HIPPO: Persuasive Hand-Grip Estimation from Everyday Interactions
Authors
Hand-grip strength is widely used to estimate muscle strength and it serves as a general indicator of the overall health of a person, particularly in aging adults. Hand-grip strength is typically estimated using dynamometers or specialized force resistant pressure sensors embedded onto objects. Both of these solutions require the user to interact with a dedicated measurement device which unnecessarily restricts the contexts where estimates are acquired. We contribute HIPPO, a novel non-intrusive and opportunistic method for estimating hand-grip strength from everyday interactions with objects. HIPPO re-purposes light sensors available in wearables (e.g., rings or gloves) to capture changes in light reflectivity when people interact with objects. This allows HIPPO to non-intrusively piggyback everyday interactions for health information without affecting the user's everyday routines. We present two prototypes integrating HIPPO, an early smart glove proof-of-concept, and a further optimized solution that uses sensors integrated onto a ring. We validate HIPPO through extensive experiments and compare HIPPO against three baselines, including a clinical dynamometer. Our results show that HIPPO operates robustly across a wide range of everyday objects, and participants. The force strength estimates correlate with estimates produced by pressure-based devices, and can also determine the correct hand grip strength category with up to 86% accuracy. Our findings also suggest that users prefer our approach to existing solutions as HIPPO blends the estimation with everyday interactions. https://dl.acm.org/doi/10.1145/3570344
Research Questions / Practical Problems
Question signals indexed for this paper.
Research Questions
3- How can changes in light reflection be used as a novel approach to measure grip strength?Category: Wearable Health, Activity, and Behavior MonitoringSimilar questionsarrow_forward
- How do everyday object surface materials affect the accuracy of grip strength measurement?Category: Wearable Health, Activity, and Behavior MonitoringSimilar questionsarrow_forward
- How do different wearable form factors (e.g., smart gloves and smart rings) affect grip strength estimation?Category: Wearable Health, Activity, and Behavior MonitoringSimilar questionsarrow_forward
Practical Problems
1- Older adults have difficulty conveniently monitoring grip strength in everyday environments to assess health.Category: Wearable Health, Activity, and Behavior MonitoringSimilar questionsarrow_forward
- 80%
NeuralGait: Assessing Brain Health Using Your Smartphone
UbiComp '23· Fitness Tracking & Physical Activity Monitoring +1
- 60%
Seismo: Blood Pressure Monitoring using Built-in Smartphone Accelerometer and Camera
CHI '18· Smartwatches & Fitness Bands +1
- 60%
Sleep Planning with Awari: Uncovering the Materiality of Body Rhythms using Research through Design
CHI '23· Sleep & Stress Monitoring +1
- 60%
AVEID: Automatic Video System For Measuring Engagement in Dementia
IUI '18· Elderly Care & Dementia Support +1
- 60%
LT-Fall: The Design and Implementation of a Life-threatening Fall Detection and Alarming System
UbiComp '23· Elderly Care & Dementia Support +1
- 60%
EIT-kit: An Electrical Impedance Tomography Toolkit for Health and Motion Sensing
UIST '21· Fitness Tracking & Physical Activity Monitoring +1
Based on Jaccard similarity of research subtopics & professions (≥60%)