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Compared to frame-based methods, computational neuromorphic imaging using event cameras offers significant advantages, such as minimal motion blur, enhanced temporal resolution, and high dynamic range.
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Zhang, K.; Riegler, G.; Snavely, N.; and Koltun, V. 2020 · 2010
Earlier work this paper cites.
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Michel, V.; Gramfort, A.; Varoquaux, G.; Eger, E.; and Thirion, B. 2011 · 2011
Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Paszke, A.; Gross, S.; Massa, F.; Lerer, A.; Bradbury, J.; Chanan, G.; Killeen, T.; Lin, Z.; Gimelshein, N.; Antiga, L.; et al. 2019 · 2019
Earlier work this paper cites.
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Earlier work this paper cites.
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Sitzmann, V.; Thies, J.; Heide, F.; Nießner, M.; Wetzstein, G.; and Zollhofer, M. 2019 · 2019
Earlier work this paper cites.
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Earlier work this paper cites.
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Liu, S.; Li, T.; Chen, W.; and Li, H. 2020 · 2020
Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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Lin, C.-H.; Ma, W.-C.; Torralba, A.; and Lucey, S. 2021 · 2021
Earlier work this paper cites.
Differentiable event stream simulator for non-rigid 3d tracking
Nehvi, J.; Golyanik, V.; Mueller, F.; Seidel, H.-P.; Elgharib, M.; and Theobalt, C. 2021 · 2021
Earlier work this paper cites.
In-place scene labelling and understanding with implicit scene representation
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Event-Based Stereo Visual Odometry
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Cited alongside, same era.
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Deng, K.; Liu, A.; Zhu, J.-Y.; and Ramanan, D. 2022 · 2022
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Event-aided direct sparse odometry
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Cited alongside, same era.
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E2NeRF: Event Enhanced Neural Radiance Fields from Blurry Images
Qi, Y.; Zhu, L.; Zhang, Y.; and Li, J. 2023 · 2023
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Rosinol, A.; Leonard, J. J.; and Carlone, L. 2023 · 2023
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Shao, Z.; Fang, X.; Li, Y.; Feng, C.; Shen, J.; and Xu, Q. 2023 · 2023
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Truong, P.; Rakotosaona, M.-J.; Manhardt, F.; and Tombari, F. 2023 · 2023
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Cited alongside, same era.
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3d-aware object goal navigation via simultaneous exploration and identification
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