helpResearch questionBio-Material Fabrication Tools and Control
How can group robots generate co-speech gestures in user-defined contexts?Direction: Creativity, Design, and Generative Making
Bio-Material Fabrication Tools and Control
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2025
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32 items
helpResearch questionBio-Material Fabrication Tools and Control
What are users' acceptance and psychological perception of group robot co-speech gestures?helpResearch questionBio-Material Fabrication Tools and Control
What advantages do group robot co-speech gestures have compared with traditional virtual assistants or humanoid robots?lightbulbPractical problemBio-Material Fabrication Tools and Control
Users lack natural nonverbal communication when interacting with robots.helpResearch questionBio-Material Fabrication Tools and Control
How can a simplified and intuitive software tool be designed to enable non-expert users to operate biodegradable biofiber manufacturing equipment?UIST '24Exploring a Software Tool for Biofibers Design
helpResearch questionBio-Material Fabrication Tools and Control
What is the effect of different machine parameters (e.g., extrusion rate, movement speed, collection speed) on biofiber properties (e.g., diameter, length)?UIST '24Exploring a Software Tool for Biofibers Design
helpResearch questionBio-Material Fabrication Tools and Control
Can the biofiber manufacturing process be optimized by selecting high-level design goals (e.g., fiber diameter)?UIST '24Exploring a Software Tool for Biofibers Design
lightbulbPractical problemBio-Material Fabrication Tools and Control
Non-expert users struggle to operate biodegradable biofiber manufacturing equipment.UIST '24Exploring a Software Tool for Biofibers Design
helpResearch questionBio-Material Fabrication Tools and Control
How can biomaterials be applied to components of e-textile systems such as sensors, conductive paths, and energy storage devices?helpResearch questionBio-Material Fabrication Tools and Control
How are interactive properties of biomaterials (e.g., dynamic response to environmental change, deformation, optical reaction) manifested in e-textiles?helpResearch questionBio-Material Fabrication Tools and Control
What lifecycle and ecological impact issues arise when existing biomaterials are used in e-textiles?lightbulbPractical problemBio-Material Fabrication Tools and Control
E-textiles impose heavy environmental burdens across manufacturing, use, and disposal, and are difficult to recycle.helpResearch questionBio-Material Fabrication Tools and Control
How can non-expert users be helped to optimize thermal performance when designing 3D-printed devices?helpResearch questionBio-Material Fabrication Tools and Control
How can tools make heat conduction knowledge intuitively accessible while reducing users' dependence on complex engineering knowledge?helpResearch questionBio-Material Fabrication Tools and Control
How can thermal optimization plugins balance improvements in thermal performance with material costs?lightbulbPractical problemBio-Material Fabrication Tools and Control
Thermal performance optimization for 3D-printed devices is difficult, and users often experience device degradation due to heat buildup.helpResearch questionBio-Material Fabrication Tools and Control
How can electronic components be embedded during the natural growth of bacterial cellulose (a growable material) to enable interactive functions?helpResearch questionBio-Material Fabrication Tools and Control
How do different lifecycle stages of bacterial cellulose support embedding and functional implementation of sensors and output components?helpResearch questionBio-Material Fabrication Tools and Control
What fabrication techniques can make devices using growable materials both sustainable and suitable for DIY environments?lightbulbPractical problemBio-Material Fabrication Tools and Control
Existing fabrication methods struggle to integrate electronic components with growable materials while facing corrosion and other issues.helpResearch questionBio-Material Fabrication Tools and Control
How do designers' sensory experiences with living biomaterials (e.g., kombucha Scoby) influence design decisions?helpResearch questionBio-Material Fabrication Tools and Control
How can sensory engagement probes promote deeper interaction between people and biomaterials?helpResearch questionBio-Material Fabrication Tools and Control
How can the role of biomaterials be redefined in design from material to partner in the design process?lightbulbPractical problemBio-Material Fabrication Tools and Control
Designers struggle to build deep sensory-based relationships when interacting with biomaterials.helpResearch questionBio-Material Fabrication Tools and Control
How can controlling surface wettability organize and stabilize bubble formation into specific patterns in carbonated liquids?helpResearch questionBio-Material Fabrication Tools and Control
How can bubble stability and lifespan be extended without using electronic devices?helpResearch questionBio-Material Fabrication Tools and Control
How can bubbles be used as a design material for visualization and interaction design?lightbulbPractical problemBio-Material Fabrication Tools and Control
Users cannot form stable, visualizable bubble patterns on everyday container surfaces.helpResearch questionBio-Material Fabrication Tools and Control
How can a bio-material-based DIY method be developed so lay users can easily make interactive bioplastics for soft electronics prototyping?helpResearch questionBio-Material Fabrication Tools and Control
How can bioplastic materials balance conductivity, flexibility, and sustainability for soft electronics prototype design?helpResearch questionBio-Material Fabrication Tools and Control
Can biodegradable, biocompatible interactive bioplastics support design and fabrication of diverse electronic sensors and circuits?lightbulbPractical problemBio-Material Fabrication Tools and Control
Designers struggle to use eco-friendly conductive materials to prototype soft electronic devices.Related papers
CHI 2025
BioTube: Designing and Fabricating Biodegradable Hollow Tubular Devices Through Progressive Crosslinking Alginate
Yuecheng Peng, Mako Miyatake, Tyler L Peng
CHI 2024
Towards More Sustainable Interactive Textiles: A Literature Review on The Use of Biomaterials for eTextiles.
Sofía Guridi, Matteo Iannacchero, Emmi Pouta
UIST 2023
ThermalRouter: Enabling Users to Design Thermally-Sound Devices
Alex Mazursky, Borui Li, Shan-Yuan Teng
UIST 2023
Biohybrid Devices: Prototyping Interactive Devices with Growable Materials
Madalina Nicolae, Vivien Roussel, Marion Koelle
CHI 2023
Felt Experiences with Kombucha Scoby: Exploring First-person Perspectives with Living Matter
Netta Ofer, Mirela Alistar
CHI 2023
BubbleTex: Designing Heterogenous Wettable Areas for Carbonation Bubble Patterns on Surfaces
Harpreet Sareen, Yibo Fu, Nour Boulahcen
UIST 2022
Prototyping Soft Devices with Interactive Bioplastics
Marion Koelle, Madalina Luciana Nicolae, Aditya Shekhar Nittala
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