThe legacy outcome measures Neck Disability Index (NDI) and SF-12 were used as comparisons with PROMIS measures. PROMIS CATs, NDI-10, and SF-12 measures were administered prospectively to 59 consecutive tertiary hospital patients who were treated surgically for degenerative cervical spine disorders. A subscore of NDI-5 was calculated from NDI-10 by eliminating the lifting, headaches, pain intensity, reading, and driving sections and multiplying the final score by 4. Assessments were administered preoperatively (baseline) and postoperatively at 6 weeks and 3 months. Patients presenting for revision surgery, tumor, infection, or trauma were excluded. Participants completed the measures in Assessment Center, an online data collection tool accessed by using a secure login and password on a tablet computer. Subgroup analysis was also performed based on a primary diagnosis of either cervical radiculopathy or cervical myelopathy.RESULTSConvergent validity for PROMIS CATs was supported with multiple statistically significant correlations with the existing legacy measures, NDI and SF-12, at baseline. Furthermore, PROMIS CATs demonstrated known-group validity and identified clinically significant improvements in all measures after surgical intervention. In the cervical radiculopathy and myelopathic cohorts, the PROMIS measures demonstrated similar responsiveness to the SF-12 and NDI scores in the patients who self-identified as having postoperative clinical improvement. PROMIS CATs required a mean total of 3.2 minutes for PROMIS pain behavior (mean ± SD 0.9 ± 0.5 minutes), pain interference (1.2 ± 1.9 minutes), and physical function (1.1 ± 1.4 minutes) and compared favorably with 3.4 minutes for NDI and 4.1 minutes for SF-12.CONCLUSIONSThis study verifies that PROMIS CATs demonstrate convergent and known-groups validity and comparable responsiveness to change as existing legacy measures. The PROMIS measures required less time for completion than legacy measures. The validity and efficiency of the PROMIS measures in surgical patients with cervical spine disorders suggest an improvement over legacy measures and an opportunity for incorporation into clinical practice.
Thoracolumbar burst fractures are high-energy vertebral injuries, which commonly can be treated nonoperatively. Consideration of the injury pattern, extent of comminution, neurological status, and integrity of the posterior ligamentous complex may help determine whether operative management is appropriate. Several classification systems are contingent upon these factors to assist with clinical decision-making. A multitude of operative procedures have been shown to have good radiographic and clinical outcomes with extended follow-up, and treatment choice should be based on the individual's clinical and radiographic presentation.
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