刘娟娟,王翔,赵燕,熊秀勤,王孝君,陈志强,张良潮,李陶.二维斑点追踪技术评价脓毒症兔模型左心室收缩功能[J].中国医学影像技术,2013,29(4):498~502
二维斑点追踪技术评价脓毒症兔模型左心室收缩功能
Evaluation of left ventricular systolic function of rabbits with sepsis using two-dimensional speckle tracking imaging
投稿时间:2012-10-12  修订日期:2012-12-23
DOI:
中文关键词:  斑点追踪显像  脓毒症  心室功能,左  模型,动物
英文关键词:Speckle tracking imaging  Spesis  Ventricular function, left  Models, animal
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作者单位E-mail
刘娟娟 第三军医大学大坪医院野战外科研究所超声科, 重庆 400042  
王翔 第三军医大学大坪医院野战外科研究所超声科, 重庆 400042  
赵燕 河南省周口卫生学校附属医院超声科, 河南 周口 466000  
熊秀勤 第三军医大学大坪医院野战外科研究所超声科, 重庆 400042  
王孝君 第三军医大学大坪医院野战外科研究所超声科, 重庆 400042  
陈志强 第三军医大学大坪医院野战外科研究所 第六研究室, 重庆 400042  
张良潮 第三军医大学大坪医院野战外科研究所 第六研究室, 重庆 400042  
李陶 第三军医大学大坪医院野战外科研究所超声科, 重庆 400042 litao9816@126.com 
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中文摘要:
      目的 应用超声斑点追踪技术(STI)评价脓毒症兔左心室收缩功能变化。 方法 将24只健康家兔随机分为实验组(n=12)和对照组(n=12),分别经耳缘静脉注射0.8 mg/kg体质量的内毒素(LPS)和4 ml/kg体质量生理盐水;于注入LPS/生理盐水前、后2、4、6、8、12 h对两组兔行常规超声心动图和STI检查,测定左心室舒张末期内径(LVDd)、左心室收缩末期内径(LVDs)、心输出量(CO)、左心室射血分数(LVEF)、左心室缩短分数(LVFS),左心室整体纵向应变(GLS)、整体圆周应变(GCS)、整体径向应变(GRS)。在LPS注入后6、8、12 h获得心肌标本,利用光镜观察兔心肌病理改变。 结果 与对照组比较,实验组注入LPS后2、4 h时LVEF、LVFS和GRS无明显改变(P>0.05),GLS、GCS显著下降(P<0.05);注入LPS后6、8、12 h,LVDd、LVDs增大(P<0.05),LVEF、LVFS明显下降(P<0.05),GLS、GCS、GRS均有明显降低(P<0.05)。实验前后两组CO未见明显变化(P>0.05)。光镜下实验组兔可见心肌细胞变性、水肿,炎症细胞浸润等病理性改变。 结论 常规超声心动图和STI均能有效评估脓毒症兔早期即血流动力学高动力阶段左心室功能异常,尤其是STI能更早、更敏感地发现脓毒症兔心肌异常形变。
英文摘要:
      Objective To observe the left ventricular systolic function of rabbits with sepsis using two-dimensional speckle tracking imaging (STI). Methods Twenty-four healthy rabbits were divided randomly into experimental group and control group (each n=12). Rabbits in experimental group were given LPS (0.8 mg/kg) by intravenous injection, while in the control group were injected with saline (4 ml/kg). The parameters of conventional echocardiography and 2D STI were obtained before injection of LPS/saline and 2 h, 4 h, 6 h, 8 h, 12 h after injection, including left ventricular end diastolic diameter (LVDd), left ventricular end systolic diameter (LVDs), left ventricular ejection fraction (LVEF), left ventricular fractional shortening (LVFS), cardic output (CO), left ventricular global longitudinal strain (GLS), left ventricular global circumferential strain (GCS) and left ventricular global radial strain (GRS). The sample was collected at 6 h, 8 h, 12 h after LPS injection. The pathological changes of cardiac tissue were checked by HE staining. Results Compared with control group, left ventricular GLS, GCS decreased significantly 2 h and 4 h after LPS injection in experimental group (all P<0.05), while LVEF, LVFS and GRS did not show significant alterations (all P>0.05). At 6 h, 8 h and 12 h after LPS injection, LVDd and LVDs became larger (both P<0.05), LVEF and LVFS decreased significantly (both P<0.05), GLS, GCS, GRS all showed significant decrease in experimental group (all P<0.05). CO did not show alterations before and after the experiment in the two groups (P>0.05). Light microscopy showed that rabbits in experimental group had degeneration, edema and inflammatory cell infiltration, etc. Conclusion Both conventional ultrasonography and STI can effectively evaluate left ventricular dysfunction at the early phase of sepsis rabbits in hyperdynamic hemodynamics. STI can be more earlier and more sensitively find the abnormality of myocardial deformation in rabbits with sepsis.
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