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Mehran Armand

22 accepted papers

2025

An Image-Guided Robotic System for Transcranial Magnetic Stimulation: System Development and Experimental Evaluation

RA-L 2025

Transcranial magnetic stimulation is a noninvasive medical procedure that can modulate brain activity, and it is widely used in neuroscience, neurology research, and clinical practice. Compared to manual operators, robots may improve the outcome due to their superior accuracy and repeatability. Howe

Cited by 1SourceScholar
2025

Look Before You Leap: Using Serialized State Machine for Language Conditioned Robotic Manipulation

IROS 2025

Imitation learning frameworks for robotic manipulation have drawn attention in the recent development of language model grounded robotics. However, the success of the frameworks largely depends on the coverage of the demonstration cases: When the demonstration set does not include examples of how to

Cited by 3SourceScholar
2025

dARt Vinci: Egocentric Data Collection for Surgical Robot Learning at Scale

IROS 2025

Data scarcity has long been an issue in the robot learning community. Particularly, in safety-critical domains like surgical applications, obtaining high-quality data can be especially difficult. It poses challenges to researchers seeking to exploit recent advancements in reinforcement learning and

Cited by 4SourceScholar
2024

A Geometry-based Approach for Support-free Additive Manufacturing of Structures with Large Overhang Angles and Closed Features

IROS 2024poster

Architected materials derive performance characteristics from material properties and internal geometry. These materials are increasingly prevalent across a wide variety of domains. Many intricate feature geometries associated with architected materials can be explored using additive manufacturing (…

Cited by 0SourceScholar
2024

On the Fly Robotic-Assisted Medical Instrument Planning and Execution Using Mixed Reality

ICRA 2024poster

Robotic-assisted medical systems (RAMS) have gained significant attention for their advantages in alleviating surgeons’ fatigue and improving patients’ outcomes. These systems comprise a range of human-computer interactions, including medical scene monitoring, anatomical target planning, and robot m…

Cited by 0SourceScholar
2024

Realtime Robust Shape Estimation of Deformable Linear Object

ICRA 2024poster

Realtime shape estimation of continuum objects and manipulators is essential for developing accurate planning and control paradigms. The existing methods that create dense point clouds from camera images, and/or use distinguishable markers on a deformable body have limitations in realtime tracking o…

Cited by 1SourceScholar
2024

Uncertainty-Aware Shape Estimation of a Surgical Continuum Manipulator in Constrained Environments using Fiber Bragg Grating Sensors

ICRA 2024poster

Continuum Dexterous Manipulators (CDMs) are well-suited tools for minimally invasive surgery due to their inherent dexterity and reachability. Nonetheless, their flexible structure and non-linear curvature pose significant challenges for shape-based feedback control. The use of Fiber Bragg Grating (…

Cited by 3SourceScholar
2021

A Robotic System for Implant Modification in Single-stage Cranioplasty

ICRA 2021poster

Craniomaxillofacial reconstruction with patientspecific customized craniofacial implants (CCIs) is most commonly performed for large-sized skeletal defects. Because the exact size of skull resection may not be known prior to the surgery, in single-stage cranioplasty, an oversized CCI is prefabricate…

Cited by 3SourceScholar
2021

An Active Steering Hand-Held Robotic System for Minimally Invasive Orthopaedic Surgery Using a Continuum Manipulator

RA-L 2021

This paper presents the development and experimental evaluation of an active steering hand-held robotic system for milling and curved drilling in minimally invasive orthopaedic interventions. The system comprises a cable-driven continuum dexterous manipulator (CDM), an actuation unit with a handpiec

Cited by 35SourceScholar
2020

High-Resolution Optical Fiber Shape Sensing of Continuum Robots: A Comparative Study

ICRA 2020poster

Flexible medical instruments, such as Continuum Dexterous Manipulators (CDM), constitute an important class of tools for minimally invasive surgery. Accurate CDM shape reconstruction during surgery is of great importance, yet a challenging task. Fiber Bragg grating (FBG) sensors have demonstrated gr…

Cited by 46SourceScholar
2020

Reflective-AR Display: An Interaction Methodology for Virtual-to-Real Alignment in Medical Robotics

RA-L 2020

Robot-assisted minimally invasive surgery has shown to improve patient outcomes, as well as reduce complications and recovery time for several clinical applications. While increasingly configurable robotic arms can maximize reach and avoid collisions in cluttered environments, positioning them appro

Cited by 8SourceScholar
2019

Autonomous Data-Driven Manipulation of Unknown Anisotropic Deformable Tissues Using Unmodelled Continuum Manipulators

RA-L 2019

We present an autonomous manipulation approach for tissues with anisotropic deformation behavior using a continuum manipulator. The key feature of our vision-based study is an online learning and estimation method, which makes its implementation independent of any prior knowledge about the deformati

Cited by 50SourceScholar
2018

A Robust Data-Driven Approach for Online Learning and Manipulation of Unmodeled 3-D Heterogeneous Compliant Objects

RA-L 2018

We present a generic data-driven method to address the problem of manipulating a three-dimensional (3-D) compliant object (CO) with heterogeneous physical properties in the presence of unknown disturbances. In this study, we do not assume a prior knowledge about the deformation behavior of the CO an

Cited by 50SourceScholar
2018

FBG-Based Control of a Continuum Manipulator Interacting with Obstacles

IROS 2018poster

Tracking and controlling the shape of continuum dexterous manipulators (CDM) in constraint environments is a challenging task. The imposed constraints and interaction with unknown obstacles may conform the CDM's shape and therefore demands for shape sensing methods which do not rely on direct line o…

Cited by 25SourceScholar
2017

A Curved-Drilling Approach in Core Decompression of the Femoral Head Osteonecrosis Using a Continuum Manipulator

RA-L 2017

In conventional core decompression of osteonecrosis, surgeons cannot successfully reach the whole area of the femoral head due to rigidity of the instruments currently used. To address this issue, we present design and fabrication of a novel steerable drill using a continuum dexterous manipulator (C

Cited by 72SourceScholar
2017

Development and Experimental Evaluation of Concurrent Control of a Robotic Arm and Continuum Manipulator for Osteolytic Lesion Treatment

RA-L 2017

This paper presents the development and evaluation of concurrent control of a robotic system for less-invasive treatment of osteolytic lesions behind an acetabular implant. This system implements safety constraints including a remote center of motion (RCM), virtual walls, and joint limits while oper

Cited by 43SourceScholar
2016

Design and characterization of a debriding tool in robot-assisted treatment of osteolysis

ICRA 2016

This paper focuses on the design and quantitative characterization of a debriding tool integrated with a robotic system to treat osteolysis (bone degradation). Osteolysis typically occurs due to wear of the polyethylene liner of the acetabular implant after total hip replacement surgery. In less inv

Cited by 30SourceScholar
2016

Progress toward robotic surgery of the lateral skull base: Integration of a dexterous continuum manipulator and flexible ring curette

ICRA 2016

Lesions of the lateral skull base in the petrous apex present unique surgical challenges because of the proximity of critical structures, including the inner ear, carotid artery, jugular bulb, facial nerve, lower cranial nerves, dura and brain. Currently, there are few appropriate surgical devices t

Cited by 19SourceScholar
2015

Large deflection shape sensing of a continuum manipulator for minimally-invasive surgery

ICRA 2015poster

Shape sensing techniques utilizing Fiber Bragg grating (FBG) arrays can enable real-time tracking and control of dexterous continuum manipulators (DCM) used in minimally invasive surgeries. For many surgical applications, the DCM may need to operate with much larger curvatures than what current shap…

Cited by 64SourceScholar