KnitDema: Robotic Textile as Personalized Edema Mobilization Device
Jin Hee (Heather) Kim, Joan Stilling, Michael O'Dell, Hsin-Liu Cindy Kao
Abstract
Hand edema, defined as swelling of the hands caused by excess fluid accumulation, is a pervasive condition affecting a person’s range of motion and functional ability. However, treatment strategies remain limited to time-consuming manual massage by trained therapists, deterring a widely accessible approach. We present KnitDema, a robotic textile device that allows sequential compression from distal to proximal finger phalanges for mobilizing edema. We machine-knit the device and integrate small-scale actuators to envelop granular body locations such as fingers, catering to the shape of the hand. In addition, the device affords customizable compression levels through the enclosed fiber-like actuators. We characterize compression parameters and simulate the shunting of edema through a mock fluid system. Finally, we conduct a case study to evaluate the feasibility of the device, in which five hand edema patients assess KnitDema. Our study provides insights into the opportunities for robotic textiles to support personalized rehabilitation.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext a51a0633-a8ce-4489-9683-d79a01e7d1c8Cited by top-tier papers4
- SleeveIO: Modular and Reconfigurable Platform for Multimodal Wearable Haptic Feedback InteractionsAli Shtarbanov, Mengjia Zhu, Nicholas Colonnese, Amirhossein Hajiagha MemarUIST 2023 · 25 citations
- MediKnit: Soft Medical Making for Personalized and Clinician-Designed Wearable Devices for Hand EdemaHeather Jin Hee Kim, Narjes Pourjafarian, Arhan Choudhury, Joan Stilling et al.UbiComp 2024 · 5 citations
- Circuit2Yarn: From Planar Circuits to Electronic Yarns for Textile-Based InteractionsZhechen Zhao, Jingyi Liu, Tianhong Catherine Yu, Jiaqing Liu et al.CHI 2026 · 1 citation
- Towards Accessible Mobility Support: User-Centered Design of a Passive, Multi-Functional, Low-Cost Knee ExoskeletonYuyu Lin, Yujia Liu, Emma Kim, Alexandra IonCHI 2026 · 1 citation
Builds on5
- OmniFiber: Integrated Fluidic Fiber Actuators for Weaving Movement based Interactions into the 'Fabric of Everyday Life'Ozgun Kilic Afsar, Ali Shtarbanov, Hila Mor, Ken Nakagaki et al.UIST 2021 · 117 citations
- Digital Fabrication of Pneumatic Actuators with Integrated Sensing by Machine KnittingYiyue Luo, Kui Wu, Andrew Spielberg, Michael Foshey et al.CHI 2022 · 110 citations
- PneuSleeve: In-fabric Multimodal Actuation and Sensing in a Soft, Compact, and Expressive Haptic SleeveMengjia Zhu, Amirhossein H. Memar, Aakar Gupta, Majed Samad et al.CHI 2020 · 109 citations
- Makers in Healthcare: The Role of Occupational Therapists in the Design of DIY Assistive TechnologyKarin Slegers, Kristel Kouwenberg, Tereza Loucova, Ramon DanielsCHI 2020 · 44 citations
- Patch-O: Deformable Woven Patches for On-body ActuationPin-Sung Ku, Kunpeng Huang, Hsin-Liu Cindy KaoCHI 2022 · 37 citations
Related papers
- Personalized Bistable Orthoses for Rehabilitation of Finger JointsYuyu Lin, Dian Zhu, Anoushka Naidu, Kenneth Yu et al.UIST 2025 · 3 citations
- KnitUI: Fabricating Interactive and Sensing Textiles with Machine KnittingYiyue Luo, Kui Wu, Tomás Palacios, Wojciech MatusikCHI 2021 · 101 citations
- Parametric Haptics: Versatile Geometry-based Tactile Feedback DevicesViolet Yinuo Han, Abena Boadi-Agyemang, Yuyu Lin, David Lindlbauer et al.UIST 2023 · 14 citations
- KnitSkin: Machine-Knitted Scaled Skin for LocomotionJin Hee (Heather) Kim, Shreyas Dilip Patil, Sarina Matson, Melissa Conroy et al.CHI 2022 · 27 citations
- SwarmFidget: Exploring Programmable Actuated Fidgeting with Swarm RobotsLawrence H. Kim, Veronika Domova, Yuqi Yao, Parsa RajabiUIST 2023 · 3 citations
