By Jay R Lieberman MD
Designed to arrange orthopaedic citizens for the Orthopaedic In education examination (OITE), and the yank Board of Orthopaedic surgical procedure (ABOS) Board Certification exam, this ebook is gifted in an easy-to-read define structure for speedy evaluate and prepared entry to special proof. Dr. Lieberman and his editorial workforce of Board-certified orthopaedic surgeons built this thorough textual content in a concise define structure, supplying you with prepared entry to the $64000 proof and a short bulleted evaluate of the ideas you want to know.AAOS finished Orthopaedic overview deals sweeping assurance of the center of orthopaedic wisdom that spans the spectrum of the orthopaedic specialties. accumulated in a single handy and accomplished textual content, you can find the explicit details you want to arrange in your exam. prepared by way of forte, all of the 122 chapters is loaded with colour photographs, illustrations, tables, and charts to aid the fabric and assist you preserve the data
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Extra info for AAOS Comprehensive Orthopaedic Review
Most common: oxidating degradation of ultra-high-molecular-weight polyethylene (UHMWPE) components for total joint arthroplasty. AAOS COMPREHENSIVE ORTHOPAEDIC REVIEW 21 Section 1: Basic Science Table 1 Orthopaedic Materials in Order of Modulus of Elasticity (E) Figure 1 Stress and deformation in a material subjected to axial tensile force. F = force; A = area; L = length; ΔL = change in length. (Low E) Cancellous bone PMMA Cortical bone Titanium Stainless steel Co-Cr-Mo (alloy) Al2O3 (ceramic) Tantalum (High E) PMMA = polymethylmethacrylate c.
F. With aging, a progressive net loss of bone mass occurs beginning in the fifth decade and proceeding at a faster rate in women. This results in reduced bone strength, a reduced modulus of elasticity, and increased likelihood of fractures. g. Several radiographic studies have suggested that aging is associated with bone remodeling that affects force distribution. i. Subperiosteal apposition of bone occurs along with endosteal absorption in tubular bones, creating a cylinder of larger diameter.
When processed to high purity, ceramics pos- sess excellent biocompatibility because of their insolubility and chemical inertness. 5. Ceramic materials are very stiff and brittle but are very strong under compressive loads. 6. Ceramics have gained favor for two different orthopaedic applications: total joint arthroplasty (TJA) components and bone graft substitutes. a. Bearings—ceramic-on-polyethylene and ceramic-on-ceramic bearings are becoming more widely used in TJA. i. Ceramics have high hardness and a high modulus of elasticity, allowing them to be polished to a very smooth finish and to resist roughening while in use as a bearing surface.
AAOS Comprehensive Orthopaedic Review by Jay R Lieberman MD