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Registered Diagnostic Medical Sonographer (RDMS): To obtain the RDMS credential, applicants must meet the required prerequisites and must pass two examinations — the Sonography Principles and Instrumentation (SPI) examination, which tests basic physical principles and instrumentation knowledge, and one specialty examination.
Diagnostic medical sonography (DMS), a branch of diagnostic medical imaging, is the use of imaging by medical ultrasound for medical diagnosis. DMS uses non-ionizing ultrasound to produce 2D and 3D images of the body. In Canada, the credentialing for diagnostic medical sonography is the Canadian Association of Registered Ultrasound Professionals.
Prior to 1970, many individuals performed sonography for research purposes and those assisting with the imaging were considered technicians or technologists, and in 1973 in the United States the occupation of diagnostic medical technology was established as sonography become more widely used within healthcare settings. [3]
Medical ultrasound includes diagnostic techniques (mainly imaging techniques) using ultrasound, as well as therapeutic applications of ultrasound. In diagnosis, it is used to create an image of internal body structures such as tendons, muscles, joints, blood vessels, and internal organs, to measure some characteristics (e.g., distances and velocities) or to generate an informative audible sound.
The Society of Diagnostic Medical Sonography (SDMS) is a nonprofit professional association, representing over 24,000 sonographers and sonography student members across all fifty U.S. states and forty-eight countries, as of 2022. [1]
Sonographer doing an echocardiogram of a child Echocardiogram in the parasternal long-axis view, showing a measurement of the heart's left ventricle. Health societies recommend the use of echocardiography for initial diagnosis when a change in the patient's clinical status occurs and when new data from an echocardiogram would result in the physician changing the patient's care. [7]
Sonography does not use ionizing radiation, and the power levels used for imaging are too low to cause adverse heating or pressure effects in tissue. [38] [39] Although the long-term effects due to ultrasound exposure at diagnostic intensity are still unknown, [40] currently most doctors feel that the benefits to patients outweigh the risks. [41]
Advanced Diagnostic Ultrasound in Microgravity; Air polymer-type A; American Institute of Ultrasound in Medicine; American Registry for Diagnostic Medical Sonography; American Society of Echocardiography; Ankle–brachial pressure index; Anomaly scan; Arterial resistivity index; Automated whole-breast ultrasound
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