By Jay R Lieberman MD
Designed to organize 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 fast assessment and prepared entry to big evidence. Dr. Lieberman and his editorial workforce of Board-certified orthopaedic surgeons built this thorough textual content in a concise define structure, providing you with prepared entry to the real evidence and a short bulleted evaluation of the ideas you want to know.AAOS finished Orthopaedic overview bargains sweeping insurance of the middle of orthopaedic wisdom that spans the spectrum of the orthopaedic specialties. collected in a single handy and accomplished textual content, you will discover the categorical info you must arrange on your exam. geared up through distinctiveness, all the 122 chapters is loaded with colour photographs, illustrations, tables, and charts to help the cloth and assist you maintain the data
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Extra resources for AAOS Comprehensive Orthopaedic Review
This remodeling of the diaphysis is hypothe- sized to serve as a mechanical “compensatory” function by increasing the moment of inertia as the cortex thins with aging. Essentially, the effective bone is shifted to a more peripheral location. 24 i. Tendons center the action of several muscles AAOS COMPREHENSIVE ORTHOPAEDIC REVIEW e. Many tendons are composed of portions of varying orientation that may experience variable loads with any action. Loads applied obliquely during eccentric contractions pose the highest risk of tendon ruptures.
Biomechanical Properties of Specific Compounds A. Host tissue 1. Bone a. Bone is a composite of inorganic mineral salts (mainly calcium and phosphate) and organic matrix (mainly type I collagen and ground substance). The inorganic component makes bone hard and rigid, whereas the organic component gives bone its flexibility. b. Bone is anisotropic as a result of the orienta- tion of its components. 1: Basic Science c. Bone is stiffer and stronger and stores more en- into a single line of pull (eg, Achilles tendon) ii.
Cobalt alloys are among the strongest materials used for orthopaedic implants. High-load applications that require longevity, such as joint arthroplasty devices. Titanium and titanium alloys Titanium and titanium alloys have unique tissue biocompatibility due to an adherent passive layer of titanium oxide (TiO2) that forms on the surface (passivation). Uniform corrosion is extremely limited, even in saline solutions, and resistance to pitting and crevice corrosion is excellent. Titanium alloy has an elastic modulus roughly half that of stainless steel and cobalt alloy.
AAOS Comprehensive Orthopaedic Review by Jay R Lieberman MD