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Endoscopic Procedures III: Video Capsule Endoscopy01:28

Endoscopic Procedures III: Video Capsule Endoscopy

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Capsule endoscopy, or wireless or video capsule endoscopy, is a diagnostic procedure for examining the entire gastrointestinal tract. Patients swallow a capsule about the size of a vitamin tablet. The capsule is equipped with a transmitter, a battery, an LED light source, and a color video camera to capture images throughout the gastrointestinal tract. This procedure is particularly useful for diagnosing conditions such as Crohn's disease, ulcerative colitis, tumors, polyps, ulcers,...
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Imaging Studies for Cardiovascular System I:Echocardiography01:17

Imaging Studies for Cardiovascular System I:Echocardiography

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Cardiac imaging studies encompass a wide range of noninvasive and minimally invasive techniques designed to visualize the heart's structure and function in detail. One such technique is echocardiography, which uses high-frequency ultrasound waves to produce detailed images of the heart, known as echocardiograms.
Indications: Echocardiography is utilized to diagnose heart failure, valve disorders, and myocardial infarction. It also assesses cardiac structures' size, shape, and motion,...
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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...
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Imaging Biological Samples with Optical Microscopy01:18

Imaging Biological Samples with Optical Microscopy

8.8K
Optical microscopy uses optic principles to provide detailed images of samples. Antonie van Leeuwenhoek designed the first compound optical microscope in the 17th century to visualize blood cells, bacteria, and yeast cells. In 1830, Joseph Jackson Lister created an essentially modern light microscope. The 20th century saw the development of microscopes with enhanced magnification and resolution.
In optical microscopy, the specimen to be viewed is placed on a glass slide and clipped on the stage...
8.8K
Imaging Studies for Cardiovascular System II:Types of Echocardiography01:20

Imaging Studies for Cardiovascular System II:Types of Echocardiography

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Echocardiography plays a role in assessing cardiac health and detecting heart conditions, with various types providing critical insights for diagnosis and treatment.
Types of Echocardiography
Transthoracic Echocardiography (TTE)
TTE is the most common type of echocardiogram which involves placing a transducer on the patient's chest, emitting sound waves to create heart images. TTE is invaluable for evaluating the heart's size, structure, and motion, making it particularly useful for...
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相关实验视频

Updated: Jan 16, 2026

Simultaneous Brightfield, Fluorescence, and Optical Coherence Tomographic Imaging of Contracting Cardiac Trabeculae Ex Vivo
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Simultaneous Brightfield, Fluorescence, and Optical Coherence Tomographic Imaging of Contracting Cardiac Trabeculae Ex Vivo

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心脏微解剖成像使用前光学连贯性断层扫描,内镜.

David L Vasquez, Franziska Einmuller, Ines Latka

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    概括
    此摘要是机器生成的。

    一种新的内镜光学连贯断层扫描 (OCT) 装置可视化心脏微结构,如普金尼纤维和痕组织. 这项技术增强了对心脏病理学的理解,并可能改善未来的诊断策略.

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    科学领域:

    • 心血管成像 - 心血管成像
    • 生物医学光学 生物医学光学
    • 心脏电生理学 心脏电生理学

    背景情况:

    • 目前的成像技术难以检测与心脏突然死亡相关的微妙心脏微观结构变化.
    • 精确的脑下内脏结构可视化对于理解心脏功能和病理学至关重要.

    研究的目的:

    • 开发一个前性的光学连贯性断层扫描 (OCT) 内镜,用于详细检测心脏微观结构.
    • 为了可视化和描述Purkinje纤维,痕组织,肌细胞和心下脂肪组织.

    主要方法:

    • 开发了一种基于扫描纤维的内镜OCT探头,用于接触测量.
    • 评估了在患有心肌梗塞的绵羊心脏中的探针,将OCT发现与马森三色染色相关联.
    • 利用体积成像数据来训练一个卷积神经网络 (CNN) 用于3D普金尼纤维重建.

    主要成果:

    • 成功地区分了健康的心肌,纤维重塑和心脏导电系统元素.
    • 证明了捕捉大哺乳动物心脏中心脏微结构的详细图像的能力.
    • 能够通过光学方法在可访问的深度下心脏内心脏微观结构的可视化.

    结论:

    • 在心脏病学中建立了一个新的前性内镜OCT应用.
    • 这项技术提供了增强的细胞水平可视化,有可能改善对心脏生理学和病理学的理解.
    • 该方法可能会为未来的心脏病的诊断和治疗策略提供信息.