Mizutani Kenji
- 准教授
- 学位:博士(理学)
基本情報
所属
- Undergraduate School of Engineering / Department of Medical Engineering
- Graduate School of Engineering / Course of Biomedical Engineering
詳細情報
研究キーワード
- Human-Computer Interaction
論文
Potential of Immersive VR for Non-Pharmacological Interventions: Effects of Deep-Sea Descent Experiences on Stress Reduction
Pedestrian Perception of Danger and Autonomic Nervous System Responses in Vehicle Approach Scenarios Using Virtual Reality
Eff ects of Observation Distance and Impact Sound Frequency Variations on Weight Perceptionin Virtual Reality
The Eff ects of Conversational Avatar Appearance and Voice Volume on Perceived Distance inVirtual Reality
Investigation of Weight Illusion Induced by Multisensory Integration in a Virtual RealityEnvironment
Proposal of a Lateral Emergency Avoidance Simulator for Cooperative Strategy-BasedReinforcement Learning
The Effect of Changes in the Number of People in a VR Environment on Interpersonal Distance
Combination of environmental coefficients and pedestrian behavior toward autonomous vehicles.
Frequency and Kansei evaluation of tones that evoke weight in the impact sound of an object landing with VR.
Effect of Lighting Environment in VR Room on Calculation Task and Sense of Time
Design of Japanese Characters using an Interactive Genetic Algorithm
Identification of oscillatory firing neurons associated with locomotion in the earthworm through synapse imaging.
Recognition of the electromyogram according to the Japanese sequential utterances.
Development of search space establishment-less type high speed genetic algorithm considering mutation rate and using parallel computer
Study on Adaptive Power System Stabilization Control Calculated by Search Space Establishment-less Type Genetic Algorithm Considering Mutation Rate (MSSELGA)
Modulation of motor patterns by sensory feedback during earthworm locomotion
Identification of two types of synaptic activity in the earthworm nervous system during locomotion
Fictive locomotion induced by octopamine in the earthworm
Optical monitoring of the neural;activity evoked;by mechanical stimulation in;he;earthworm nervous system with a fluorescent dye
ResearchMapへ移動します
Contact Us
Inquiries about coverage
Public Affairs Division Public Affairs and Communications Department
Tel. 0463-63-4670(direct dialing)