Bourier Felix, Gianni Carola, Dare Matthew, Deisenhofer Isabel, Hessling Gabriele, Reents Tilko, Mohanty Sanghamitra, Trivedi Chintan, Natale Andrea, Al-Ahmad Amin
Texas Cardiac Arrhythmia Institute, St. David's Medical Center, Austin, Texas, USA.
Department of Electrophysiology, German Heart Center Munich, Technische Universitaet Munich, Germany.
J Cardiovasc Electrophysiol. 2017 Jan;28(1):109-114. doi: 10.1111/jce.13100. Epub 2016 Oct 24.
Contact-force (CF) sensing catheters are increasingly used in electrophysiological procedures due to their efficacy and safety profile. As data about the accuracy of fiberoptic CF technology are scarce, we sought to quantify it using in vitro experiments.
A force sensor was built with a flexible membrane to allow exact reference force measurements for each set of experiments. A TactiCath Quartz (TCQ) ablation catheter was brought in contact with the force sensor membrane in order to compare the TCQ force measurements to sensor reference force measurements. Measurements were performed at different tip angles (0°/perpendicular contact, 45°, 90°/parallel contact), with fluid irrigation, different degrees of catheter deflection, and using a sheath. The accuracy of the TCQ force measurements was 0.9 ± 0.9 g (0°), 0.8 ± 0.8 g (45°) and 1.2 ± 1.3 g (90°), 0.8 ± 0.7 g (irrigation), 0.8 ± 0.8 g (deflection), and 0.8 ± 0.9 g (sheath); this was not significantly different among all experimental conditions. The precision was ≤3.8%.
CF measurements using a fiberoptic sensing technology show a high level of accuracy and precision, without being significantly influenced by tip angle, fluid irrigation, catheter deflection or use of a sheath.
接触力(CF)传感导管因其有效性和安全性,在电生理手术中使用得越来越多。由于关于光纤CF技术准确性的数据稀缺,我们试图通过体外实验对其进行量化。
构建了一个带有柔性膜的力传感器,以便为每组实验进行精确的参考力测量。将 TactiCath Quartz(TCQ)消融导管与力传感器膜接触,以便将TCQ力测量值与传感器参考力测量值进行比较。在不同的尖端角度(0°/垂直接触、45°、90°/平行接触)、进行液体冲洗、不同程度的导管偏转以及使用鞘管的情况下进行测量。TCQ力测量的准确度在0°时为0.9±0.9克、45°时为0.8±0.8克、90°时为1.2±1.3克、冲洗时为0.8±0.7克、偏转时为0.8±0.8克、使用鞘管时为0.8±0.9克;在所有实验条件下,这并无显著差异。精密度≤3.8%。
使用光纤传感技术进行CF测量显示出高度的准确度和精密度,不受尖端角度、液体冲洗、导管偏转或鞘管使用的显著影响。