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相关概念视频

Computed Tomography01:10

Computed Tomography

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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.
The technique was invented in the 1970s and is based on the principle that as X-rays pass through the body, they are absorbed or reflected at different levels. In the technique, a patient lies on a motorized platform while a computerized axial tomography (CAT) scanner rotates...
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Imaging Studies for Cardiovascular System V: CT01:28

Imaging Studies for Cardiovascular System V: CT

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Cardiac computed tomography (CT) scanning is an advanced cardiac imaging technique that utilizes CT technology, with or without intravenous (IV) contrast, to produce accurate cross-sectional virtual slices of specific areas of the heart, coronary circulation, and major blood vessels such as the aorta, pulmonary veins, and arteries. The computer processes these slices to generate three-dimensional images. Multidetector CT (MDCT) is a rapid form of CT scanning that captures multiple slices...
3
Radiological Investigation I: X-ray and CT01:30

Radiological Investigation I: X-ray and CT

214
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...
214
X-ray Imaging01:24

X-ray Imaging

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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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Positron Emission Tomography01:29

Positron Emission Tomography

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Positron emission tomography (PET) is a medical imaging technique involving radiopharmaceuticals — substances that emit short-lived radiation. Although the first PET scanner was introduced in 1961, it took 15 more years before radiopharmaceuticals were combined with the technique and revolutionized its potential.
One of the main requirements of a PET scan is a positron-emitting radioisotope, which is produced in a cyclotron and then attached to a substance used by the part of the body...
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Imaging Studies II: Positron Emission Tomography and Scintigraphy01:25

Imaging Studies II: Positron Emission Tomography and Scintigraphy

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Positron Emission Tomography (PET) is a medical imaging technique that provides crucial insights into the body's physiological functions at a molecular level. It is an indispensable resource for diagnosing, staging, and monitoring various illnesses, notably cancer, neurological disorders, and cardiovascular conditions.
Fundamental Principles of PET
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相关实验视频

Updated: Jun 9, 2025

Whole-body PET/MRI of Pediatric Patients: The Details That Matter
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Whole-body PET/MRI of Pediatric Patients: The Details That Matter

Published on: December 19, 2017

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双能计算断层扫描:儿科方面的考虑

Sebastian Gallo-Bernal1,2,3, Valeria Peña-Trujillo1,2,3, Michael S Gee4,5,6

  • 1Department of Radiology, Massachusetts General Hospital, 55 Fruit St., Austen 250, Boston, MA, 02114, USA.

Pediatric radiology
|October 29, 2024
PubMed
概括

双能量CT (DECT) 为儿科患者提供了先进的成像,使得可以在更低的辐射剂量下进行清醒扫描. 这种技术增强了诊断信息,并改善了各种儿科应用中的患者结果.

关键词:
计算机断层扫描 (CT) 是一种计算机断层扫描.双重能源是什么意思儿科 儿科 儿科辐射辐射辐射辐射辐射辐射辐射放射学 放射学是一门学科.

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科学领域:

  • 放射学 放射学是一门学科.
  • 医疗成像医学成像
  • 儿科成像学 儿科成像学

背景情况:

  • 多探测器计算机断层扫描 (CT) 是现代放射学的组成部分.
  • 在CT技术的进步提高了图像质量和速度.
  • 对儿童的辐射风险和麻醉下MRI的担忧引发了对低剂量儿科CT的兴趣.

研究的目的:

  • 探索双能CT (DECT) 在儿科成像中的作用.
  • 突出DECT的技术方面,包括硬件和重建方法.
  • 审查DECT在儿科患者中的临床应用和益处.

主要方法:

  • 讨论DECT技术基础和硬件配置.
  • 解释各种重建技术.
  • 复习先进的后处理方法,如材料分解和虚拟单能成像.

主要成果:

  • DECT提供了增强的诊断信息.
  • DECT有助于进一步减少辐射剂量.
  • DECT可实现更快的扫描时间,这对于儿科成像至关重要.

结论:

  • 在儿科放射学中,DECT是一个有前途的工具.
  • 先进的DECT技术提高了诊断准确性和患者的治疗结果.
  • 在儿科肺部,心血管和瘤成像中,DECT具有重要的临床应用.