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正常和自发性高血压大鼠左心室功能的磁共振成像分析

Magnetic resonance imaging analysis of left ventricular function in normal and spontaneously hypertensive rats.

作者信息

Wise R G, Huang C L, Gresham G A, Al-Shafei A I, Carpenter T A, Hall L D

机构信息

Herchel Smith Laboratory for Medicinal Chemistry, University of Cambridge, School for Clinical Medicine, Robinson Way, Cambridge CB2 2PZ, UK.

出版信息

J Physiol. 1998 Dec 15;513 ( Pt 3)(Pt 3):873-87. doi: 10.1111/j.1469-7793.1998.873ba.x.

Abstract
  1. We have used magnetic resonance imaging (MRI) to examine acute morphological changes in the left ventricle throughout the cardiac cycle in normal Wistar Kyoto rats (WKY) and also to follow the development of chronic changes in spontaneously hypertensive rats (SHR). This involved the development of MRI and quantitative analysis techniques for characterizing contractile changes during the cardiac cycle. 2. Images of the cardiac anatomy in two age groups (8 and 12 weeks old) of young anaesthetized adult normal WKY and SHR were acquired in planes both parallel and perpendicular to the principal cardiac axis. 3. Complete coverage of the heart by imaging planes was achieved with high time resolution (13 ms), with typically 12 time frames in the cardiac cycle, using a short echo time (5 ms) multislice gradient-echo imaging sequence. Imaging was synchronized to the R wave of the electrocardiogram. 4. The image slices could be reconstructed into complete geometrically and temporally coherent three-dimensional data sets. Left ventricular (LV) volumes were thus reconstructed throughout the cardiac cycle by combining transverse cardiac image sections. This volume analysis revealed structural and functional differences between the normal WKY and SHR in both age groups of 8 and 12 weeks. Measurements from the cardiac images were additionally validated against histological measurements. 5. The SHR showed a raised LV end-systolic volume and a correspondingly poorer ejection fraction as well as LV hypertrophy when compared with the controls. Left ventricular function in the SHR appeared stable between the two age groups. 6. We developed a simple geometrical model of the left ventricle based on a single longitudinal image section and successfully used this to describe some functional parameters of the left ventricle in the WKY and SHR. This geometrical model has the potential to greatly reduce the imaging time needed to study the beating heart in future serial investigations of cardiac physiology in rats. 7. Our experimental and analytical methods together form a powerful set of quantitative techniques which combine both imaging and functional analysis and will be applicable for future studies of chronic physiological changes in animal disease models.
摘要
  1. 我们利用磁共振成像(MRI)来检查正常Wistar Kyoto大鼠(WKY)整个心动周期中左心室的急性形态变化,并追踪自发性高血压大鼠(SHR)慢性变化的发展情况。这涉及到MRI及定量分析技术的开发,以表征心动周期中的收缩变化。2. 在年轻成年麻醉的正常WKY和SHR的两个年龄组(8周和12周龄)中,于平行和垂直于心脏主轴的平面获取心脏解剖图像。3. 使用短回波时间(5毫秒)多层梯度回波成像序列,以高时间分辨率(13毫秒)实现成像平面完全覆盖心脏,心动周期中通常有12个时间帧。成像与心电图的R波同步。4. 图像切片可重建为完整的几何和时间连贯的三维数据集。通过组合心脏横向图像切片,从而在整个心动周期中重建左心室(LV)容积。该容积分析揭示了8周和12周龄两个年龄组的正常WKY和SHR之间的结构和功能差异。心脏图像测量结果还与组织学测量结果进行了验证。5. 与对照组相比,SHR的左心室收缩末期容积升高,射血分数相应较差,且存在左心室肥厚。SHR的左心室功能在两个年龄组之间似乎稳定。6. 我们基于单个纵向图像切片开发了一个简单的左心室几何模型,并成功用于描述WKY和SHR中左心室的一些功能参数。该几何模型有可能在未来大鼠心脏生理学的系列研究中大大减少研究跳动心脏所需的成像时间。7. 我们的实验和分析方法共同构成了一套强大的定量技术,将成像和功能分析相结合,适用于未来动物疾病模型慢性生理变化的研究。

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