Echocardiographic speckle tracking radial strain imaging to assess ventricular dyssynchrony in a pacing model of resynchronization therapy.
Echocardiographic speckle tracking radial strain imaging to assess ventricular dyssynchrony in a pacing model of resynchronization therapy.
复制标题
DOI:
10.1016/j.echo.2008.09.012
复制
发表时间:
2008-12
影响因子:
6.5
通讯作者:
Gorcsan, John, III
中科院分区:
文献类型:
--
作者:
Tanabe, Masaki;Lamia, Bouchra;Tanaka, Hidekazu;Schwartzman, David;Pinsky, Michael R.;Gorcsan, John, III
Speckle tracking imaging is a promising new echocardiographic method to assess left ventricular (LV) mechanical dyssynchrony. Our aim was to assess a new speckle tracking regional strain algorithm by comparison to angle corrected tissue Doppler (TD) in an animal model of left bundle branch block (LBBB) and cardiac resynchronization therapy (CRT). Ten open chest dogs had routine grayscale and tissue Doppler images of the mid-left ventricular (LV) short-axis plane. Electrical activation was altered by pacing from right ventricular (RV), LV free wall, and biventricular sites to create various degree of mechanical dyssynchrony and alter regional function. Segmental time-to-peak strain, peak strain and frame-by-frame strain were measured by angle corrected TD, TD M-mode and by speckle tracking on the same digital cineloop. Of 240 possible paired tissue Doppler and speckle tracking segments, data were available for 222 segments (93%); images with catheter artifacts were prospectively excluded. Comparative overall time-to-peak strain by each method correlated well: r = 0.96, bias=−6 ± 20 ms. Of 80 possible paired M-mode tissue Doppler and speckle tracking segments, strain data were available for 76 segments (95%). Comparative overall time-to-peak strain, peak strain and frame-by-frame strain analysis in 1012 frames by each method correlated well: r=0.98, bias of 1±14ms; r=0.82, bias of 3±7%; and r=0.91, bias of 0±6% respectively. Regional strain analysis using echocardiographic speckle tracking radial strain strongly correlated with strain by angle-corrected tissue Doppler imaging in an animal model of dyssynchrony. Speckle tracking radial strain has potential for clinical applications.
登录
查看更多内容
影响因子:
2.8
作者:
Sade, LE;Severyn, DA;Gorcsan, J
通讯作者:
Gorcsan, J
影响因子:
6
作者:
Yamamoto, K;Nishikawa, N;Masuyama, T
通讯作者:
Masuyama, T
影响因子:
37.8
作者:
Urheim, S;Edvardsen, T;Smiseth, OA
通讯作者:
Smiseth, OA
影响因子:
24
作者:
Gorcsan, John, III;Tanabe, Masaki;Bax, Jeroen J.
通讯作者:
Bax, Jeroen J.
影响因子:
24
作者:
Kanzaki, H;Bazaz, R;Gorcsan, J
通讯作者:
Gorcsan, J