Impact of right-ventricular apical pacing on the optimal left-ventricular lead positions measured by phase analysis of SPECT myocardial perfusion imaging.

Impact of right-ventricular apical pacing on the optimal left-ventricular lead positions measured by phase analysis of SPECT myocardial perfusion imaging.
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通过 SPECT 心肌灌注成像相位分析测量右心室心尖起搏对最佳左心室导联位置的影响。

DOI:
10.1007/s00259-014-2693-y
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发表时间:
2014
影响因子:
9.1
通讯作者:
Chen,Ji
Chen,Ji
中科院分区:
医学1区
文献类型:
--
作者:
Hung,Guang-Uei;Huang,Jin-Long;Lin,Wan-Yu;Tsai,Shih-Chung;Wang,Kuo-Yang;Chen,Shih-Ann;Lloyd,MichaelS;Chen,Ji

文献摘要

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PurposeThe use of SPECT phase analysis to optimize left-ventricular (LV) lead positions for cardiac resynchronization therapy (CRT) was performed at baseline, but CRT works as simultaneous right ventricular (RV) and LV pacing. The aim of this study was to assess the impact of RV apical (RVA) pacing on optimal LV lead positions measured by SPECT phase analysis.MethodsThis study prospectively enrolled 46 patients. Two SPECT myocardial perfusion scans were acquired under sinus rhythm with complete left bundle branch block and RVA pacing, respectively, following a single injection of99mTc-sestamibi. LV dyssynchrony parameters and optimal LV lead positions were measured by the phase analysis technique and then compared between the two scans.ResultsThe LV dyssynchrony parameters were significantly larger with RVA pacing than with sinus rhythm (p~0.01). In 39 of the 46 patients, the optimal LV lead positions were the same between RVA pacing and sinus rhythm (kappa = 0.861). In 6 of the remaining 7 patients, the optimal LV lead positions were along the same radial direction, but RVA pacing shifted the optimal LV lead positions toward the base.ConclusionThe optimal LV lead positions measured by SPECT phase analysis were consistent, no matter whether the SPECT images were acquired under sinus rhythm or RVA pacing. In some patients, RVA pacing shifted the optimal LV lead positions toward the base. This study supports the use of baseline SPECT myocardial perfusion imaging to optimize LV lead positions to increase CRT efficacy.