EDBT 2026 Demo / reviewers in the wild / expert
Zhixiang Lu
dblp:221/5063
· DBLP profile ↗
13ranked-venue papers
5as first author
13since 2021 · last 2026
—ORCID · conflict
Domains — the database's venue-derived domains; a paper can count in several
Applied, interdisciplinary, general and emerging computing · 6 · 3 first-author · 6 since 2021Databases, data management, data science and information retrieval · 5 · 2 first-author · 5 since 2021Graphics, computer vision, multimedia, augmented reality and games · 4 · 1 first-author · 4 since 2021Artificial intelligence and machine learning · 3 · 2 first-author · 3 since 2021Computer networks · 1 · 1 first-author · 1 since 2021Security and privacy · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | DeepGB-TB: A Risk-Balanced Cross-Attention Gradient-Boosted Convolutional Network for Rapid, Interpretable Tuberculosis ScreeningabstractLarge-scale tuberculosis (TB) screening is limited by the high cost and operational complexity of traditional diagnostics, creating a need for artificial-intelligence solutions. We propose DeepGB-TB, a non-invasive system that instantly assigns TB risk scores using only cough audio and basic demographic data. The model couples a lightweight one-dimensional convolutional neural network for audio processing with a gradient-boosted decision tree for tabular features. Its principal innovation is a Cross-Modal Bidirectional Cross-Attention module (CM-BCA) that iteratively exchanges salient cues between modalities, emulating the way clinicians integrate symptoms and risk factors. To meet the clinical priority of minimizing missed cases, we design a Tuberculosis Risk-Balanced Loss (TRBL) that places stronger penalties on false-negative predictions, thereby reducing high-risk misclassifications. DeepGB-TB is evaluated on a diverse dataset of 1,105 patients collected across seven countries, achieving an AUROC of 0.903 and an F1-score of 0.851, representing a new state of the art. Its computational efficiency enables real-time, offline inference directly on common mobile devices, making it ideal for low-resource settings. Importantly, the system produces clinically validated explanations that promote trust and adoption by frontline health workers. By coupling AI innovation with public-health requirements for speed, affordability, and reliability, DeepGB-TB offers a tool for advancing global TB control. Zhixiang Lu, Yulong Li 0002, Zhengyong Jiang, Mian Zhou, Jionglong Su |
AAAI | 1 |
| 2026 | Towards Deployable VCFI: Architectural Analysis and Cache-Optimized Verification
Pinghai Yuan, Zhixiang Lu, Fulong Chen 0002, Zhenjiang Qian |
EuroS&P | 3 |
| 2026 | Semantic-Topological Graph Reasoning for Language-Guided Pulmonary Screening
Chenyu Xue 0002, Mian Zhou, Jionglong Su, Zhixiang Lu |
ICIC (27) | 5 |
| 2026 | CNText2Sign and CNSign: Unified Chinese Sign Language Datasets for Bidirectional AccessibilityabstractSign language is the primary communication mode for 72 million hearing-impaired individuals worldwide, necessitating effective bidirectional Sign Language Production and Sign Language Translation systems. However, functional bidirectional systems require a unified linguistic environment, hindered by the lack of suitable unified datasets, particularly those providing the necessary pose information for accurate Sign Language Production (SLP) evaluation. Concurrently, current SLP evaluation methods like back-translation ignore pose accuracy, and high-quality coordinated generation remains challenging. To create this crucial environment and overcome these challenges, we introduce CNText2Sign and CNSign, which together constitute the first unified dataset aimed at supporting bidirectional accessibility systems for Chinese sign language; CNText2Sign provides 15,000 natural language-to-sign mappings and standardized skeletal keypoints for 8,643 vocabulary items supporting pose assessment. Building upon this foundation, we propose the AuraLLM model, which leverages a decoupled architecture with CNText2Sign's pose data for novel direct gesture accuracy assessment. The model employs retrieval augmentation and Cascading Vocabulary Resolution to handle semantic mapping and out-of-vocabulary words, and achieves all-scenario production with controllable coordination of gestures and facial expressions via pose-conditioned video synthesis. Concurrently, our Sign Language Translation model SignMST-C employs targeted self-supervised pretraining for dynamic feature capture, achieving new SOTA results on PHOENIX2014-T with BLEU-4 scores up to 32.08. AuraLLM establishes a strong performance baseline on CNText2Sign with a BLEU-4 score of 50.41 under direct evaluation. Yulong Li 0002, Zhixiang Lu, Haochen Xue, Jianghao Wu 0001, Mian Zhou, Kang Dang, Yifang Wang 0006, Muhammad Imran Razzak, Jionglong Su |
