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Unique decision-tree format provides rapid decision-making tool covering a wide range of musculoskeletal injuries Few if any medical fields share the complexity of injuries and the number of available treatments that exist in orthopaedic trauma. Deciding on the most efficacious treatment can often be difficult. In this digital age with a tsunami of medical information and conflicting data on numerous approaches, practitioners who treat orthopaedic trauma often find it problematic to make "evidence-based" choices. Decision Making in Orthopaedic Trauma is the largest compendium of orthopaedic trauma algorithms assembled to date. The decision trees cover a broad spectrum of cases - from simple isolated fractures - to severe, life-threatening conditions. The decisions on which action to perform in each situation are largely based on the personal experiences of the individual authors, all members of the University of California, San Francisco (UCSF) / Zuckerberg San Francisco General (ZSFG) Orthopaedic Trauma Institute. When the decisions are supported by published scientific literature, the relevant publications are cited. Visually appealing, easy-to-comprehend decision trees detail underlying pathologies, suspected diagnoses, required imaging studies, possible treatment approaches, rehabilitation, expected outcomes, and postsurgical care. The format is more conducive to swiftly acquiring knowledge and making informed decisions than traditional texts and websites. Key Features Management of a wide range of emergencies including compartment syndrome, open fractures, peripheral nerve injuries, mangled extremities, and multiple trauma Perioperative care - from acute and chronic pain management - to venous thromboembolism prevention and the use of regional anesthesia Major sections organized by anatomic region cover upper extremity, lower extremity, pelvic, hip, and spine trauma Clinical pearls on the management of osteoporotic, neoplastic, and periprosthetic fractures and fracture complications Impacted anatomy, differential diagnoses, and possible approaches visualized through high-quality color illustrations and radiographs Consistent color scheme differentiates actions, imaging, and rehabilitation guidelines Appendices provide a quick reference on imaging, bracing, and rehabilitation recommendations This uniquely formatted, visually rich book will enable surgeons, physicians, and residents to understand and apply critical decisions to a wide range of fractures, dislocations, nerve injuries, and musculoskeletal complications.
Orthopedics --- Wounds and injuries --- Human beings --- Injuries --- Trauma, Physical --- Wounds --- Surgical emergencies --- Traumatology --- Surgery --- Decision making. --- Orthopedic Procedures. --- Musculoskeletal System --- Decision Making. --- Handbooks, manuals, etc. --- injuries --- surgery
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From bioinformatics to nanotechnology, advances in basic research ultimately drive advances in clinical care. This book provides a comprehensive summary of all current research methodologies for translational and pre-clinical studies in biomechanics and orthopedic trauma surgery. With this roadmap at hand, specialists and trainees will have the tools to conduct high-quality experimental research in any area of musculoskeletal science, with a solid understanding of how the findings can be applied in patient care. Special Features: Utilizes the principles and methodology of modern, evidence-bas
Orthopedics. --- Musculoskeletal system --- Medicine --- Research. --- Wounds and injuries.
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