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  2. Chest radiograph - Wikipedia

    en.wikipedia.org/wiki/Chest_radiograph

    Like all methods of radiography, chest radiography employs ionizing radiation in the form of X-rays to generate images of the chest. The mean radiation dose to an adult from a chest radiograph is around 0.02 mSv (2 mrem) for a front view (PA, or posteroanterior) and 0.08 mSv (8 mrem) for a side view (LL, or latero-lateral). [1]

  3. Radiographic anatomy - Wikipedia

    en.wikipedia.org/wiki/Radiographic_anatomy

    Human chest radiographic anatomy. Radioanatomy ( x-ray anatomy ) is an anatomy discipline that involves studying anatomy through the use of radiographic films . [ 3 ] The x-ray film represents a two-dimensional image of a three-dimensional object due to the summary projection of different anatomical structures onto a planar surface.

  4. Thorax - Wikipedia

    en.wikipedia.org/wiki/Thorax

    An X-ray of a human chest area, with some structures labeled. The contents of the thorax include the heart and lungs (and the thymus gland); the major and minor pectoral muscles, trapezius muscles, and neck muscle; and internal structures such as the diaphragm, the esophagus, the trachea, and a part of the sternum known as the xiphoid process.

  5. Thoracic cavity - Wikipedia

    en.wikipedia.org/wiki/Thoracic_cavity

    The thoracic cavity (or chest cavity) is the chamber of the body of vertebrates that is protected by the thoracic wall (rib cage and associated skin, muscle, and fascia). The central compartment of the thoracic cavity is the mediastinum .

  6. Visible Human Project - Wikipedia

    en.wikipedia.org/wiki/Visible_Human_Project

    The Visible Human Project is an effort to create a detailed data set of cross-sectional photographs of the human body, in order to facilitate anatomy visualization applications. It is used as a tool for the progression of medical findings, in which these findings link anatomy to its audiences. [ 1 ]

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  8. Medical imaging - Wikipedia

    en.wikipedia.org/wiki/Medical_imaging

    This imaging modality uses a wide beam of X-rays for image acquisition and is the first imaging technique available in modern medicine. Fluoroscopy produces real-time images of internal structures of the body in a similar fashion to radiography, but employs a constant input of X-rays, at a lower dose rate.

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