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Robert J. Webster

14 accepted papers

2024

Exploring Modal Switch in Metamaterial-Based Robots

IROS 2024poster

Mechanical metamaterials are microscale patterned structures that are designed to have specific mechanical properties at a macro-scale that are atypical of natural materials. Robotic manipulators composed of these materials can exhibit deformation and motion capabilities that can be customized and e…

Cited by 0SourceScholar
2022

A Metric for Finding Robust Start Positions for Medical Steerable Needle Automation

IROS 2022poster

Steerable needles are medical devices with the ability to follow curvilinear paths to reach targets while circumventing obstacles. In the deployment process, a human operator typically places the steerable needle at its start position on a tissue surface and then hands off control to the automation…

Cited by 5SourceScholar
2021

Design Considerations for a Steerable Needle Robot to Maximize Reachable Lung Volume

ICRA 2021poster

Steerable needles that are able to follow curvilinear trajectories and steer around anatomical obstacles are a promising solution for many interventional procedures. In the lung, these needles can be deployed from the tip of a conventional bronchoscope to reach lung lesions for diagnosis. The reach…

Cited by 8SourceScholar
2018

Kinematic Design Optimization of a Parallel Surgical Robot to Maximize Anatomical Visibility via Motion Planning

ICRA 2018poster

We introduce a method to optimize on a patient-specific basis the kinematic design of the Continuum Reconfigurable Incisionless Surgical Parallel (CRISP) robot, a needle-diameter medical robot based on a parallel structure that is capable of performing minimally invasive procedures. Our objective is…

Cited by 18SourceScholar
2018

Safe Motion Planning for Steerable Needles Using Cost Maps Automatically Extracted from Pulmonary Images

IROS 2018poster

Lung cancer is the deadliest form of cancer, and early diagnosis is critical to favorable survival rates. Definitive diagnosis of lung cancer typically requires needle biopsy. Common lung nodule biopsy approaches either carry significant risk or are incapable of accessing large regions of the lung,…

Cited by 40SourceScholar
2017

Motion planning for continuum reconfigurable incisionless surgical parallel robots

IROS 2017poster

Continuum Reconfigurable Incisionless Surgical Parallel (CRISP) robots consist of multiple needle-diameter flexible instruments that are assembled into a parallel structure inside the human body. With a camera placed at the tip of one of the instruments, the CRISP robot can be used to inspect anatom…

Cited by 20SourceScholar
2016

Making robots mill bone more like human surgeons: Using bone density and anatomic information to mill safely and efficiently

IROS 2016poster

Surgeons and robots typically use different approaches for bone milling. Surgeons adjust their speed and tool incidence angle constantly, which enables them to efficiently mill porous bone. Surgeons also adjust milling parameters such as speed and depth of cut throughout the procedure based on proxi…

Cited by 23SourceScholar
2016

Reconfigurable parallel continuum robots for incisionless surgery

IROS 2016poster

We propose a new class of robotic device for minimally-invasive surgery that lies at the intersection of continuum, parallel, and reconfigurable robotics. This Continuum Reconfigurable Incisionless Surgical Parallel (CRISP) paradigm involves the use of multiple needle-diameter devices inserted throu…

Cited by 40SourceScholar
2015

A motion planning approach to automatic obstacle avoidance during concentric tube robot teleoperation

ICRA 2015poster

Concentric tube robots are thin, tentacle-like devices that can move along curved paths and can potentially enable new, less invasive surgical procedures. Safe and effective operation of this type of robot requires that the robot's shaft avoid sensitive anatomical structures (e.g., critical vessels…

Cited by 61SourceScholar
2015

Designing snap-free concentric tube robots: A local bifurcation approach

ICRA 2015poster

In designing concentric tube robots, it is often desirable to use curvatures that are as high as possible. However, with high curvatures comes the potential for elastic instabilities. This can be addressed by motion planning or by designing the robot to preclude the possibility of instability. In th…

Cited by 55SourceScholar
2015

Motion planning for a three-stage multilumen transoral lung access system

IROS 2015poster

Lung cancer is the leading cause of cancer-related death, and early-stage diagnosis is critical to survival. Biopsy is typically required for a definitive diagnosis, but current low-risk clinical options for lung biopsy cannot access all biopsy sites. We introduce a motion planner for a multilumen t…

Cited by 56SourceScholar
2015

Robotic intracerebral hemorrhage evacuation: An in-scanner approach with concentric tube robots

IROS 2015poster

Several robotic systems have been proposed for removing blood from the brain in patients who have undergone a hemorrhagic stroke. In this paper we explore the use of imagebased feedback to address tissue deformation when aspirating a hemorrhage in a phantom model. This is the first time intraoperati…

Cited by 39SourceScholar
2015

Tendons, concentric tubes, and a bevel tip: Three steerable robots in one transoral lung access system

ICRA 2015poster

Lung cancer is the most deadly form of cancer, and survival depends on early-stage diagnosis and treatment. Transoral access is preferable to traditional between-the-ribs needle insertion because it is less invasive and reduces risk of lung collapse. Yet many sites in the peripheral zones of the lun…

Cited by 57SourceScholar