| 2019 | BIBE | Psychophysiological Effects of Comfortable Walking Exercise on a Working Memory Task. | Hiroto Tamura, Hiroshi Hagiwara, Koji Kashihara, Hiroyuki Shinoda |
| 2018 | BIBE | Using NIRS to Detect Brain oxyHb Changes During Short-Term Memory Tasks. | Takuya Sasabe, Hiroshi Hagiwara |
| 2018 | BIBE | Psycho-Physiological Changes Depend on Differences in the Presentation Ratio of Non-target Stimuli. | Hiroaki Yoshikawa, Hiroshi Hagiwara |
| 2017 | BIBE | Effects of Open Versus Closed Eyes on Physiological Conditions During a Working Memory Task. | Kazuya Onishi, Hiroshi Hagiwara |
| 2016 | BIBE | Effects of Individualized Respiratory Cycle-Based Vibration Stimuli on Nervous System after Mental or Physical Load. | Naoto Iwamoto, Hiroshi Hagiwara |
| 2016 | BIBE | Workload Induces Changes in Hemodynamics, Respiratory Rate and Heart Rate Variability. | Taishi Nagasawa, Hiroshi Hagiwara |
| 2016 | BIBE | Psycho-Physiological Response in 3D Multiple Object Tracking. | Shuichi Satake, Hiroshi Hagiwara |
| 2015 | BIBE | Influence of monotonous work and body sensory vibration stimulus on physiological responses. | Kento Konishi, Hiroshi Hagiwara |
| 2015 | HCI | Induction of a Relaxed State Using a Vibration Stimulus Based on the Respiratory Cycle. | Naoto Iwamoto, Hiroshi Hagiwara |
| 2013 | BIBE | Influence on skin temperature and blood flow of thermal and massage stimuli. | H. Inoue, Hiroshi Hagiwara |
| 1986 | ISCA | A Computer with Low-Level Parallelism QA-2: Its Applications to 3-D Graphics and Prolog/Lisp Machines. | Shinji Tomita, Kiyoshi Shibayama, Toshiyuki Nakata, Shinji Yuasa, Hiroshi Hagiwara |
| 1984 | SIGGRAPH | A parallel processor system for three-dimensional color graphics. | Haruo Niimi, Yoshiro Imai, Masayoshi Murakami, Shinji Tomita, Hiroshi Hagiwara |
| 1983 | ISCA | A User-Microprogrammable, Local Host Computer With Low-Level Parallelism | Shinji Tomita, Kiyoshi Shibayama, Toshiaki Kitamura, Toshiyuki Nakata, Hiroshi Hagiwara |
| 1980 | MICRO | Performance evaluation and improvement of a dynamically microprogrammable computer with low-level parallelism. | Shinji Tomita, Kiyoshi Shibayama, Toshiaki Kitamura, Hiroshi Hagiwara |