血管血管成像。

Juan F Granada, Steven B Feinstein
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引用次数: 71

摘要

外血管血管壁的新生血管似乎参与了动脉粥样硬化的进展和不稳定的过程。尽管与斑块不稳定相关的生物学机制尚不清楚,但斑块内新血管的不受控制的形成似乎有助于复杂动脉粥样硬化病变的发展。最近的报道描述了几种基于超声的技术用于斑块内新生血管的实时检测。动物模型的初步研究表明,体外新生血管的检测和表征在技术上是可行的。这些成像技术的进一步发展依赖于能够增强微血管结构的造影剂微球的成功实施。这些造影剂作为替代红细胞,并在声学上作为真正的血管内示踪剂,实时提供动脉粥样硬化病变内新血管的数量和分布。几种基于超声的技术正在开发中,用于检测颈动脉和冠状血管区域的血管外膜。虽然仍处于早期验证阶段,但这些技术可能允许亚临床动脉粥样硬化的早期诊断和分层,从而允许积极的预防治疗。在不久的将来,使用特定配体的创新造影剂可能会扩大这些新兴成像技术的诊断和治疗可能性。
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Imaging of the vasa vasorum.

Neovascularization of the arterial walls by adventitial vasa vasorum appears to participate in the process of atherosclerosis progression and destabilization. Although the biological mechanisms associated with plaque instability are still unclear, the uncontrolled formation of intraplaque neovessels appears to contribute to the development of complex atheromatous lesions. Recent reports have described the use of several ultrasound-based techniques for the real-time detection of intraplaque neovascularization. Preliminary studies in animal models have shown that the detection and characterization of adventitial neovascularization are technically feasible. The further development of these imaging techniques relies on the successful implementation of contrast microspheres capable of enhancing microvascular structures. These contrast agents serve as surrogate red blood cells and perform acoustically as true intravascular tracers providing, in real-time, the amount and distribution of neovessels within atherosclerotic lesions. Several ultrasound-based techniques are under development for the detection of adventitial vasa vasorum in the carotid and coronary vascular territories. Although still in early validation phases, these techniques might permit the early diagnosis and stratification of subclinical atherosclerosis, thus permitting aggressive preventive therapy. In the near future, innovative contrast agents using specific ligands are likely to expand the diagnostic and therapeutic possibilities of these emerging imaging techniques.

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