fluoroscopic

简明释义

[flʊəˈrɒskəpɪk][flʊəˈrɒskəpɪk]

adj. 荧光镜的;荧光检查法的

英英释义

Relating to or utilizing fluoroscopy, a technique that uses X-rays to obtain real-time images of the internal structures of a patient.

与荧光透视相关或利用荧光透视,这是一种使用X射线获取患者内部结构实时图像的技术。

单词用法

同义词

radiographic

放射摄影的

Radiographic techniques are often used in medical diagnostics.

放射摄影技术常用于医学诊断。

x-ray

X光的

X-ray imaging helps in identifying fractures.

X光成像有助于识别骨折。

imaging

成像的

Imaging studies can provide detailed information about internal organs.

成像研究可以提供有关内脏器官的详细信息。

反义词

radiopaque

不透射线的

The radiopaque contrast agent helps to highlight structures in X-ray imaging.

不透射线的对比剂有助于在X光成像中突出结构。

opaque

不透明的

Opaque materials do not allow light or radiation to pass through.

不透明材料不允许光或辐射通过。

例句

1.Following the routine IVC fluoroscopic guidance the filter is inserted into the IVC, and located just below the junction of the IVC and the renal vein.

常规行下腔静脉造影,将滤器置入到肾静脉开口水平下的下腔静脉。

2.Stable and safe percutaneous fixation techniques depend on accurate closed reduction, excellent intraoperative fluoroscopic imaging, and detailed preoperative planning.

达到稳定安全的经皮固定决定于精确的骨折闭合复位,高质量的术中成像及细致的术前计划。

3.Conclusion Under fluoroscopic guidance, LSCA puncture by using bone marker is a safe and feasible technique.

结论透视下按骨性标志行lsca穿刺是一安全可行的方法。

4.Objective: To explore the effect of interventional therapy with fluoroscopic guidance in treatment of infertility caused by fallopian tubes obstruction.

目的:探讨透视导向下输卵管阻塞性不孕介入治疗的方法及疗效。

5.Fluoroscopic imaging shows the placement of the electrode.

通过透视显示电极的位置。

6.To correct the image distortions in orthopedic surgery based on the Xray fluoroscopic image, an orthogonal polynomial and a weighted orthogonal polynomial methods are proposed.

目前的基于多项式、正交多项式和加权正交多项式的图像配准方法是以误差平方和为度量标准的。

7.Methods:Under fluoroscopic guidance, TBPB was taken 163 times in 116 patients with peripheral pulmonary disease, among whom 37 patients with negative TBPB underwent PNAB 42 times totally.

方法:116例肺外周病变的患者先进行纤支镜肺活检并刷检共163次,对于经纤支镜检未能获得诊断的37例患者再进行经皮 肺穿针吸活检共42次。

8.Conclusions To reduce or control chest fluoroscopic proportion will decrease surface dose from diagnostic X-ray of patients.

结论减少或控制透视比例,降低受检者群体的体表剂量,以减少医疗照射对人体造成的危害。

9.Objectives: During complex image-guided orthopedic trauma procedures, repetitive fluoroscopic scout imaging is performed.

目的:复杂的成像引导骨科创伤操作中,需要重复的荧光透视。

10.During the procedure, the surgeon relied on fluoroscopic 荧光透视的 imaging to guide his instruments.

在手术过程中,外科医生依赖于荧光透视的成像来引导他的工具。

11.The fluoroscopic 荧光透视的 images provide real-time feedback during orthopedic surgeries.

在骨科手术中,荧光透视的图像提供实时反馈。

12.Patients undergoing fluoroscopic 荧光透视的 studies are often asked to drink a contrast material.

接受荧光透视的研究的患者通常被要求饮用对比材料。

13.The doctor used a fluoroscopic 荧光透视的 technique to examine the patient's digestive tract.

医生使用了一种荧光透视的技术来检查患者的消化道。

14.The fluoroscopic 荧光透视的 examination revealed a blockage in the arteries.

