Multiple Peaks from a Single Dipole in a Homogeneous Torso Model

Author(s):  
S. Rush ◽  
A. Ricca ◽  
M. Sala ◽  
B. Taccardi
2016 ◽  
Vol 16 (2) ◽  
pp. 96-102 ◽  
Author(s):  
Olena Punshchykova ◽  
Jana Švehlíková ◽  
Milan Tyšler ◽  
Richard Grünes ◽  
Ksenia Sedova ◽  
...  

AbstractLocation of premature ectopic ventricular activity was assessed noninvasively in five patients using integral body surface potential maps and inverse solution in terms of a single dipole. Precision of the inverse solution was studied using three different torso models: homogeneous torso model, inhomogeneous torso model including lungs and heart ventricles and inhomogeneous torso model including lungs, heart ventricles and atria, aorta and pulmonary artery. More stable results were obtained using the homogeneous model. However, in some patients the location of the resulting dipole representing the focus of ectopic activity was shifted between solutions using the homogeneous and inhomogeneous models. Comparison of solutions with inhomogeneous torso models did not show significantly different dispersions, but localization of the focus was better when a torso model including atria and arteries was used. The obtained results suggest that presented noninvasive localization of the ectopic focus can be used to shorten the time needed for successful ablation and to increase its success rate.


IEEE Access ◽  
2021 ◽  
pp. 1-1
Author(s):  
Zhenghui Hu ◽  
Kaikai Ye ◽  
Mingzhu Bai ◽  
Zekuan Yang ◽  
Qiang Lin

2006 ◽  
Vol 105 (4) ◽  
pp. 588-594 ◽  
Author(s):  
Peter T. Lin ◽  
Mitchel S. Berger ◽  
Srikantan S. Nagarajan

Object In this study the role of magnetic source imaging for preoperative motor mapping was evaluated by using a single-dipole localization method to analyze motor field data in 41 patients. Methods Data from affected and unaffected hemispheres were collected in patients performing voluntary finger flexion movements. Somatosensory evoked field (SSEF) data were also obtained using tactile stimulation. Dipole localization using motor field (MF) data was successful in only 49% of patients, whereas localization with movement-evoked field (MEF) data was successful in 66% of patients. When the spatial distribution of MF and MEF dipoles in relation to SSEF dipoles was analyzed, the motor dipoles were not spatially distinct from somatosensory dipoles. Conclusions The findings in this study suggest that single-dipole localization for the analysis of motor data is not sufficiently sensitive and is nonspecific, and thus not clinically useful.


2015 ◽  
Vol 43 (6) ◽  
pp. 3468-3493 ◽  
Author(s):  
Jian Ding ◽  
Ronen Eldan ◽  
Alex Zhai

2013 ◽  
Vol 15 (5) ◽  
pp. 1526-1531 ◽  
Author(s):  
S. Alexis Paz ◽  
Martin E. Zoloff Michoff ◽  
Christian F. A. Negre ◽  
Jimena A. Olmos-Asar ◽  
Marcelo M. Mariscal ◽  
...  

2021 ◽  
Author(s):  
Wanbo Xiao ◽  
Siqi Lu ◽  
Yanbin Wang

<p>Despite the popularity of the horizontal to vertical spectral ratio (HVSR) method in site effect studies, the origin of the H/V peaks has been controversial since this method was proposed. Many previous studies mainly focused on the explanation of the first or single peak of the H/V ratio, trying to distinguish between the two hypotheses — the S-wave resonance and ellipticity of Rayleigh wave. However, it is common both in numerical simulations and practical experiments that the H/V ratio exhibits multiple peaks, which is essential to explore the origin of the H/V peaks.</p><p>The cause for the multiple H/V peaks has not been clearly figured out, and once was simply explained as the result of multi subsurface layers. Therefore, we adopted numerical method to simulate the ambient noise in various layered half-space models and calculated the H/V ratio curves for further comparisons. The peak frequencies of the H/V curves accord well with the theoretical frequencies of S-wave resonance in two-layer models, whose frequencies only depend on the S wave velocity and the thickness of the subsurface layer. The same is true for models with varying model parameters. Besides, the theoretical formula of the S-wave resonance in multiple-layer models is proposed and then supported by numerical investigations as in the cases of two-layer models. We also extended the S-wave resonance to P-wave resonance and found that its theoretical frequencies fit well with the V/H peaks, which could be an evidence to support the S-wave resonance theory from a new perspective. By contrast, there are obvious differences between the higher orders of the H/V ratio peaks and the higher orders of Rayleigh wave ellipticity curves both in two-layer and multiple-layer models. The Rayleigh wave ellipticity curves are found to be sensitive to the Poisson’s ratio and the thickness of the subsurface layer, so the variation of the P wave velocity can affect the peak frequencies of the Rayleigh wave ellipticity curves while the H/V peaks show slight change. The Rayleigh wave ellipticity theory is thus proved to be inappropriate for the explanation of the multiple H/V peaks, while the possible effects of the Rayleigh wave on the fundamental H/V peak still cannot be excluded.</p><p>Based on the analyses above, we proposed a new evidence to support the claim that the peak frequencies of the H/V ratio curve, except the fundamental peaks, are caused by S-wave resonance. The relationship between the P-wave resonance and the V/H peaks may also find further application.</p>


2021 ◽  
Author(s):  
Beata Ondrusova ◽  
Jana Svehlikova ◽  
Jan Zelinka ◽  
Milan Tysler ◽  
Peter Tino

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