
Xiaoliang Xie
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2020
- [j16]Xiaoliang Xie, Jiali He
, Dan Huang:
Three-Way Group Decision in a Covering Decision Information System. IEEE Access 8: 5172-5188 (2020) - [j15]Peng Luo
, Xilong Qu, Lina Tan, Xiaoliang Xie, Weijin Jiang, Lirong Huang, Wai-Hung Ip
, Kai-Leung Yung:
Robust Ensemble Manifold Projective Non-Negative Matrix Factorization for Image Representation. IEEE Access 8: 217781-217790 (2020) - [j14]Yan-Jie Zhou, Xiao-Liang Xie, Xiao-Hu Zhou, Shi-Qi Liu, Gui-Bin Bian, Zeng-Guang Hou:
Pyramid attention recurrent networks for real-time guidewire segmentation and tracking in intraoperative X-ray fluoroscopy. Comput. Medical Imaging Graph. 83: 101734 (2020) - [j13]Yinghao Chen, Chun Yi, Xiaoliang Xie, Muzhou Hou, Yangjin Cheng:
Solution of Ruin Probability for Continuous Time Model Based on Block Trigonometric Exponential Neural Network. Symmetry 12(6): 876 (2020) - [j12]Xiao-Hu Zhou
, Gui-Bin Bian
, Xiao-Liang Xie
, Zeng-Guang Hou
, Rui-Qi Li, Yan-Jie Zhou:
Qualitative and Quantitative Assessment of Technical Skills in Percutaneous Coronary Intervention: In Vivo Porcine Studies. IEEE Trans. Biomed. Eng. 67(2): 353-364 (2020) - [j11]Xiao-Hu Zhou
, Gui-Bin Bian
, Xiao-Liang Xie
, Zeng-Guang Hou
:
An Interventionalist-Behavior-Based Data Fusion Framework for Guidewire Tracking in Percutaneous Coronary Intervention. IEEE Trans. Syst. Man Cybern. Syst. 50(11): 4836-4849 (2020) - [c44]Zhen-Liang Ni, Gui-Bin Bian, Guan'an Wang, Xiao-Hu Zhou, Zeng-Guang Hou, Hua-Bin Chen, Xiao-Liang Xie:
Pyramid Attention Aggregation Network for Semantic Segmentation of Surgical Instruments. AAAI 2020: 11782-11790 - [c43]Yan-Jie Zhou, Xiao-Liang Xie, Gui-Bin Bian, Zeng-Guang Hou:
A Lightweight Recurrent Attention Network for Real-Time Guidewire Segmentation and Tracking in Interventional X-Ray Fluoroscopy. ECAI 2020: 2848-2855 - [c42]Rui-Qi Li, Gui-Bin Bian, Xiao-Hu Zhou, Xiaoliang Xie, Zhen-Liang Ni, Zengguang Hou:
CAU-net: A Novel Convolutional Neural Network for Coronary Artery Segmentation in Digital Substraction Angiography. ICONIP (1) 2020: 185-196 - [c41]Xiao-Hu Zhou, Xiao-Liang Xie, Zhen-Qiu Feng, Zeng-Guang Hou, Gui-Bin Bian, Rui-Qi Li, Zhen-Liang Ni, Shi-Qi Liu, Yan-Jie Zhou:
A Multilayer-Multimodal Fusion Architecture for Pattern Recognition of Natural Manipulations in Percutaneous Coronary Interventions. ICRA 2020: 3039-3045 - [c40]Zhen-Liang Ni, Gui-Bin Bian, Zeng-Guang Hou, Xiao-Hu Zhou, Xiao-Liang Xie, Zhen Li:
Attention-Guided Lightweight Network for Real-Time Segmentation of Robotic Surgical Instruments. ICRA 2020: 9939-9945 - [c39]Zhen-Liang Ni, Gui-Bin Bian, Guan'an Wang, Xiao-Hu Zhou, Zeng-Guang Hou, Xiao-Liang Xie, Zhen Li, Yu-Han Wang:
BARNet: Bilinear Attention Network with Adaptive Receptive Fields for Surgical Instrument Segmentation. IJCAI 2020: 832-838 - [c38]Yan-Jie Zhou, Xiao-Liang Xie, Zeng-Guang Hou, Gui-Bin Bian, Shi-Qi Liu, Xiao-Hu Zhou:
FRR-NET: Fast Recurrent Residual Networks for Real-Time Catheter Segmentation and Tracking in Endovascular Aneurysm Repair. ISBI 2020: 961-964 - [c37]Yan-Jie Zhou, Xiao-Liang Xie, Zeng-Guang Hou, Xiao-Hu Zhou, Gui-Bin Bian, Shi-Qi Liu:
Lightweight Double Attention-Fused Networks for Intraoperative Stent Segmentation. MICCAI (6) 2020: 3-13 - [i4]Zhen-Liang Ni, Gui-Bin Bian, Guan'an Wang, Xiao-Hu Zhou, Zeng-Guang Hou, Xiao-Liang Xie, Zhen Li, Yu-Han Wang:
BARNet: Bilinear Attention Network with Adaptive Receptive Field for Surgical Instrument Segmentation. CoRR abs/2001.07093 (2020)
2010 – 2019
- 2019
- [j10]Xiaoliang Xie, Zhaowen Li
