Bipolar electrograms (EGM) are widely used to assess intracardiac electrical activity and to find the atrial fibrillation-related sources. However, the interpretation of bipolar EGM is not straightforward. Variables including bipolar lead (vector) orientation relative to the wave propagation dynamics significantly impact the EGM and EGM-derived measures, which are clinically used to select target sources for catheter ablation. In this study, left atrial unipolar EGM were recorded using a 4 × 4 grid of 16 unipolar electrodes. A set (node) of 4 unipolar EGM were used to construct possible 6 bipolar EGM to evaluate the measurement uncertainty within a particular node. A novel beamforming-inspired spatial filtering (BiSF) method is proposed to reduce the potential measurement uncertainty inevitable in bipolar EGM. A set of three bipolar lead orientations that were constructed using a common unipolar electrode towards three different directions at 45°s, were added to form beamforming EGM. Finally, two beamforming EGM were intertwined to acquire BiSF EGM for a node. Results show greater signal power gain (at least around 10dB) for all BiSF EGM with better or similar signal-to-noise ratio as compared to their respective bipolar counterparts. In conclusion, reduced uncertainty in BiSF EGM improve the interpretation of EGM and EGM-derived measures used in clinical practice after further validation on a larger dataset.
[1]
Jeongho Park,et al.
Random access in millimeter-wave beamforming cellular networks: issues and approaches
,
2015,
IEEE Communications Magazine.
[2]
Monthippa Uthansakul,et al.
Orthogonal Beamforming for Multiuser Wireless Communications: Achieving higher received signal strength and throughput than with conventional beamforming.
,
2017,
IEEE Antennas and Propagation Magazine.
[3]
Elad Anter,et al.
Bipolar voltage amplitude: What does it really mean?
,
2016,
Heart rhythm.
[4]
J. Relan,et al.
Effect of bipolar electrode orientation on local electrogram properties.
,
2018,
Heart rhythm.
[5]
李永军,et al.
Atrial Fibrillation
,
1999
.
[6]
Kumaraswamy Nanthakumar,et al.
Determinants of atrial bipolar voltage: Inter electrode distance and wavefront angle
,
2018,
Comput. Biol. Medicine.
[7]
Rajiv Mahajan,et al.
Pathophysiology of Paroxysmal and Persistent Atrial Fibrillation: Rotors, Foci and Fibrosis.
,
2017,
Heart, lung & circulation.
[8]
Kumaraswamy Nanthakumar,et al.
Orientation-Independent Catheter-Based Characterization of Myocardial Activation
,
2017,
IEEE Transactions on Biomedical Engineering.
[9]
M. Rienstra,et al.
Atrial fibrillation
,
2016,
Nature Reviews Disease Primers.