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Conor J. Walsh

27 accepted papers

2025

Towards Data-Driven Adaptive Exoskeleton Assistance for Post-stroke Gait

IROS 2025

Recent work has shown that exoskeletons con-trolled through data-driven methods can dynamically adapt assistance to various tasks for healthy young adults. However, applying these methods to populations with neuromotor gait deficits, such as post-stroke hemiparesis, is challenging. This is due not o

Cited by 0SourceScholar
2024

Design & Systematic Evaluation of Power Transmission Efficiency of an Ankle Exoskeleton for Walking Post-Stroke

ICRA 2024poster

Community-based locomotor training post-stroke has shown improvements in independent ambulation by increasing dose, intensity, and specificity of walking practice. Robotic ankle exoskeletons hold the potential to facilitate continued rehabilitation at home, but understanding what aspects of the desi…

Cited by 0SourceScholar
2023

Design and characterization of a low mechanical loss, high-resolution wearable strain gauge

ICRA 2023poster

Soft, wearable systems hold promise for a wide variety of new or enhanced applications in the realm of human-computer interaction, physiological monitoring, wear-able robotics, and a host of other human-centric devices. Soft sensor systems have been developed concurrently in order to allow these wea…

Cited by 1SourceScholar
2022

A Soft Exosuit Assisting Hip Abduction for Knee Adduction Moment Reduction During Walking

RA-L 2022

The knee joint experiences significant torques in the frontal plane to keep the body upright during walking. Excessive loading over time can lead to knee osteoarthritis (OA), the progression of which is correlated with external knee adduction moment (KAM). In this paper, we present a wearable soft r

Cited by 19SourceScholar
2021

Kinematics-Based Control of an Inflatable Soft Wearable Robot for Assisting the Shoulder of Industrial Workers

RA-L 2021

Recent developments in soft active wearable robots can be used for upper extremity injury prevention for healthy industrial workers with better comfort than rigid systems, but there has not been control strategy proposals for such use cases. In this letter, we introduce a kinematics-based controller

Cited by 28SourceScholar
2021

Sensing and Control of a Multi-Joint Soft Wearable Robot for Upper-Limb Assistance and Rehabilitation

RA-L 2021

In the field of wearable robotics, there has been increased interest in the creation of soft wearable robots to provide assistance and rehabilitation for those with physical impairments. Compared to traditional robots, these devices have the potential to be fully portable and lightweight, a flexibil

Cited by 57SourceScholar
2020

Automated detection of soleus concentric contraction in variable gait conditions for improved exosuit control

ICRA 2020poster

Exosuits can reduce metabolic demand and improve gait. Controllers explicitly derived from biological mechanisms that reflect the user's joint or muscle dynamics should in theory allow for individualized assistance and enable adaptation to changing gait. With the goal of developing an exosuit contro…

Cited by 12SourceScholar
2020

Inflatable Soft Wearable Robot for Reducing Therapist Fatigue During Upper Extremity Rehabilitation in Severe Stroke

RA-L 2020

Intense therapy is a key factor to improve rehabilitation outcomes. However, when performing rehabilitative stretching with the upper limb of stroke survivors, therapist fatigue is often the limiting factor for the number of repetitions per session. In this work we present an inflatable soft wearabl

Cited by 70SourceScholar
2020

Soft Sensing Shirt for Shoulder Kinematics Estimation

ICRA 2020poster

Soft strain sensors have been explored as an unobtrusive approach for wearable motion tracking. However, accurate tracking of multi degree-of-freedom (DOF) noncyclic joint movements remains a challenge. This paper presents a soft sensing shirt for tracking shoulder kinematics of both cyclic and rand…

Cited by 44SourceScholar
2019

Bayesian Optimization of Soft Exosuits Using a Metabolic Estimator Stopping Process

ICRA 2019poster

Recent human-in-the-loop (HIL) optimization studies using wearable devices have shown an improved average metabolic reduction by optimizing a small number of control parameters during short-duration walking experiments. However, the slow metabolic dynamics, high measurement noise, and experimental t…

Cited by 45SourceScholar
2019

Soft Robotic Glove with Integrated Sensing for Intuitive Grasping Assistance Post Spinal Cord Injury

ICRA 2019poster

This paper presents a fully-integrated soft robotic glove with multi-articular textile actuators, custom soft sensors, and an intuitive state machine intent detection controller. We demonstrate that the pressurized actuators can generate motion and force comparable to natural human fingers through b…

Cited by 71SourceScholar
2018

A Lightweight and Efficient Portable Soft Exosuit for Paretic Ankle Assistance in Walking After Stroke

ICRA 2018poster

Hemiparetic gait after stroke is typically asymmetric and energetically inefficient. A major contributor to walking deficits is impaired paretic ankle function. Impaired paretic ankle plantarflexion (PF) reduces forward propulsion symmetry and impaired paretic ankle dorsiflexion (DF) diminishes grou…

