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This book is written by several authors based on their wide experience and on materials painstakingly accumulated through many years of practice. The result is a comprehensive volume which deals with detailed aspects of clinical ultrasonic diagnosis.The scope of this book covers the clinical ultrasonic diagnosis of diseases of the liver, biliary system, pancreas, spleen, gastrointestinal tract, kidney, urethra, bladder, adrenal gland, prostate gland, scrotum, heart, chest and even the use of clinical ultrasonic diagnosis in the department of obstetrics and gynecology. This book has three special features. Firstly, the anatomic and pathological changes caused by common diseases of these organ...
Fundamental physics. The transducer. The ultrasonic field. Pulse-echo techniques. Doppler techniques. Miscellaneous techniques. The possibility of Hazard in ultrasonic diagnosis.
On October 29th 1953 in Lund, Sweden, Inge Edler, cardiologist, and Hellmuth Hertz, physicist, performed the first successful Ultrasoundcardiogram (UCG), later renamed Echocardiogram. A few weeks later, on December 16th, the neurosurgeon Lars Leksell diagnosed an intracranial bleeding in a 16-month-old boy using the same equipment, and Echoencephalography was born. The Lundensian obstetrician Bertil Sundén was in 1962 able to take the first ultrasound picture of twins in pregnancy. These three world premieres at the Lund University were the foundation for the tremendous development of diagnostic ultrasound. Before it is too late, the history in Lund will be told, and with this history as ba...
Diagnostic Ultrasound Imaging provides a unified description of the physical principles of ultrasound imaging, signal processing, systems and measurements. This comprehensive reference is a core resource for both graduate students and engineers in medical ultrasound research and design. With continuing rapid technological development of ultrasound in medical diagnosis, it is a critical subject for biomedical engineers, clinical and healthcare engineers and practitioners, medical physicists, and related professionals in the fields of signal and image processing. The book contains 17 new and updated chapters covering the fundamentals and latest advances in the area, and includes four appendice...
Forlagets beskrivelse: The World Health Organization (WHO) recognizes ultrasound as an important medical diagnostic imaging technology. Manuals on ultrasound have been published by WHO since 2001, with the purpose of guiding health professionals on the safe and effective use of ultrasound. Among the diagnostic imaging technologies, ultrasound is the safer and least expensive, and technological advances are making it more user friendly and portable. Ultrasound has many uses, both diagnostic and therapeutic. For the purposes of this manual, only diagnostic ultrasound will be considered and further analysed. Basic physics of ultrasonographic imaging was released in 2005; since then, WHO has addressed the physics, safe use and different applications of ultrasound as an important diagnostic imaging tool. Since it is a non ionizing radiation technology, along with nuclear magnetic resonance imaging, the risks inherent to its use are lower than those presented by other diagnostic imaging technologies using ionizing radiation, such as the radiological technologies (X-rays and computed tomography scanners).
The sure way to accurate ultrasound diagnosis: With more than 2,000 illustrations, this one-of-a-kind book offers an entirely new system for using ultrasound imaging to achieve the correct diagnosis quickly and reliably. Covering the full spectrum of normal and pathologic findings in the human body, the authors -- all experts in the field -- present a color-coded system of more than 250 drop-down menus, which lay out all possible diagnoses at a glance and then guide the user swiftly and surely to an accurate diagnosis. The book's clear layout, flow charts, and text boxes make it possible to approach a diagnosis via different pathways, such as sonographic criteria, or with the most likely dia...
During the 1970s ultrasonography developed along different paths in continental Eu rope and the English-speaking world. Whereas static imaging dominated the United Kingdom and North America, real-time examination performed by physicians was the norm in the Federal Republic of Germany and France. Francis Weill was uniquely able to bridge the gap between the two schools since he employed both techniques extensively. He made many important contributions to ab dominal ultrasonography during that decade, including the first descriptions of peri pancreatic vascular anatomy, the sonographic diagnostic features of obstructive jaun dice, and the localization of intraperitoneal fluid collections. Duri...