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Titlebook: Ultrasonography of Muscles and Tendons; Examination Techniqu Bruno D. Fornage Book 1989 Springer-Verlag New York Inc. 1989 foot.imaging.ima

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Anatomic Considerationsth with a diameter of 10 to 100 µm. The fibers are arranged in fascicles separated by septa of connective tissue, the perimysia, that extend inward from an external sheath of dense connective tissue, called the epimysium, that surrounds the whole muscle. This perimuscular aponeurosis, or fascia, sep
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Technique for Sonography of Muscles and Tendons of the Extremitiesnce that date is well known. The high quality of today’s real-time machines has rendered B-mode static equipment obsolete [4–11]. Real-time examination is faster, more convenient, and, above all, more complete since continuous scanning leaves no blind area. Also, real-time capability allows dynamic
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Normal Ultrasound Anatomy of Tendonss of high frequency and short focused, (.) real-time linear-array electronic transducers, and (.) probe frequencies of 7.5 or 10 MHz [2–7]. Tendons are small organs and the examination technique should be meticulous to avoid artifacts (see Chapter 5). The sonographic appearance of normal tendons is
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Sonographic Patterns of the Other Anatomic Components of the Extremities propagation. Yet the intense reflection of the beam on a bone surface silhouettes its near-contours, which appear as brightly echogenic lines (Fig. 6.1); occasionally, pathologic alteration of bones can be visualized. Sonography is now routinely used in the evaluation of the hip in the neonate [11,
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Other Imaging Techniques for Muscles and Tendons assessment. Of the newer modalities, magnetic resonance (MR) imaging is doubtless the most popular in this arena, borne out by the profusion of published studies. In contrast, the comparatively limited number of reports on high-resolution sonography of soft tissues would suggest that this recent ap
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