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This guide provides practical information for the care of patients with blunt injuries. It covers the care for truncal injuries (head, chest, abdomen) and fracture care of the extremities, the pelvis and the spine in a condensed fashion. Unlike previous, anatomically oriented outlines, this combines the anatomic location with frequent injury combinations. It is written for orthopedic and trauma surgeons, offering them a condensed outline of fracture treatment. In addition, all aspects of trauma care are covered, including associated injuries that may alter the decision making in patients with polytrauma.
Trauma represents a leading cause of death, particularly in the younger population. Traumatic brain injury and hemorrhage are the most common causes of early death, whereas complications such as infections, (multi-)organ failure and “persistent inflammation, immunosuppression, and catabolism syndrome” (PICS) represent relevant factors for late adverse outcomes. Pre- and intra-hospital diagnostic and therapeutic standard operating procedures have been shown to beneficially influence posttraumatic outcome. However, development of patient-specific diagnostic and therapeutic strategies remains challenging due to uncertainties regarding the assessment of the individual risk profile. Furthermo...
This book is an unparalleled source of cutting-edge information on every aspect of rescue, trauma management, and fracture care in the polytrauma/multiple injured patient. Damage control surgery is approached logically and systematically by dividing treatment into phases. The common goal of treating life-threatening conditions first, then treating major pelvic and extremity fractures, requires cooperation among all major disciplines and subspecialties involved in the care of polytrauma patients, and the book is accordingly multidisciplinary in nature. It is edited by pioneers in the field and the authors are all acclaimed experts. This second, revised and updated edition of Damage Control Management in the Polytrauma Patient will be invaluable for all clinicians who must weigh life-saving operations against limb-threatening conditions, including emergency personnel, trauma surgeons, orthopaedic traumatologists, and anesthesiologists.
In general, surgeons strive to achieve excellent results and ideal patient outcomes, however, this noble task is frequently failed. For patients, surgical complications are analogous to “friendly fire” in wartime. Both scenarios imply that harm is unintentionally done by somebody whose aim was to help. Interestingly, adverse events resulting from surgical interventions are more frequently related to system errors and a communication breakdown among providers, rather than to the imminent threat of the surgical blade “gone wrong”. Patient Safety in Surgery aims to increase the safety and quality of care for patients undergoing surgical procedures in all fields of surgery. Patient Safety in Surgery, covers all aspects related to patient safety in surgery, including pertinent issues of interest to surgeons, medical trainees (students, residents, and fellows), nurses, anaesthesiologists, patients, patient families, advocacy groups, and medicolegal experts.
This book contributes to the enhancement of fundamental and practical knowledge in the treatment of fractures, healing disturbances and bone disorders with intramedullary nailing. It promotes this biological and mechanical outstanding technique for appropriate indications and ameliorate the standard of care for those patients, who can profit from intramedullary nailing. Orthopedic trauma surgeons from all over the world, who work in the most different circumstances and with the most diverse technical and logistical equipment, will find this book to be an essential resource and guide for their daily practice with intramedullary nailing.
From Xenakis's UPIC to Graphic Notation Today sheds light on the revolutionary UPIC system, developed by composer Iannis Xenakis in the late 1970s. This digital innovation enables the transformation of drawings into musical compositions and continues to shape the world of contemporary music notation. Freely available in open access, this book provides unrestricted access to the historical origins of UPIC and its evolution into modern notation techniques. Richly illustrated, it reveals the unique fusion of image and sound. Through QR codes, readers can experience the compositions interactively. IANNES XENAKIS (1922–2001) was not only a composer but also a visionary and a bridge-builder between music, mathematics, and architecture. Originally trained as an engineer in Athens, he developed innovative compositional techniques that integrate geometric and mathematical principles with music. His creation of the UPIC system established him as a pioneer of computer-assisted music, with an influence that extends into today's musical landscape. Often described as a "sound architect," Xenakis's unique approach and interdisciplinary works remain groundbreaking.
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