poimo: Portable and Inflatable Mobility Devices Customizable for Personal Physical Characteristics
暂无分享,去创建一个
Yoshihiro Kawahara | Yasuaki Kakehi | Ryuma Niiyama | Koya Narumi | Hiroki Sato | Young ah Seong | Ryosuke Yamamura | Kazzmasa Tsujimura
[1] Katsu Yamane,et al. 3D printed soft skin for safe human-robot interaction , 2015, 2015 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[2] Christopher G. Atkeson,et al. Physical human interaction for an inflatable manipulator , 2011, 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[3] L. Andreone,et al. Driver-vehicle interfaces and interaction: where are they going? , 2009 .
[4] Gen Endo,et al. Development of Giacometti Arm With Balloon Body , 2017, IEEE Robotics and Automation Letters.
[5] Jessica K. Hodgins,et al. A hybrid hydrostatic transmission and human-safe haptic telepresence robot , 2016, 2016 IEEE International Conference on Robotics and Automation (ICRA).
[6] Joseph A. Paradiso,et al. FreeD: a freehand digital sculpting tool , 2013, CHI.
[7] Hiroshi Ishii,et al. milliMorph -- Fluid-Driven Thin Film Shape-Change Materials for Interaction Design , 2019, UIST.
[8] Kenji Suzuki,et al. Wearable inflatable robot for supporting postural transitions in infants between sitting and lying , 2015, 2015 IEEE International Conference on Robotics and Biomimetics (ROBIO).
[9] Albrecht Schmidt,et al. Design space for driver-based automotive user interfaces , 2009, AutomotiveUI.
[10] Eitan Grinspun,et al. Designing inflatable structures , 2014, ACM Trans. Graph..
[11] Wendy Ju,et al. Ghost driver: a platform for investigating interactions between pedestrians and driverless vehicles , 2015, AutomotiveUI.
[12] Saiganesh Swaminathan,et al. Input, Output and Construction Methods for Custom Fabrication of Room-Scale Deployable Pneumatic Structures , 2019, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[13] Xu Sun,et al. Sticky Actuator: Free-Form Planar Actuators for Animated Objects , 2015, TEI.
[14] Chris Harrison,et al. 3D Printing Pneumatic Device Controls with Variable Activation Force Capabilities , 2015, CHI.
[15] Gierad Laput,et al. ElectroDermis: Fully Untethered, Stretchable, and Highly-Customizable Electronic Bandages , 2019, CHI.
[16] Hiroya Tanaka,et al. Morphing Design for Socially Interactive Autonomous Car by Multi-Material 3D-Printing , 2019, CHI Extended Abstracts.
[17] Yasuaki Kakehi,et al. LiftTiles: Constructive Building Blocks for Prototyping Room-scale Shape-changing Interfaces , 2020, TEI.
[18] Takeo Igarashi,et al. Adjunct Proceedings of the 10th International ACM Conference on Automotive User Interfaces and Interactive Vehicular Applications , 2018 .
[19] Yasuaki Kakehi,et al. Reflatables: A Tube-based Reconfigurable Fabrication of Inflatable 3D Objects , 2020, CHI Extended Abstracts.
[20] Hiroshi Ishii,et al. PneUI: pneumatically actuated soft composite materials for shape changing interfaces , 2013, UIST.
[21] Katsuhiro Hata,et al. Soft yet Strong Inflatable Structures for a Foldable and Portable Mobility , 2020, CHI Extended Abstracts.
[22] Yoshihiro Kawahara,et al. Liquid Pouch Motors: Printable Planar Actuators Driven by Liquid-to-Gas Phase Change for Shape-Changing Interfaces , 2020, IEEE Robotics and Automation Letters.
[23] Todd Litman,et al. Managing Personal Mobility Devices (PMDs) On Nonmotorized Facilities , 2006 .
[24] Xiang 'Anthony' Chen,et al. Encore: 3D printed augmentation of everyday objects with printed-over, affixed and interlocked attachments , 2015, SIGGRAPH Posters.
[25] Mirko Gelsomini,et al. Puffy, a Friendly Inflatable Social Robot , 2018, CHI Extended Abstracts.
[26] Hiroshi Ishii,et al. aeroMorph - Heat-sealing Inflatable Shape-change Materials for Interaction Design , 2016, UIST.
[27] Hiroshi Ishii,et al. Printflatables: Printing Human-Scale, Functional and Dynamic Inflatable Objects , 2017, CHI.
[28] Wendy Ju,et al. Design Techniques for Exploring Automotive Interaction in the Drive towards Automation , 2017, Conference on Designing Interactive Systems.
[29] Yoshihiro Kawahara,et al. AccordionFab: Fabricating Inflatable 3D Objects by Laser Cutting and Welding Multi-Layered Sheets , 2018, UIST.
[30] Chris Harrison,et al. Providing dynamically changeable physical buttons on a visual display , 2009, CHI.
[31] Jun Rekimoto,et al. Bubble: Wearable Assistive Grasping Augmentation Based on Soft Inflatables , 2019, CHI Extended Abstracts.