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首页> 外文期刊>Journal of cardiovascular electrophysiology >Novel robotic catheter remote control system: feasibility and safety of transseptal puncture and endocardial catheter navigation.
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Novel robotic catheter remote control system: feasibility and safety of transseptal puncture and endocardial catheter navigation.

机译:新型机器人导管远程控制系统:经隔穿刺和心内膜导管导航的可行性和安全性。

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OBJECTIVES: The aims of this study were to demonstrate the safety and the feasibility of the robotic catheter remote control system (CCS) in endocardial navigation in all cardiac chambers, as well as facilitation of the transseptal puncture. BACKGROUND: CCS has been developed to facilitate control and precise positioning of catheters within the cardiovascular system. METHODS: CCS consists of a remote catheter manipulator, a set up joint, a physician workstation, and a steerable guide catheter (SGC) and sheath. A conventional 4-mm tip catheter was inserted through the SGC to perform mapping of five predefined targets in each cardiac chamber. Seven mongrel dogs were used in this study. Intracardiac echocardiography and three-dimensional (3-D) electroanatomical mapping were integrated with CCS to facilitate catheter manipulation and to guide transseptal puncture. The time to complete the transseptal puncture and the time to complete access to the predefined targets in each cardiac chamber were measured. Gross and microscopic examinations of the accessed and ablation sites were performed to evaluate safety. RESULTS: Transseptal puncture was performed successfully in all animals with a mean time of 7 +/- 3 minutes. Procedure times to access the five targets in the right atrium, right ventricle, left atrium, and left ventricle were 5.6 +/- 1.7, 4.6 +/- 1.5, 13.5 +/- 11.0, 7.0 +/- 2.9 minutes, respectively. There were no intracardiac damages associated with catheter manipulation noted in the excised hearts. CONCLUSIONS: Endocardial catheter navigation and mapping using the robotic catheter remote control is safe and feasible. Moreover, the CCS could be used to perform transseptal puncture and left atrial instrumentation.
机译:目的:本研究的目的是证明机器人导管远程控制系统(CCS)在所有心腔内心内膜导航中的安全性和可行性,以及促进经隔膜的穿刺。背景:已开发出CCS来促进心血管系统内导管的控制和精确定位。方法:CCS由一个远程导管操纵器,一个固定关节,一个医生工作站以及一个可操纵导向导管(SGC)和护套组成。通过SGC插入常规的4毫米尖端导管,以在每个心腔中绘制五个预定目标。在这项研究中使用了七只杂种狗。心内超声心动图和三维(3-D)电解剖图与CCS集成在一起,以方便导管操作和引导经隔穿刺。测量完成经房间隔穿刺的时间和完成进入每个心腔内预定目标的时间。对进入和消融部位进行了大体和显微镜检查,以评估安全性。结果:所有动物均成功进行了经隔穿刺,平均时间为7 +/- 3分钟。进入右心房,右心室,左心房和左心室中五个目标的过程时间分别为5.6 +/- 1.7、4.6 +/- 1.5、13.5 +/- 11.0、7.0 +/- 2.9分钟。在切除的心脏中未发现与导管操作相关的心内膜损害。结论:使用机器人导管远程控制的心内导管导航和测绘是安全可行的。此外,CCS可用于进行经隔穿刺和左心房器械检查。

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