, Pengfei Zhang, Gangqiang Zhang:
Information Structures and Uncertainty Measures in an Incomplete Probabilistic Set-Valued Information System. IEEE Access 7: 27501-27514 (2019) - [j9]Jian Zhang, Wen Zhang, Xiaoliang Xie:
Infinitely many solutions for a gauged nonlinear Schrödinger equation. Appl. Math. Lett. 88: 21-27 (2019) - [j8]Pusit Prasong
, Xiao-Liang Xie, Zeng-Guang Hou:
Applying maximally stable extremal regions and local binary patterns for guide-wire detecting in percutaneous coronary intervention. IET Image Process. 13(13): 2579-2586 (2019) - [j7]Xiao-Hu Zhou
, Gui-Bin Bian
, Xiaoliang Xie
, Zeng-Guang Hou
, Xinkai Qu, Shaofeng Guan:
Analysis of Interventionalists' Natural Behaviors for Recognizing Motion Patterns of Endovascular Tools During Percutaneous Coronary Interventions. IEEE Trans. Biomed. Circuits Syst. 13(2): 330-342 (2019) - [c36]Zhen-Liang Ni, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou, Xiao-Hu Zhou, Yan-Jie Zhou:
RASNet: Segmentation for Tracking Surgical Instruments in Surgical Videos Using Refined Attention Segmentation Network. EMBC 2019: 5735-5738 - [c35]Rui-Qi Li, Xiao-Hu Zhou, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou:
Recognition of Endovascular Manipulations using Recurrent Neural Networks. EMBC 2019: 7010-7013 - [c34]Zhen-Liang Ni, Gui-Bin Bian, Xiao-Hu Zhou, Zeng-Guang Hou, Xiao-Liang Xie, Chen Wang, Yan-Jie Zhou, Rui-Qi Li, Zhen Li:
RAUNet: Residual Attention U-Net for Semantic Segmentation of Cataract Surgical Instruments. ICONIP (2) 2019: 139-149 - [c33]Xuechen Jin, Xiaoliang Xie, Kun An, Qiaoli Wang, Jia Guo:
LoRa Indoor Localization Based on Improved Neural Network for Firefighting Robot. ICONIP (5) 2019: 355-362 - [c32]Yan-Jie Zhou, Xiao-Liang Xie, Gui-Bin Bian, Zeng-Guang Hou, Bao Liu, Zhi-Chao Lai, Xinkai Qu, Shi-Qi Liu, Xiao-Hu Zhou:
Real-Time Guidewire Segmentation and Tracking in Endovascular Aneurysm Repair. ICONIP (1) 2019: 491-500 - [c31]Yan-Jie Zhou, Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou, Yu-Dong Wu, Shi-Qi Liu, Xiao-Hu Zhou, Jiaxing Wang:
Fully Automatic Dual-Guidewire Segmentation for Coronary Bifurcation Lesion. IJCNN 2019: 1-6 - [c30]Rui-Qi Li, Gui-Bin Bian, Xiao-Hu Zhou, Xiaoliang Xie, Zhen-Liang Ni, Zeng-Guang Hou:
A Two-Stage Framework for Real-Time Guidewire Endpoint Localization. MICCAI (5) 2019: 357-365 - [c29]Jia Guo, Zengguang Hou, Xiaoliang Xie, Shuncai Yao, Qiaoli Wang, Xuechen Jin:
Faster R-CNN Based Indoor Flame Detection for Firefighting Robot. SSCI 2019: 1390-1395 - [i3]Zhen-Liang Ni, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou, Xiao-Hu Zhou, Yan-Jie Zhou:
RASNet: Segmentation for Tracking Surgical Instruments in Surgical Videos Using Refined Attention Segmentation Network. CoRR abs/1905.08663 (2019) - [i2]Zhen-Liang Ni, Gui-Bin Bian, Xiao-Hu Zhou, Zeng-Guang Hou, Xiaoliang Xie, Chen Wang, Yan-Jie Zhou, Rui-Qi Li, Zhen Li:
RAUNet: Residual Attention U-Net for Semantic Segmentation of Cataract Surgical Instruments. CoRR abs/1909.10360 (2019) - [i1]Zhen-Liang Ni, Gui-Bin Bian, Zeng-Guang Hou, Xiao-Hu Zhou, Xiao-Liang Xie, Zhen Li:
Attention-Guided Lightweight Network for Real-Time Segmentation of Robotic Surgical Instruments. CoRR abs/1910.11109 (2019) - 2018
- [j6]Xiaoliang Xie, Yunhua Liao:
Subgraph Component Polynomials Of Some Compound Graphs. Ars Comb. 136: 109-125 (2018) - [j5]Xiao-Ran Cheng, Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou, Shi-Qi Liu, Zhan-Jie Gao:
A simulator with an elastic guidewire and vascular system for minimally invasive vascular surgery. Sci. China Inf. Sci. 61(10): 104201:1-104201:3 (2018) - [j4]Jian-Long Hao, Xiao-Liang Xie, Gui-Bin Bian, Zeng-Guang Hou, Xiao-Hu Zhou:
