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用于分析大鼠脑小血管的新型血管造影测量工具:在大鼠蛛网膜下腔出血模型中的应用

New angiographic measurement tool for analysis of small cerebral vessels: application to a subarachnoid haemorrhage model in the rat.

作者信息

Turowski B, Hänggi D, Beck A, Aurich V, Steiger H J, Moedder U

机构信息

Institute of Diagnostic Radiology, Neuroradiology, Heinrich-Heine University, Moorenstr. 5, 40225 Duesselorf, Germany.

出版信息

Neuroradiology. 2007 Feb;49(2):129-37. doi: 10.1007/s00234-006-0168-y. Epub 2006 Nov 17.

Abstract

INTRODUCTION

Exact quantification of vasospasm by angiography is known to be difficult especially in small vessels. The purpose of the study was to develop a new method for computerized analysis of small arteries and to demonstrate feasibility on cerebral angiographies of rats acquired on a clinical angiography unit.

METHODS

A new software tool analysing grey values and subtracting background noise was validated on a vessel model. It was tested in practice in animals with subarachnoid haemorrhage (SAH). A total of 28 rats were divided into four groups: SAH untreated, SAH treated with local calcium antagonist, SAH treated with placebo, and sham-operated. The diameters of segments of the internal carotid, caudal cerebral, middle cerebral, rostral cerebral and the stapedial arteries were measured and compared to direct measurements of the diameters on magnified images.

RESULTS

There was a direct correlation between the cross-sectional area of vessels measured in a phantom and the measurements acquired using the new image analysis method. The spread of repeated measurements with the new software was small compared to the spread of direct measurements of vessel diameters on magnified images. Application of the measurement tool to experimental SAH in rats showed a statistically significant reduction of vasospasm in the SAH groups treated with nimodipine-releasing pellets in comparison to all the other groups combined.

CONCLUSION

The presented computerized method for analysis of small intracranial vessels is a new method allowing precise relative measurements. Nimodipine-releasing subarachnoidal pellets reduce vasospasm, but further testing with larger numbers is necessary. The tool can be applied to human angiography without modification and offers the promise of substantial progress in the diagnosis of vasospasm after SAH.

摘要

引言

众所周知,通过血管造影术精确量化血管痉挛尤其在小血管中是困难的。本研究的目的是开发一种用于小动脉计算机分析的新方法,并在临床血管造影设备上获取的大鼠脑血管造影中证明其可行性。

方法

一种分析灰度值并减去背景噪声的新软件工具在血管模型上进行了验证。在患有蛛网膜下腔出血(SAH)的动物中进行了实际测试。总共28只大鼠分为四组:未治疗的SAH组、局部钙拮抗剂治疗的SAH组、安慰剂治疗的SAH组和假手术组。测量颈内动脉、大脑后动脉、大脑中动脉、大脑前动脉和镫骨动脉节段的直径,并与放大图像上直径的直接测量值进行比较。

结果

在体模中测量的血管横截面积与使用新图像分析方法获得的测量值之间存在直接相关性。与放大图像上血管直径的直接测量值的离散度相比,新软件重复测量的离散度较小。将测量工具应用于大鼠实验性SAH显示,与所有其他组组合相比,用尼莫地平缓释微丸治疗的SAH组血管痉挛有统计学显著降低。

结论

所提出的用于分析颅内小血管的计算机化方法是一种允许精确相对测量的新方法。蛛网膜下腔尼莫地平缓释微丸可减轻血管痉挛,但需要进行更多数量的进一步测试。该工具无需修改即可应用于人体血管造影,并有望在SAH后血管痉挛的诊断方面取得实质性进展。

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