这次荧光透视的检查揭示了动脉中的堵塞。

作文

Fluoroscopy is a medical imaging technique that allows real-time visualization of the internal structures of the body. The term fluoroscopic refers to the use of fluoroscopy in various diagnostic and therapeutic procedures. This technology has revolutionized the way healthcare professionals diagnose and treat patients, providing them with immediate feedback and detailed images of organs and tissues. Unlike traditional X-rays, which produce static images, fluoroscopic imaging provides a continuous flow of images, allowing doctors to observe the movement and function of internal organs. One of the most common uses of fluoroscopic imaging is during gastrointestinal examinations. For instance, a patient may be asked to swallow a contrast material, such as barium, which highlights the digestive tract on the fluoroscopic screen. As the patient swallows, the physician can monitor the passage of the barium through the esophagus, stomach, and intestines, identifying any abnormalities or blockages. This dynamic view is invaluable for diagnosing conditions like gastroesophageal reflux disease (GERD) or strictures.In addition to gastrointestinal studies, fluoroscopic techniques are widely used in orthopedic procedures. Surgeons often rely on fluoroscopic guidance during surgeries to ensure precision when placing screws, plates, or other hardware. By using real-time imaging, they can confirm the correct positioning of implants without the need for additional invasive procedures. This not only enhances surgical outcomes but also reduces recovery time for patients.Moreover, fluoroscopic imaging plays a crucial role in interventional radiology. Physicians use this technique to perform minimally invasive procedures, such as biopsies or catheter placements, with greater accuracy. For example, when a doctor needs to obtain a tissue sample from a suspicious mass, they can use fluoroscopic guidance to navigate a needle to the exact location, minimizing damage to surrounding tissues and improving patient safety.While fluoroscopic imaging offers numerous benefits, it is essential to consider the associated radiation exposure. Although the amount of radiation used in fluoroscopic procedures is generally low, healthcare providers must always weigh the risks and benefits before proceeding. Proper protocols and protective measures should be in place to minimize exposure for both patients and medical staff. In conclusion, the term fluoroscopic encapsulates a vital aspect of modern medicine, enabling healthcare professionals to visualize and understand the complexities of the human body in real time. Its applications in diagnostics and treatment have significantly improved patient care, providing a level of detail and immediacy that static imaging cannot offer. As technology continues to advance, the role of fluoroscopic imaging will undoubtedly expand, leading to even more innovative approaches to diagnosis and treatment in the medical field.

荧光透视是一种医学成像技术,可以实时可视化身体内部结构。术语fluoroscopic指的是在各种诊断和治疗程序中使用荧光透视。这项技术彻底改变了医疗保健专业人员诊断和治疗患者的方式,为他们提供了即时反馈和器官及组织的详细图像。与传统的X光片产生静态图像不同,fluoroscopic成像提供了连续的图像流,允许医生观察内部器官的运动和功能。fluoroscopic成像最常见的用途之一是在胃肠检查期间。例如,患者可能会被要求吞下一种对比材料,如钡,这在荧光透视屏幕上突显消化道。当患者吞咽时,医生可以监测钡通过食管、胃和肠道的过程,以识别任何异常或阻塞。这种动态视图对于诊断胃食管反流病(GERD)或狭窄等疾病是无价的。除了胃肠研究外,fluoroscopic技术在骨科手术中也广泛应用。外科医生通常依赖于fluoroscopic引导进行手术,以确保在放置螺钉、钢板或其他硬件时的精确性。通过使用实时成像,他们可以确认植入物的正确位置,而不需要额外的侵入性程序。这不仅提高了手术结果,还缩短了患者的恢复时间。此外,fluoroscopic成像在介入放射学中发挥着关键作用。医生使用这种技术以更高的准确性进行微创程序,如活检或导管放置。例如,当医生需要从可疑肿块中获取组织样本时,他们可以使用fluoroscopic引导将针头导航到确切位置,从而最小化对周围组织的损伤,提高患者安全性。尽管fluoroscopic成像提供了许多好处,但必须考虑相关的辐射暴露。尽管在fluoroscopic程序中使用的辐射量通常较低,但医疗提供者始终必须在进行之前权衡风险和收益。应采取适当的协议和保护措施,以最小化患者和医务人员的暴露。总之,术语fluoroscopic概括了现代医学的一个重要方面,使医疗保健专业人员能够实时可视化和理解人体的复杂性。它在诊断和治疗中的应用显著改善了患者护理,提供了静态成像无法提供的细节和即时性。随着技术的不断进步,fluoroscopic成像的角色无疑会扩展,导致医学领域在诊断和治疗方面采取更具创新性的方法。