Development and evaluation of a 7-DOF haptic interface. IEEE CAA J. Autom. Sinica 5(1): 261-269 (2018) - [j3]Xiaoliang Xie, Jiali He:
Limits of it-Soft Sets and Their Applications for Rough Sets. Symmetry 10(9): 406 (2018) - [c28]Pusit Prasong, Xiaoliang Xie, Zeng-Huang Hou:
Guide-Wire Detecting Based on Speeded up Robust Features for Percutaneous Coronary Intervention. ICONIP (4) 2018: 405-415 - [c27]Yu-Dong Wu, Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou, Xiao-Ran Cheng, Sheng Chen, Shi-Qi Liu, Qiao-Li Wang:
Automatic Guidewire Tip Segmentation in 2D X-ray Fluoroscopy Using Convolution Neural Networks. IJCNN 2018: 1-7 - 2017
- [c26]Xiao-Hu Zhou, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou:
An HMM-based recognition framework for endovascular manipulations. EMBC 2017: 3393-3396 - [c25]Xiao-Hu Zhou, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou, Jian-Long Hao:
Prediction of natural guidewire rotation using an sEMG-based NARX neural network. IJCNN 2017: 419-424 - [c24]Li Wang, Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou, Xiao-Ran Cheng, Pusit Prasong:
Guide-wire detection using region proposal network for X-ray image-guided navigation. IJCNN 2017: 3169-3175 - 2016
- [j2]Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou, Zhen-Qiu Feng, Jian-Long Hao:
Preliminary study on Wilcoxon-norm-based robust extreme learning machine. Neurocomputing 198: 20-26 (2016) - [c23]Jian-Long Hao, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou, Xiao-Hu Zhou:
A 3-DOF compact haptic interface for endoscopic endonasal approach surgery simulation. AIM 2016: 136-141 - [c22]Li Wang, Xiaoliang Xie, Zhan-Jie Gao, Gui-Bin Bian, Zeng-Guang Hou:
Guide-wire detecting using a modified cascade classifier in interventional radiology. EMBC 2016: 1240-1243 - [c21]Dongxu Zhang, Zengguang Hou, Long Cheng, Gui-Bin Bian, Xiaoliang Xie, Liang Peng:
ε-SVR-based estimation for the motion trajectory of human lower limb using acceleration signals. ICIA 2016: 1278-1283 - [c20]Jian-Long Hao, Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou, Xiao-Hu Zhou:
Development of a multi-modal interactive system for Endoscopic Endonasal Approach surgery simulation. ROBIO 2016: 143-148 - [c19]Xiao-Hu Zhou, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou, Jian-Long Hao:
PCA-based muscle selection for interventional manipulation recognition. ROBIO 2016: 921-926 - [c18]Li Wang, Dong-Jie Li, Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou:
A vessel contour detection and estimation method for robot assisted endovascular surgery. ROBIO 2016: 958-963 - [c17]Xiao-Hu Zhou, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou, Jian-Long Hao:
Tracking natural guidewire manipulations with an improved data glove. ROBIO 2016: 1832-1837 - 2015
- [c16]Zhen-Qiu Feng, Gui-Bin Bian, Xiaoliang Xie, Jian-Long Hao, Zhan-Jie Gao, Zeng-Guang Hou:
Preliminary study for motion scaling based control in minimally invasive vascular interventional robot. EMBC 2015: 4898-4901 - [c15]Zhan-Jie Gao, Xiaoliang Xie, Gui-Bin Bian, Jian-Long Hao, Zhen-Qiu Feng, Zeng-Guang Hou:
Fast and stable guidewire simulator for minimally invasive vascular surgery. EMBC 2015: 5809-5812 - [c14]Jian-Long Hao, Xiaoliang Xie, Gui-Bin Bian, Zhen-Qiu Feng, Zhan-Jie Gao, Zengguang Hou, Hongnian Yu
, Luige Vladareanu:
Dynamic modeling and control simulation of a modified delta manipulator. ICIA 2015: 1573-1578 - [c13]Zhen-Qiu Feng, Gui-Bin Bian, Xiaoliang Xie, Zeng-Guang Hou, Jian-Long Hao:
