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Jessica Yin

7 accepted papers

2026

Dexterity from Smart Lenses: Multi-Fingered Robot Manipulation with In-The-Wild Human Demonstrations

ICRA 2026poster

Learning multi-fingered robot policies from humans performing daily tasks in natural environments has long been a grand goal in the robotics community. Achieving this would mark significant progress toward generalizable robot manipulation in human environments, as it would reduce the reliance on lab…

2026

TactAlign: Human-to-Robot Policy Transfer via Tactile Alignment

RSS 2026poster

Human demonstrations collected by wearable devices (e.g., tactile gloves) provide fast and dexterous supervision for policy learning, and are guided by rich, natural tactile feedback. However, a key challenge is how to transfer human-collected tactile signals to robots despite the differences in sen…

Cited by 0SourceScholar
2025

Learning In-Hand Translation Using Tactile Skin with Shear and Normal Force Sensing

ICRA 2025

Recent progress in reinforcement learning (RL) and tactile sensing has significantly advanced dexterous manipulation. However, these methods often utilize simplified tactile signals due to the gap between tactile simulation and the real world. We introduce a sensor model for tactile skin that enable

Cited by 23SourceScholar
2025

Proximity and Visuotactile Point Cloud Fusion for Contact Patches in Extreme Deformation

ICRA 2025

Visuotactile sensors are a popular tactile sensing strategy due to high-fidelity estimates of local object geometry. However, existing algorithms for processing raw sensor inputs to useful intermediate signals such as contact patches struggle in high-deformation regimes. This is due to physical cons

Cited by 3SourceScholar
2025

Steerable Tape-Spring Needle for Autonomous Sharp Turns Through Tissue

ICRA 2025

Steerable needles offer a minimally invasive method to deliver treatment to hard-to-reach tissue regions. We introduce a new class of tape-spring steerable needles capable of sharp turns ranging from 15 to 150 degrees with a turn radius as low as 3 mm, which minimizes surrounding tissue damage. In t

Cited by 1SourceScholar
2022

Electroadhesive Clutches for Programmable Shape Morphing of Soft Actuators

IROS 2022poster

Soft robotic actuators are safe and adaptable devices with inherent compliance, which makes them attractive for manipulating delicate and complex objects. Researchers have integrated stiff materials into soft actuators to increase their force capacity and direct their deformation. However, these emb…

Cited by 5SourceScholar
2018

Liquid Metal-Microelectronics Integration for a Sensorized Soft Robot Skin

IROS 2018poster

Progress in soft robotics depends on the integration of electronics for sensing, power regulation, and signal processing. Commercially available microelectronics satisfy these functions and are small enough to preserve the natural mechanics of the host system. Here, we present a method for incorpora…

Cited by 40SourceScholar