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X-ray Imaging01:24

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German physicist Wilhelm Röntgen (1845–1923) was experimenting with electrical current when he discovered that a mysterious and invisible "ray" would pass through his flesh but leave an outline of his bones on a screen coated with a metal compound. In 1895, Röntgen made the first durable record of the internal parts of a living human: an "X-ray" image (as it came to be called) of his wife’s hand. Scientists worldwide quickly began their own experiments with...
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X-ray Diffraction of Biological Samples01:10

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X-ray diffraction or XRD is an analytical tool that utilizes X-rays to study ordered structures such as crystalline organic and inorganic samples, polycrystalline materials, proteins, carbohydrates, and drugs.
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The size of the unit cell and the arrangement of atoms in a crystal may be determined from measurements of the diffraction of X-rays by the crystal, termed X-ray crystallography.
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Tomography refers to imaging by sections. Computed tomography (CT) is a non-invasive imaging technique that uses computers to analyze several cross-sectional X-rays to reveal minute details about structures in the body.
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The most common cardiovascular diagnostic test is an X-ray. It produces images of the heart, blood vessels, and adjacent structures.
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An X-ray, or radiograph, is a non-invasive method that uses ionizing radiation to take images of internal structures. It is mainly used in cardiac imaging to examine the heart, lungs, and major blood vessels, aiming to identify abnormalities in the heart's size, shape, and position, such as heart failure, congenital defects, and vascular...
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Radiological investigations, including X-rays and computed tomography (CT) scans, are critical for diagnosing and evaluating various medical conditions. These imaging techniques provide valuable insights into the body's internal structures, aiding in the detection of abnormalities, assessment of disease progression, and development of treatment strategies. This article delves into two primary radiological investigations, chest X-rays and CT scans, outlining their purpose, procedures, and...
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Data science enables X-ray vision.

David A Santos1,2, Binbin Lin3, Justin L Andrews1,2

  • 1Department of Chemistry, Texas A&M University, College Station, TX 77843-3255, USA.

Patterns (New York, N.Y.)
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PubMed
Summary
This summary is machine-generated.

Researchers developed a new method using hyperspectral X-ray imaging to map composition and stress in lithium-ion battery electrodes. This approach enhances understanding of battery materials and data science applications.

Area of Science:

  • Materials Science
  • Battery Technology
  • Data Science

Background:

  • Understanding the compositional and stress variations within positive electrode materials is crucial for optimizing lithium-ion battery performance and longevity.

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  • Hyperspectral X-ray imaging offers a powerful, non-destructive technique for analyzing material properties at a microscale.