Nhat Hoang-Xuan

dblp:316/4377 · DBLP profile ↗
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8ranked-venue papers
3as first author
8since 2021 · last 2025
0000-0001-8759-0354ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Graphics, computer vision, multimedia, augmented reality and games · 6 · 2 first-author · 6 since 2021Artificial intelligence and machine learning · 2 · 1 first-author · 2 since 2021
YearPublicationVenuePosition
2025 NeurFlow: Interpreting Neural Networks through Neuron Groups and Functional Interactions
abstract
Understanding the inner workings of neural networks is essential for enhancing model performance and interpretability. Current research predominantly focuses on examining the connection between individual neurons and the model's final predictions, which suffers from challenges in interpreting the internal workings of the model, particularly when neurons encode multiple unrelated features. In this paper, we propose a novel framework that transitions the focus from analyzing individual neurons to investigating groups of neurons, shifting the emphasis from neuron-output relationships to the functional interactions between neurons. Our automated framework, NeurFlow, first identifies core neurons and clusters them into groups based on shared functional relationships, enabling a more coherent and interpretable view of the network’s internal processes. This approach facilitates the construction of a hierarchical circuit representing neuron interactions across layers, thus improving interpretability while reducing computational costs. Our extensive empirical studies validate the fidelity of our proposed NeurFlow. Additionally, we showcase its utility in practical applications such as image debugging and automatic concept labeling, thereby highlighting its potential to advance the field of neural network explainability.
Tue Minh Cao, Nhat Hoang-Xuan, Hieu H. Pham 0001, Phi-Le Nguyen, My T. Thai
ICLR2
2025 Advancing Interpretability of CLIP Representations with Concept Surrogate Model
abstract
Contrastive Language-Image Pre-training (CLIP) generates versatile multimodal embeddings for diverse applications, yet the specific information captured within these representations is not fully understood. Current explainability techniques often target specific tasks, overlooking the rich, general semantics inherent in the representations. Our objective is to reveal the concepts encoded in CLIP embeddings by learning a surrogate representation, which is expressed as a linear combination of human-understandable concepts evident in the image. Our method, which we term EXPLAIN-R, introduces a novel approach that leverages CLIP's learned instance-instance similarity to train a surrogate model that faithfully mimics CLIP's behavior. From the trained surrogate, we derive concept scores for each input image; these scores quantify the contribution of each concept and act as the explanation for the representation. Quantitative evaluations on multiple datasets demonstrate our method's superior faithfulness over the baseline. Moreover, a user study confirms that our explanations are perceived as more relevant, complete, and useful. Our work provides a novel approach for interpreting CLIP image representations, enhancing the user interpretability of representations and fostering more trustworthy AI systems.
Nhat Hoang-Xuan, Xiyuan Wei, Tianbao Yang, My T. Thai
NeurIPS1
2023 V-FIRST 2.0: Video Event Retrieval with Flexible Textual-Visual Intermediary for VBS 2023
Nhat Hoang-Xuan, E-Ro Nguyen, Thang-Long Nguyen-Ho, Minh-Khoi Pham, Hoang-Phuc Trang-Trung, Van-Tu Ninh, Tu-Khiem Le, Cathal Gurrin, Minh-Triet Tran
MMM (1)1
2023 TextANIMAR: Text-based 3D animal fine-grained retrieval
Trung-Nghia Le, Tam V. Nguyen 0002, Minh-Quan Le, Viet-Tham Huynh, Trong-Le Do, Khanh-Duy Le, Mai-Khiem Tran, Nhat Hoang-Xuan, Thang-Long Nguyen-Ho, Vinh-Tiep Nguyen, Tuong-Nghiem Diep, Khanh-Duy Ho, Xuan-Hieu Nguyen, Thien-Phuc Tran, Tuan-Anh Yang, Kim-Phat Tran, Nhu-Vinh Hoang, Minh-Quang Nguyen, E-Ro Nguyen, Minh-Khoi Nguyen-Nhat, Tuan-An To, Trung-Truc Huynh-Le, Nham-Tan Nguyen, Hoang-Chau Luong, Truong Hoai Phong, Nhat-Quynh Le-Pham, Huu-Phuc Pham, Trong-Vu Hoang, Quang-Binh Nguyen, Hai-Dang Nguyen, Akihiro Sugimoto, Minh-Triet Tran
Comput. Graph.9
2023 SketchANIMAR: Sketch-based 3D animal fine-grained retrieval
Trung-Nghia Le, Tam V. Nguyen 0002, Minh-Quan Le, Viet-Tham Huynh, Trong-Le Do, Khanh-Duy Le, Mai-Khiem Tran, Nhat Hoang-Xuan, Thang-Long Nguyen-Ho, Vinh-Tiep Nguyen, Nhat-Quynh Le-Pham, Huu-Phuc Pham, Trong-Vu Hoang, Quang-Binh Nguyen, Trong-Hieu Nguyen Mau, Tuan-Luc Huynh, Thanh-Danh Le, Ngoc-Linh Nguyen-Ha, Tuong-Vy Truong-Thuy, Truong Hoai Phong, Tuong-Nghiem Diep, Khanh-Duy Ho, Xuan-Hieu Nguyen, Thien-Phuc Tran, Tuan-Anh Yang, Kim-Phat Tran, Nhu-Vinh Hoang, Minh-Quang Nguyen, Hoai-Danh Vo, Minh-Hoa Doan, Hai-Dang Nguyen, Akihiro Sugimoto, Minh-Triet Tran
Comput. Graph.9
2023 First-flexible interactive retrieval system for visual lifelog exploration
Nhat Hoang-Xuan, Hoang-Phuc Trang-Trung, Mai-Khiem Tran, Thanh-Cong Le, E-Ro Nguyen, Van-Tu Ninh, Tu-Khiem Le, Minh-Triet Tran
Multim. Tools Appl.1
2022 V-FIRST: A Flexible Interactive Retrieval System for Video at VBS 2022
Minh-Triet Tran, Nhat Hoang-Xuan, Hoang-Phuc Trang-Trung, Thanh-Cong Le, Mai-Khiem Tran, Minh-Quan Le, Tu-Khiem Le, Van-Tu Ninh, Cathal Gurrin
MMM (2)2
2022 SHREC'22 track: Sketch-based 3D shape retrieval in the wild
Jie Qin 0004, Shuaihang Yuan, Jiaxin Chen 0002, Boulbaba Ben Amor, Yi Fang 0006, Nhat Hoang-Xuan, Chi-Bien Chu, Khoi-Nguyen Nguyen-Ngoc, Thien-Tri Cao, Nhat-Khang Ngô, Tuan-Luc Huynh, Hai-Dang Nguyen, Minh-Triet Tran, Haoyang Luo, Jianning Wang, Zheng Zhang 0006, Zihao Xin, Yang Wang 0023, Haiqin Chen, Qunying Zhou
Comput. Graph.6