Design and evaluation of a bio-inspired robotic hand for percutaneous coronary intervention. ICRA 2015: 5338-5343 - [c12]Chengkun Cui, Gui-Bin Bian, Zeng-Guang Hou, Min Tan, Dongxu Zhang, Xiaoliang Xie, Weiqun Wang:
An RBF-based neuro-adaptive control scheme to drive a lower limb rehabilitation robot. ROBIO 2015: 397-402 - 2014
- [c11]Shao-Hua Mi, Zeng-Guang Hou, Fan Yang, Xiaoliang Xie, Gui-Bin Bian:
A 3D virtual reality simulator for training of minimally invasive surgery. EMBC 2014: 349-352 - [c10]Fan Yang, Zeng-Guang Hou, Shao-Hua Mi, Gui-Bin Bian, Xiaoliang Xie:
Mesh optimization of vessel surface model for computer-aided simulation of percutaneous coronary intervention. EMBC 2014: 6722-6727 - [c9]Shao-Hua Mi, Zeng-Guang Hou, Fan Yang, Xiao-Liang Xie, Gui-Bin Bian:
3D interactive virtual environments for minimally invasive vascular surgery. ICIA 2014: 846-851 - [c8]Xiaoliang Xie, Gui-Bin Bian, Zeng-Guang Hou, Zhen-Qiu Feng, Jian-Long Hao:
Wilcoxon-Norm-Based Robust Extreme Learning Machine. ISNN 2014: 200-209 - [c7]Fan Yang, Zeng-Guang Hou, Shao-Hua Mi, Gui-Bin Bian, Xiaoliang Xie:
Lumen segmentation and visualization of abdominal aorta using geodesic active contours for intravascular surgical simulation. ROBIO 2014: 2356-2361 - 2013
- [c6]Gui-Bin Bian, Xiao-Liang Xie, Zhen-Qiu Feng, Zeng-Guang Hou, Peng Wei, Long Cheng, Min Tan:
An enhanced dual-finger robotic Hand for Catheter manipulating in vascular intervention: A preliminary study. ICIA 2013: 356-361 - [c5]Fan Yang, Zeng-Guang Hou, Shao-Hua Mi, Gui-Bin Bian, Xiaoliang Xie:
3D modeling of coronary arteries based on tubular-enhanced CURVES segmented regions for robotic surgical simulation. ROBIO 2013: 2013-2018 - [c4]Shao-Hua Mi, Zeng-Guang Hou, Fan Yang, Xiaoliang Xie, Gui-Bin Bian:
A multi-body mass-spring model for virtual reality training simulators based on a robotic guide wire operating system. ROBIO 2013: 2031-2036 - 2011
- [j1]Xiaoqing Deng, Haiping Shi, Xiaoliang Xie:
Periodic solutions of second order discrete Hamiltonian systems with potential indefinite in sign. Appl. Math. Comput. 218(1): 148-156 (2011) - [c3]Cheng Ji, Zeng-Guang Hou, Xiaoliang Xie:
Guidewire navigation and delivery system for robot-assisted cardiology interventions. IEEE ICCI*CC 2011: 330-335 - [c2]Cheng Ji, Zeng-Guang Hou, Xiaoliang Xie:
An image-based guidewire navigation method for robot-assisted intravascular interventions. EMBC 2011: 6680-6685 - 2010
- [c1]Feng Zhang, Pengfeng Li, Zeng-Guang Hou, Xiaoliang Xie, Yixiong Chen, Qingling Li, Min Tan:
An Adaptive RBF Neural Network Control Strategy for Lower Limb Rehabilitation Robot. ICIRA (2) 2010: 417-427
Coauthor Index
aka: Zengguang Hou

manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
load content from web.archive.org
Privacy notice: By enabling the option above, your browser will contact the API of web.archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from ,
, and
to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and
to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
Tweets on dblp homepage
Show tweets from on the dblp homepage.
Privacy notice: By enabling the option above, your browser will contact twitter.com and twimg.com to load tweets curated by our Twitter account. At the same time, Twitter will persistently store several cookies with your web browser. While we did signal Twitter to not track our users by setting the "dnt" flag, we do not have any control over how Twitter uses your data. So please proceed with care and consider checking the Twitter privacy policy.
last updated on 2021-02-04 00:07 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint