Experience in the application of active fixation leads in patients with right ventricular septum pacing. The effect of RVOTS spiral electrode pacing on hemodynamics 采用螺旋电极导线行右室流出道间隔部起搏的经验右心室流出道间隔部螺旋电极起搏对血流动力学的影响
Objective To evaluate the effect of RVOTS spiral electrode pacing on hemodynamics in the treatment by atrioventricular sequential pacing. 目的评价在房室顺序起搏治疗中,右心室流出道间隔部螺旋电极起搏对血流动力学的影响。
The effect of RVOTS spiral electrode pacing on hemodynamics A clinical comparison of hemodynamics between RVOT septum pacing and RVA pacing 右心室流出道间隔部螺旋电极起搏对血流动力学的影响右室流出道间隔部与心尖部起搏血液动力学临床对比研究
Conclusions The usual atrial electrode could replace the spiral electrode for pacing in RVOT. 结论普通心房J型电极似可以替代螺旋电极行RVOT永久起搏。
An Investigation Into the Hole Expanding Process by Using a Spiral shaped Electrode in EDM 螺旋电极电解扩孔工艺研究
Multi-slice Spiral CT Imaging in the Post-operative Assessment of Cochlear Implanted Electrode △ 多层螺旋CT对人工耳蜗植入术后电极的评价
Study of alloyed pH spiral electrode for determinating fetal scalp tissue TPH during labour 产时胎儿头皮组织PH值测定用螺旋式合金型PH传感器的研制
Research on the Machining of Electro-chemical Grinding by Using a Spiral Electrode 螺旋电极电解磨削加工的研究
Clinical application of spiral electrode in permanent pacing 螺旋电极在永久心脏起搏器中的应用体会
Objective To explore the clinical application of spiral electrode wire in the right ventricular outflow tract ( RVOT) pace-making and its therapeutic effect. 目的探讨右室流出道起搏螺旋电极导线的临床应用疗效。
Objective To observe the changes in impedance of electrodes after embedding implants, and to compare the impedance of straight electrode array with spiral electrode array. 目的研究多导人工耳蜗植入后电极阻抗变化的特点,对比直电极和弯电极的阻抗差异,为人工耳蜗植入术后的调试提供参考。
The analysis of thickness change of CSF can provide certain theoretical guidance for implanting spiral cuff electrode onto optic nerve in clinical practice. 4. CSF层厚度变化对刺激结果的分析可以为临床中螺旋袖套电极植入视神经提供一定的计算支持。
In addition, only using the feed in Z axis without X, Y axis or NC function, a micro three-dimensional spiral structure can be obtained with brass electrode using special parameters. 并发现在特定参数下用黄铜电极可以沉积出微三维螺旋结构,这种微三维结构是在没有使用X、Y轴和数控功能,而仅仅是Z轴进给的条件下得到的。