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血管内超声对肺血管疾病的成像

Imaging of pulmonary vascular disease by intravascular ultrasound.

作者信息

Scott P J, Essop A R, al-Ashab W, Deaner A, Parsons J, Williams G

机构信息

Non-Invasive Heart Unit, Killingbeck Hospital, Leeds, West Yorkshire, UK.

出版信息

Int J Card Imaging. 1993 Sep;9(3):179-84. doi: 10.1007/BF01145319.

Abstract

To assess the ability of intravascular ultrasound (IVUS) to image changes in the pulmonary arterial wall associated with pulmonary hypertension (PHT), 10 subjects requiring diagnostic right and left heart catheterization were studied. In addition to measurements of pulmonary artery pressure and pulmonary vascular resistance and pulmonary angiography, when indicated, all underwent simultaneous IVUS imaging in the pulmonary arterial system using a 20 MHz ultrasound transducer mounted on a 2 mm diameter catheter. Four patients had normal pulmonary artery pressures and 6 had varying degrees of PHT. Satisfactory ultrasound images were obtained in 9 out of the 10 patients. In those with normal pulmonary artery pressures ultrasound showed a thin vessel wall with no distinction between separate layers. In patients with systemic PHT, a three-layered vessel wall was apparent and areas compatible with intimal proliferation were seen. In a patient with pulmonary embolic disease areas consistent with mural thrombus were detected at sites of luminal narrowing on the pulmonary angiogram. IVUS is capable of imaging some of the morphological changes in the wall of the pulmonary artery known to occur in longstanding PHT and may therefore become a useful adjunct to haemodynamic measurements and pulmonary angiography for the in vivo assessment of pulmonary vascular disease.

摘要

为评估血管内超声(IVUS)对与肺动脉高压(PHT)相关的肺动脉壁变化进行成像的能力,对10名需要进行诊断性左右心导管检查的受试者进行了研究。除了测量肺动脉压力、肺血管阻力以及在必要时进行肺血管造影外,所有受试者均使用安装在直径2毫米导管上的20兆赫超声换能器,在肺动脉系统中同时进行IVUS成像。4名患者肺动脉压力正常,6名患者有不同程度的PHT。10名患者中有9名获得了满意的超声图像。肺动脉压力正常的患者中,超声显示血管壁薄,各层之间无明显区分。在系统性PHT患者中,可见三层血管壁,且可见与内膜增生相符的区域。在一名肺栓塞疾病患者中,在肺血管造影显示的管腔狭窄部位检测到与壁内血栓相符的区域。IVUS能够对已知在长期PHT中发生的肺动脉壁的一些形态学变化进行成像,因此可能成为血流动力学测量和肺血管造影的有用辅助手段,用于体内评估肺血管疾病。

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