| 2026 | HCI | Kinematic-Based Synthesis of Climbing Motion for Construction Machinery Operators. | Tsubasa Maruyama, Sana Kawaguchi, Masafumi Kuroda, Naoki Tsujimoto, Mitsunori Tada |
| 2025 | SMC | Generating a Synthetic Dataset for Hand Pose Estimation Training. | Callum John Thornton, Mitsunori Tada, Tsubasa Maruyama |
| 2024 | HRI | Work Tempo Instruction Framework for Balancing Human Workload and Productivity in Repetitive Task. | Naoki Shirakura, Natsuki Yamanobe, Tsubasa Maruyama, Yukiyasu Domae, Tetsuya Ogata |
| 2022 | HCI | Feasibility Study for the Physical Load Evaluation of Construction Machine Ingress and Maintenance. | Tsubasa Maruyama, Takeshi Furuya, Mitsunori Tada, Haruki Toda, Ippei Suzuki, Yuka Wada |
| 2022 | ISWC | Knee Osteoarthritis Classification System Examination on Wearable Daily-Use IMU Layout. | Chengshuo Xia, Tsubasa Maruyama, Haruki Toda, Mitsunori Tada, Koji Fujita, Yuta Sugiura |
| 2021 | HCI | Digital Human Simulation for Fall Risk Evaluation When Sitting on Stepladders. | Tsubasa Maruyama, Haruki Toda, Yui Endo, Mitsunori Tada, Hiroyuki Hagiwara, Koji Kitamura |
| 2020 | HCI | Affective Analysis of Visual and Vibro-Tactile Feedback During Floor Cleaning Task Using Heart Rate Variability. | Kodai Ito, Tsubasa Maruyama, Mitsunori Tada, Takuro Higuchi |
| 2020 | HCI | The Effect of Visual and Vibro-Tactile Feedback During Floor Cleaning Task on Motion and Task Performance. | Tsubasa Maruyama, Kodai Ito, Mitsunori Tada, Takuro Higuchi |
| 2019 | HCI | Development and Evaluation of Gamified Multimodal System to Improve Experience Value of Floor Wiping. | Ryota Makabe, Kodai Ito, Tsubasa Maruyama, Natsuki Miyata, Mitsunori Tada, Michiko Ohkura |
| 2018 | SMC | Constraint-Based Real-Time Full-Body Motion-Capture Using Inertial Measurement Units. | Tsubasa Maruyama, Mitsunori Tada, Akira Sawatome, Yui Endo |
| 2015 | HCI | MoCap-Based Adaptive Human-Like Walking Simulation in Laser-Scanned Large-Scale as-Built Environments. | Tsubasa Maruyama, Satoshi Kanai, Hiroaki Date |
| 2013 | HCI | Simulating a Walk of Digital Human Model Directly in Massive 3D Laser-Scanned Point Cloud of Indoor Environments. | Tsubasa Maruyama, Satoshi Kanai, Hiroaki Date |