研究领域
1)显微成像信号处理与分析,神经图像分析;2)统计学习,神经建模。
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[1] Quan T.W., H. Zhou, J. Li, S.W. Li, A.A. Li, Y.X. Li, X.H. Lv, Q.M. Luo, H. Gong*, S.Q. Zeng*, NeuroGPS-Tree: automatic reconstruction of large-scale neuronal populations with dense neurites[J]. Nature Methods, 2016, 13(1): 51-54. [2] Liu X.L., Lv X.H., T.W. Quan*, S.Q. Zeng, Error estimation for reconstruction of neuronal spike firing from fast calcium imaging[J]. Biomedical Optics Express, 2015, 6(2): 421-432. [3] Quan T#, J. Li#, H. Zhou, T. Zheng, Z.Q. Yang, Q.M. Luo, H. Gong*, S.Q. Zeng*, Digital reconstruction of the cell body in dense neural circuits using a spherical-coordinated variational model[J]. Scientific Reports, 2014, 4. [4] Quan T.W., T. Zheng, Z.Q. Yang, W. Ding, S.W. Li, J. Li, H. Zhou, Q.M. Luo, H. Gong*, S.Q. Zeng*, NeuroGPS: automated localization of neurons for brain circuits using L1 minimization model, Scientific Reports, 2013, 3. [5] Quan T.W., H.Y. Zhu, X.M. Liu, Y.F. Liu, J.P. Ding, S.Q. Zeng, Z.L. Huang*, High-density localization of active molecules using Structured Sparse Model and Bayesian Information Criterion, Optics Express , 2011, 19, 16963-16974. [6] Quan T.W., X.M. Liu* and Q. Liu*, "Weighted least squares support vector machine local region method for nonlinear time series prediction," Applied Soft Computing 10(2), 562-566 [7] Quan T.W., X.L. Liu, X.H. Lv*, W.R. Chen, S.Q. Zeng, Method to reconstruct neuronal action potential train from two-photon calcium imaging,Journal of Biomedical Optics, 2010,11: 0660021-6 [8] Quan T.W., S.Q. Zeng, Z.L. Huang*, Localization capability and limitation of electron-multiplying charge-coupled, scientific complementary metal-oxide semiconductor, and charge-coupled devices for super resolution imaging, Journal of Biomedical Optics, 2010,11: 0660051-6 [9] Quan T.W.#, P. C. Li#, F. Long, S.Q. Zeng, Q.M. Luo, P.N. Hedde, G.U. Nienhaus, Z.L. Huang*, Ultra-fast, high-precision image analysis for localization-based super resolution microscopy, Optics Express, 2010, 5: 11867-11876