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首页> 外文期刊>Journal of neurointerventional surgery >A new set of eyes: development of a novel microangioscope for neurointerventional surgery
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A new set of eyes: development of a novel microangioscope for neurointerventional surgery

机译:一套新的眼睛:开发一种新型微音镜用于神经诊断手术

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摘要

Background Endovascular technological advances have revolutionized the field of neurovascular surgery and have become the mainstay of treatment for many cerebrovascular pathologies. Digital subtraction angiography (DSA) is the 'gold standard' for visualization of the vasculature and deployment of endovascular devices. Nonetheless, with recent technological advances in optics, angioscopy has emerged as a potentially important adjunct to DSA. Angioscopy can offer direct visualization of the intracranial vasculature, and direct observation and inspection of device deployment. However, previous iterations of this technology have not been sufficiently miniaturized or practical for modern neurointerventional practice. Objective To describe the evolution, development, and design of a microangioscope that offers both high-quality direct visualization and the miniaturization necessary to navigate in the small intracranial vessels and provide examples of its potential applications in the diagnosis and treatment of cerebrovascular pathologies using an in vivo porcine model. Methods In this proof-of-concept study we introduce a novel microangioscope, designed from coherent fiber bundle technology. The microangioscope is smaller than any previously described angioscope, at 1.7 F, while maintaining high-resolution images. A porcine model is used to demonstrate the resolution of the images in vivo. Results Video recordings of the microangioscope show the versatility of the camera mounted on different microcatheters and its ability to navigate external carotid artery branches. The microangioscope is also shown to be able to resolve the subtle differences between red and white thrombi in a porcine model. Conclusion A new microangioscope, based on miniaturized fiber optic technology, offers a potentially revolutionary way to visualize the intracranial vascular space.
机译:背景技术血管内技术进步彻底改变了神经血管手术领域,并已成为许多脑血管病理学治疗的主干。数字减法血管造影(DSA)是用于可视化血管系统和血管内装置的部署的“金标准”。尽管如此,随着光学元件的最近技术进步,血管镜检查已成为DSA可能重要的辅助。血管镜检查可以直接可视化颅内脉管系统,直接观察和检查设备部署。然而,以前的技术迭代尚未对现代神经诊断进行充分小型化或实用。目的介绍一种微大学镜的演化,开发和设计,提供高质量的直接可视化和在小颅内血管中导航所需的小型化,并提供其潜在应用中的潜在应用,使用进入脑血管病理学的诊断和治疗体内猪模型。在该概念证明研究中的方法我们介绍了一种新颖的微音镜,从相干纤维束技术设计。微大学镜小于任何先前描述的显微镜,在1.7 f,同时保持高分辨率图像。猪模型用于展示体内图像的分辨率。结果微磁镜的视频录制显示了安装在不同的微观上的相机的多功能性及其导航外部颈动脉分支的能力。显微镜也被证明能够解决猪模型中的红色和白色血栓之间的细微差异。结论一种基于小型光纤技术的新型微腔镜,提供了一种可视化颅内血管空间的潜在革命性的方式。

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