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Tian-jian Luo
ORCID
Publication Activity (10 Years)
Years Active: 2018-2024
Publications (10 Years): 10
Top Topics
Motor Imagery
Spinal Cord Injury
Eeg Signals
Joint Distribution
Top Venues
Multim. Tools Appl.
Frontiers Neuroinformatics
Biomed. Signal Process. Control.
BMC Bioinform.
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Publications
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Tian-jian Luo
Class-specific regularized joint distribution alignment for unsupervised domain adaptation.
Eng. Appl. Artif. Intell.
131 (2024)
Tian-jian Luo
Selective regularized spatial features representation learning for motor imagery EEG based on alternating cascaded model.
Appl. Soft Comput.
165 (2024)
Yifan Zhou
,
Tian-jian Luo
,
Xiaochen Zhang
,
Te Han
Spatial Feature Regularization and Label Decoupling Based Cross-Subject Motor Imagery EEG Decoding.
PRCV (13)
(2023)
Tian-jian Luo
Parallel genetic algorithm based common spatial patterns selection on time-frequency decomposed EEG signals for motor imagery brain-computer interface.
Biomed. Signal Process. Control.
80 (Part) (2023)
Tian-jian Luo
,
Changle Zhou
Lateralized modulation brought by discrepancy speed ratios of left and right arm movements during human action observation: an EEG study.
Multim. Tools Appl.
81 (13) (2022)
Zi-yan Yu
,
Tian-jian Luo
Research on clothing patterns generation based on multi-scales self-attention improved generative adversarial network.
Int. J. Intell. Comput. Cybern.
14 (4) (2021)
Tian-jian Luo
,
Yachao Fan
,
Lifei Chen
,
Gongde Guo
,
Changle Zhou
EEG Signal Reconstruction Using a Generative Adversarial Network With Wasserstein Distance and Temporal-Spatial-Frequency Loss.
Frontiers Neuroinformatics
14 (2020)
Tian-jian Luo
High-resolution SAR images segmentation using NSCT denoising and QIGA based parameters selection of PCNN model.
Multim. Tools Appl.
79 (39-40) (2020)
Tian-jian Luo
,
Changle Zhou
,
Fei Chao
Exploring spatial-frequency-sequential relationships for motor imagery classification with recurrent neural network.
BMC Bioinform.
19 (1) (2018)
Tian-jian Luo
,
Yachao Fan
,
Jitu Lv
,
Changle Zhou
Deep reinforcement learning from error-related potentials via an EEG-based brain-computer interface.
BIBM
(2018)