KDD (1) | 5 |
| 2026 | EcoThink: A Green Adaptive Inference Framework for Sustainable and Accessible AgentsabstractAs the Web transitions from static retrieval to generative interaction, the escalating environmental footprint of Large Language Models (LLMs) presents a critical sustainability challenge. Current paradigms indiscriminately apply computation-intensive strategies like Chain-of-Thought (CoT) to billions of daily queries, causing LLM overthinking, a redundancy that amplifies carbon emissions and operational barriers. This inefficiency directly undermines UN Sustainable Development Goals 13 (Climate Action) and 10 (Reduced Inequalities) by hindering equitable AI access in resource-constrained regions. To address this, we introduce EcoThink, an energy-aware adaptive inference framework designed to reconcile high-performance AI intelligence with environmental responsibility. EcoThink employs a lightweight, distillation-based router to dynamically assess query complexity, skipping unnecessary reasoning for factoid retrieval while reserving deep computation for complex logic. Extensive evaluations across 9 diverse benchmarks demonstrate that EcoThink reduces inference energy by 40.4% on average (up to 81.9% for web knowledge retrieval) without statistically significant performance loss. By mitigating algorithmic waste, EcoThink offers a scalable path toward a sustainable, inclusive, and energy-efficient generative AI Agent. Linxiao Li 0001, Zhixiang Lu |
WWW | 2 |
| 2026 | Rhythm of Opinion: Interpretable Hawkes-Graph Networks for Hierarchical Opinion Propagation
Yulong Li 0002, Zhixiang Lu, Peixin Guo, Simin Lai, Haochen Xue, Xiwei Liu, Yichen Li 0006, Zhaodong Wu, Mian Zhou, Muhammad Imran Razzak, Qingxia Li, Jionglong Su |
WWW | 2 |
| 2026 | SAGE: Sustainable Agent-Guided Expert-tuning for Culturally Attuned Translation in Low-Resource Southeast Asia
Zhixiang Lu, Chong Zhang 0006, Yulong Li 0002, Angelos Stefanidis, Anh Nguyen 0003, Muhammad Imran Razzak, Jionglong Su, Zhengyong Jiang |
WWW | 1 |
| 2025 | Decoding the Flow: CauseMotion for Emotional Causality Analysis in Long-form ConversationsabstractLong-sequence causal reasoning seeks to uncover causal relationships within extended time series data but is hindered by complex dependencies and the challenges of validating causal links. To address the limitations of large-scale language models (e.g., GPT-4) in capturing intricate emotional causality within extended dialogues, we propose CauseMotion, an innovative framework combining emotional causal dynamic mapping with multimodal feature fusion. CauseMotion implements dynamic mapping through a sliding window mechanism and fusion strategies, while integrating audio features—vocal emotion, intensity, and speech rate—to enrich semantic representations. This design enables efficient retrieval of contextually relevant information and precise inference of emotional causal chains spanning multiple conversational turns. We constructed the first benchmark dataset for long-sequence emotional causal reasoning, featuring dialogues with over 70 turns. Experimental results show that CauseMotion significantly enhances emotional understanding and causal inference capabilities in large language models. A GLM-4 integrated with CauseMotion achieves an 8.7% improvement in causal accuracy over the original model and surpasses GPT-4o by 1.2%. On the DiaASQ dataset, CauseMotion-GLM-4 achieves state-of-the-art results in accuracy, F1 score, and causal reasoning accuracy. Yulong Li 0002, Zichen Yu, Zhixiang Lu, Haochen Xue, Zhaodong Wu, Kang Dang, Muhammad Imran Razzak, Jionglong Su |
AVSS | 6 |
| 2025 | HierRisk: A Hierarchical Framework for Suicide Risk Prediction on Social Media
Zhixiang Lu, Jionglong Su |
IEEE Big Data | 1 |
| 2025 | Advancing Low-Resource Machine Translation: A Unified Data Selection and Scoring Optimization Framework
Zhixiang Lu, Peichen Ji, Yulong Li 0002, Ding Sun, Chenyu Xue 0002, Haochen Xue, Mian Zhou, Angelos Stefanidis, Jionglong Su, Zhengyong Jiang |
ICIC (24) | 1 |
| 2025 | CDHQA: A Quality Assessment Database for Conversational Digital Human
Yingjie Zhou 0003, Yinghan Xia, Zhixiang Lu, Farong Wen, Yu Wang 0002, Yu Zhou 0016, Xiaohong Liu 0001, Xiongkuo Min, Jiezhang Cao, Guangtao Zhai |
ICIG (3) | 5 |
| 2025 | Genesis: A Large-Scale Benchmark for Multimodal Large Language Model in Emotional Causality Analysis
Yulong Li 0002, Zhixiang Lu, Jianghao Wu 0001, Haochen Xue, Mian Zhou, Jionglong Su, Muhammad Imran Razzak |
ACM Multimedia | 5 |
| 2025 | Research on anti-interference performance of 5G multi band communication antenna supported by NFC technology
Zhixiang Lu |
Wirel. Networks | 1 |