Cited by 161SourceScholar
2018

Autonomous Multi-Joint Soft Exosuit for Assistance with Walking Overground

ICRA 2018poster

Soft exosuits are a new approach for assisting with human locomotion, which applies assistive torques to the wearer through functional apparel. In this paper, we present a new version of autonomous multi-joint soft exosuit for gait assistance, particularly designed for overground walking. The soft e…

Cited by 69SourceScholar
2018

Autonomous and Portable Soft Exosuit for Hip Extension Assistance with Online Walking and Running Detection Algorithm

ICRA 2018poster

We present an autonomous and portable hip-only soft exosuit, for augmenting human walking and running that assists hip extension by delivering peak forces of 300N to the user. Different fixed assistance profiles for walking and running were applied based on an online classification algorithm. The ap…

Cited by 75SourceScholar
2018

Distal Proprioceptive Sensor for Motion Feedback in Endoscope-Based Modular Robotic Systems

RA-L 2018

Modular robotic systems that integrate distally with commercially available endoscopic equipment have the potential to improve the standard-of-care in therapeutic endoscopy by granting clinicians with capabilities not present in commercial tools, such as precision dexterity and feedback sensing. Wit

Cited by 5SourceScholar
2018

Force Control of Textile-Based Soft Wearable Robots for Mechanotherapy

ICRA 2018poster

Soft robotic devices have been utilized in a number of biomedical applications involving human interaction. An emerging opportunity for soft robotic wearable devices is in mechanotherapeutic applications for the recovery and regeneration of soft tissues. Previous studies have implied that judicious…

Cited by 40SourceScholar
2017

Hybrid carbon fiber-textile compliant force sensors for high-load sensing in soft exosuits

IROS 2017poster

Wearable robotic systems which aid or enhance human performance are the subject of substantial ongoing research efforts. Soft exosuits to assist with walking represent one class of system that leverage textiles and apparel to provide a lightweight and nonrestrictive means to interface to the lower e…

Cited by 22SourceScholar
2017

Improved assistive profile tracking of soft exosuits for walking and jogging with off-board actuation

IROS 2017poster

In this paper, we present a design and control approach of a modular off-board actuation system with mono-articular hip exosuit, enabling the instantaneous assistive profile modification of magnitude, shape, and timing. The off-board system consists an actuation unit with two degrees of freedom that…

Cited by 95SourceScholar
2016

Controlling negative and positive power at the ankle with a soft exosuit

ICRA 2016

The soft exosuit is a new approach for applying assistive forces over the wearer's body through load paths configured by the textile architecture. In this paper, we present a body-worn lower-extremity soft exosuit and a new control approach that can independently control the level of assistance that

Cited by 91SourceScholar
2016

IMU-based iterative control for hip extension assistance with a soft exosuit

ICRA 2016

In this paper we describe an IMU-based iterative controller for hip extension assistance where the onset timing of assistance is based on an estimate of the maximum hip flexion angle. The controller was implemented on a mono-articular soft exosuit coupled to a lab-based multi-joint actuation platfor

Cited by 101SourceScholar
2016

Snap-on robotic wrist module for enhanced dexterity in endoscopic surgery

ICRA 2016

Burgeoning transendoscopic procedures, such as endoscopic submucosal dissection (ESD), provide a promising means of treating early-stage gastric neoplasia in a minimally-invasive way. However, the remote locations of these lesions, coupled with their origination in the submucosal layers of the gastr

Cited by 21SourceScholar
2016

Soft pop-up mechanisms for micro surgical tools: Design and characterization of compliant millimeter-scale articulated structures

ICRA 2016

This paper introduces a manufacturing technique which enables the integration of soft materials and soft fluidic micro-actuators in the Pop-up book MEMS paradigm. Such a technique represents a promising approach to the design and fabrication of low cost and scalable articulated mechanisms provided w

Cited by 33SourceScholar
2015

Design and control of a parallel linkage wrist for robotic microsurgery

IROS 2015poster

This paper presents the design and control of a teleoperated robotic system for dexterous micromanipulation tasks at the meso-scale, specifically open microsurgery. Robotic open microsurgery is an unexplored yet potentially a high impact area of surgical robotics. Microsurgical operations, such as m…

Cited by 27SourceScholar
2015

Multi-joint soft exosuit for gait assistance

ICRA 2015poster

Exosuits represent a new approach for applying assistive forces to an individual, using soft textiles to interface to the wearer and transmit forces through specified load paths. In this paper we present a body-worn, multi-joint soft exosuit that assists both ankle plantar flexion and hip flexion th…

Cited by 154SourceScholar
2015

Soft robotic glove for hand rehabilitation and task specific training

ICRA 2015poster

This paper presents advancements in the design of a portable, soft robotic glove for individuals with functional grasp pathologies. The robotic glove leverages soft material actuator technology to safely distribute forces along the length of the finger and provide active flexion and passive extensio…

Cited by 337SourceScholar