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Study Design: A prospective, multicenter study.
Objective: To evaluate the usefulness of transcranial motor-evoked potentials (Tc-MEPs) during supine-to-prone position change for thoracic ossification of the posterior longitudinal ligament (T-OPLL).
Summary Of Background Data: Supine-to-prone position change might be a risk of spinal cord injury in posterior decompression and fusion surgeries for T-OPLL.
Methods: The subjects were 145 patients with T-OPLL surgically treated with posterior decompression and fusion using Tc-MEPs in 14 institutes. Tc-MEPs were monitored before surgery from supine-to-prone position and intraoperatively in seven institutes and only intraoperatively in the other seven institutes because of disapproval of the anesthesia department. In cases of Tc-MEP alert after position change, we adjusted the cervicothoracic posture. When the MEP did not recover, we reverted the position to supine and monitored the Tc-MEPs in supine position.
Results: There were 83 and 62 patients with/without Tc-MEP before position change to prone (group A and B). The true-positive rate was lower in group A than group B, but without statistical significance (8.4% vs. 16.1%, P = 0.12). In group A, five patients who had Tc-MEP alert during supine-to-prone position change were all female and had larger body mass index values and upper thoracic lesions. Among the patients, three underwent surgeries after cervicothoracic alignment adjustment, and two had postponed operations to 1 week later with halo-vest fixation because of repeated Tc-MEP alerts during position change to prone. The Tc-MEP alert at exposure was statistically more frequent in group B than in group A ( P = 0.033).
Conclusion: Tc-MEP alert during position change is an important sign of spinal cord injury due to alignment change at the upper thoracic spine. Tc-MEP monitoring before supine-to-prone position change was necessary to prevent spinal cord injury in surgeries for T-OPLL.
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http://dx.doi.org/10.1097/BRS.0000000000004246 | DOI Listing |
Brachytherapy
September 2025
Department of Radiological Sciences, School of Health Sciences, Fukushima Medical University, 10-6 Sakaemachi, Fukushima, Fukushima, 960-8516, Japan.
Purpose: This study presents the dose-based intra-preplan (DIP) method for intracavitary/interstitial brachytherapy (IC/ISBT) in cervical cancer, optimizing catheter configurations based on dose distribution. This study aimed to assess the DIP method's clinical feasibility and efficacy.
Methods And Materials: The DIP method incorporates the implant modeling function and the hybrid inverse planning optimization algorithm in Oncentra Brachy.
Biophys Chem
September 2025
Department of Biophysics, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
A comprehensive understanding of the molecular mechanism underlying the Liquid-Liquid Phase Separation (LLPS) pathway of LCD-TDP43 remains a challenge in the context of its neuropathogenesis. The primary driving force behind the TDP-43 LLPS is the interplay of hydrophobic interactions reinforced by aromatic residues. This study presents a novel, convenient, sensitive, and probe-free approach using excitation-emission matrix (EEM) fluorescence to monitor the microenvironment of aromatic residues and π-π stacking interactions during different stages of the LLPS pathway.
View Article and Find Full Text PDFBiochemistry
September 2025
Loyola University Chicago, Department of Chemistry and Biochemistry, 1068 W Sheridan Rd, Chicago, Illinois 60660, United States.
Dihydroorotate dehydrogenase 1B (DHOD1B) is one of several flavoproteins that utilize active half-sites. These enzymes have two flavin cofactors (FAD and FMN) that each interact with a specific reductant/oxidant substrate/product. Electrons gained at one-half-site must be transmitted to the other half-site and iron-sulfur centers between the flavin cofactors serve in this role.
View Article and Find Full Text PDFEur J Orthop Surg Traumatol
September 2025
Human Anatomy Teaching and Research Section, School of Basic Medicine, Inner Mongolia Medical University, Hohhot, China.
Objective: Reveal the changing rule of the positional relationship between the uncinate process of cervical spine and vertebral artery by measuring the relevant parameters between the uncinate process of cervical spine and vertebral artery in different age groups.
Methods: A retrospective study was conducted on 1240 cases of cervical spine imaging data from 2018 to 2021 in the Radiology Department of the Affiliated Hospital of Inner Mongolia Medical University. The distance between the uncinate process superior ridge and vertebral artery and the maximum of pedicle transverse angle, the minimum of pedicle transverse angle, the range of pedicle transverse angle and the pedicle width were measured according to age groups.
J Pain
September 2025
Cyber-physical Health and Assistive Robotics Technologies Research Group, University of Nottingham, United Kingdom; School of Computer Science, University of Nottingham, Nottingham, United Kingdom.
Neck pain is among the most prevalent musculoskeletal conditions worldwide. The underlying cause mostly remains unidentified, classified as non-specific neck pain. Pain can alter movement patterns and physiological responses, suggesting that certain biomechanical and physiological changes may serve as objective biomarkers for non-specific neck pain.
View Article and Find Full Text PDF