Shoulder arthroplasty is technically demanding and relies heavily on precise surgical technique and preoperative planning. Proper glenoid component sizing plays a crucial role for successful shoulder arthroplasty. In this study, we measured the glenoid size together with penetration depth using three-dimensional computed tomography (3D-CT). From January 2010 to January 2011, 38 patients, including males and females, without evidence of a pathological glenoid, were enrolled for this study. CT images were taken and subsequently reconstructed in 3D images. The height of the glenoid was measured and the width was measured at five different levels (H1-H5). Axial images were taken at each level, with the anteroposterior (AP) glenoid diameter divided into eight areas (W1-W7). The penetration depth between the near and far cortices (thickness) at points W1-W7 was also measured. The overall mean height of the glenoid was 37.67 ± 4.09 mm. The width of the glenoid was the greatest at the distal 4/5th point and it was the least at the proximal 1/5th point. The penetration depth of the glenoid increased as the reference point progressed in the posterior direction, which was at the 5/7th point from the anterior margin. The measurement was greatest at the W4 point at the H1 level, but the W5 point was greatest at all other levels. On the basis of this study, the posterior and inferior parts of the glenoid are thinner than the anterior and superior parts. Thus, caution must be taken when inserting screws into the posteroinferior parts, where the glenoid is thinner than 15 mm, especially in females, to avoid penetration of the far cortex.
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http://dx.doi.org/10.1002/ca.22045 | DOI Listing |
Int J Oral Maxillofac Surg
January 2025
Christian Albrecht's University, Department of Oral and Maxillofacial Surgery, Arnold-Heller-Straße 3, Haus B, UKSH, 24105 Kiel, Germany.
The reported complications after arthrocentesis of the temporomandibular joint are rare, which makes it to an outpatient and safe oral and maxillofacial surgical procedure. A penetration into the middle cranial fossa is an extremely rare but serious complication for the conventional needle arthrocentesis. The simple technical modification described herein could help to easily retain the puncture depth via an endodontic silicone stopper to avoid this rare complication.
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January 2025
Department of Bioengineering, University of Pennsylvania, 210 S. 33rd Street, 435 Skirkanich Hall, Philadelphia, Pennsylvania 19104, United States.
Nanoparticles have gained attention as drug delivery vehicles for cancer treatment, but often struggle with poor tumor accumulation and penetration. Single external magnets can enhance magnetic nanoparticle delivery but are limited to superficial tumors due to the rapid decline in the magnetic field strength with distance. We previously showed that a 2-magnet device could extend targeting to greater tissue depths.
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Department of Oral Biology, Faculty of Dentistry, Suez Canal University, Ismailia, Egypt.
Aim: To compare microleakage beneath ceramic and metal brackets prepared with either acid etching or laser conditioning.
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William B. Burnsed Jr. Department of Mechanical, Aerospace, and Biomedical Engineering, University of South Alabama, 150 Student Services Drive, Mobile, AL, 36688, USA.
Background: The ST response to high frequency EM heating may give an indication of rate of BF in underlying tissue. This novel method, which we have termed REFLO (Rapid Electromagnetic Flow) has potential for applications such as detection of PAD. The method utilizes the relationship between blood flow rate and tissue temperature increase during exposure to radio frequency (RF) energy.
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Clinical Translational Research Center of Aggregation-Induced Emission, School of Medicine, The Second Affiliated Hospital, School of Science and Engineering, The Chinese University of Hong Kong, Shenzhen (CUHK-Shenzhen), Shenzhen 518172, P. R. China.
Deciphering neuronal circuits is pivotal for deepening our understanding of neuronal functions and advancing treatments for neurological disorders. Conventional neuronal tracers suffer from restrictions such as limited penetration depth, high immunogenicity, and inadequacy for long-term and imaging. In this context, we introduce an aggregation-induced emission luminogen (AIEgen), MeOTFVP, engineered for enhanced neuronal tracing and imaging.
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