• 冠状静脉窦逆灌有效心肌保护方法

    Retrograde coronary sinus perfusion was a feasible approach for myocardial protection.

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  • 术后动脉造影,观察冠状静脉窦形态。

    The morphologic features of the coronary sinus was also studied with coronary angiography.

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  • 术中常规放置冠状静脉窦导管心室起搏导管。

    Coronary sinus catheter and right ventricular catheter were placed.

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  • 结论冠状静脉窦憩室间隔旁路存在着解剖关系。

    Conclusions Coronary sinus diverticulum is anatomically intimately related to the posteroseptal accessory pathway.

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  • 冠状静脉窦造影检查有助于发现憩室确定有效消融部位

    Coronary venography during the ablation session is very helpful to detect the diverticulum and identify the effective ablation site.

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  • 1钟向阻滞者,冠状静脉口刺激诱发出短阵逆钟向

    Temporary counterclockwise atrial flutter was induced by pacing at coronary sinus ostium in 1 case with clockwise block in the isthmus.

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  • 目的探讨实时三维超声心动图技术对无静脉综合征诊断价值

    Objective To explore the value of real-time three-dimensional echocardiography (RT-3DE) in visualization of pathological structures of unroofed coronary sinus syndrome (UCSS).

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  • 目的评价冠状静脉窦逆行灌注法应用心脏不停跳瓣膜替换手术的价值。

    Objective: To evaluate the myocardial protective effect of continuous retrograde coronary sinus perfusion for heart valve replacement in beating heart.

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  • 结果所有患者冠状静脉有一憩室在憩室的颈部消融阻断房室旁路。

    Results A diverticulum attaching the proximal coronary sinus was found and the associated accessory pathway was successfully ablated at the neck of diverticulum in all of these five patients.

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  • 成功消融靶点左侧游离2例、左后间隔冠状静脉窦憩室4例、心中静脉7例。

    The effective target sites:7 within middle vein, 4 at the neck of coronary sinus diverticulum and 2 at left free wall.

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  • 目的应用静脉窦逆行灌注法对心脏不停跳心脏瓣膜替换手术进行临床分析

    Objective To analyze valve replacement through the coronary sinus in retrograde perfusion heart surgery.

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  • 目的探讨冠状静脉逆行灌注心脏不停跳方法体外循环术中心肌保护效果

    Objective: To study the myocardial protective effects on retrograde perfusion via coronary sinus in beating heart.

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  • 目的验证直视插管测定心脏冠状静脉窦流量方法可行性有效性总结监测经验

    Objective to verify the possibility and the efficacy of measurement of coronary sinus blood flow by visual cannulation in canine heart, and to summarize the experience of monitoring.

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  • 患者均进行了心室同步起搏,起搏电极导线分别置于右心房、右心室以及经由冠状静脉窦置于一支心脏静脉起搏心室。

    All of them received three chamber biventricular pacing and the left ventricular pacing lead was inserted into a cardiac vein through coronary sinus.

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  • 心室起搏电极导线植入不同冠状静脉分支,其中,心大静脉16例,心侧静脉9例,心侧后静脉21例静脉23例,心中静脉2例。

    The left ventricular lead was implanted in branch of coronary sinus, 16 in great cardiac vein, 9 in latherier vein, 21 in latherier posterior vein, 23 in posterior vein and 2 in middle cardiac vein.

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  • 心室起搏电极导线植入不同冠状静脉分支,其中,心大静脉16例,心侧静脉9例,心侧后静脉21例静脉23例,心中静脉2例。

    The left ventricular lead was implanted in branch of coronary sinus, 16 in great cardiac vein, 9 in latherier vein, 21 in latherier posterior vein, 23 in posterior vein and 2 in middle cardiac vein.

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