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Blake Hannaford

26 accepted papers

2021

Learning Surgical Motion Pattern from Small Data in Endoscopic Sinus and Skull Base Surgeries

ICRA 2021poster

Existing studies demonstrated that surgical motion patterns are strongly correlated with surgical outcomes. Real surgeries are complicated and it is expensive to harvest surgical data. Consequently, existing researches on surgical motion patterns focus on specific concise surgical tasks or simple su…

Cited by 7SourceScholar
2021

Multi-Frame Feature Aggregation for Real-Time Instrument Segmentation in Endoscopic Video

RA-L 2021

Deep learning-based methods have achieved promising results on surgical instrument segmentation. However, the high computation cost may limit the application of deep models to time-sensitive tasks such as online surgical video analysis for robotic-assisted surgery. Moreover, current methods may stil

Cited by 26SourceScholar
2020

IKBT: Solving Symbolic Inverse Kinematics with Behavior Tree (Extended Abstract)

IJCAI 2020poster

Inverse kinematics solves the problem of how to control robot arm joints to achieve desired end effector positions, which is critical to any robot arm design and implementations of control algorithms. It is a common misunderstanding that closed-form inverse kinematics analysis is solved. Popular…

2020

LC-GAN: Image-to-image Translation Based on Generative Adversarial Network for Endoscopic Images

IROS 2020poster

Intelligent vision is appealing in computer-assisted and robotic surgeries. Vision-based analysis with deep learning usually requires large labeled datasets, but manual data labeling is expensive and time-consuming in medical problems. We investigate a novel cross-domain strategy to reduce the need…

Cited by 44SourcecodeScholar
2020

RAVEN-S: Design and Simulation of a Robot for Teleoperated Microgravity Rodent Dissection Under Time Delay

ICRA 2020poster

The International Space Station (ISS) serves as a research lab for a wide variety of experiments including some that study the biological effects of microgravity and spaceflight using the Rodent Habitat and Microgravity Science Glovebox (MSG). Astronauts train for onboard dissections of rodents foll…

Cited by 4SourceScholar
2020

Real-time Data Driven Precision Estimator for RAVEN-II Surgical Robot End Effector Position

ICRA 2020poster

Surgical robots have been introduced to operating rooms over the past few decades due to their high sensitivity, small size, and remote controllability. The cable-driven nature of many surgical robots allows the systems to be dexterous and lightweight, with diameters as low as 5mm. However, due to t…

Cited by 35SourcecodeScholar
2020

Towards Better Surgical Instrument Segmentation in Endoscopic Vision: Multi-Angle Feature Aggregation and Contour Supervision

RA-L 2020

Accurate and real-time surgical instrument segmentation is important in the endoscopic vision of robot-assisted surgery, and significant challenges are posed by frequent instrument-tissue contacts and continuous change of observation perspective. For these challenging tasks more and more deep neural

Cited by 56SourcecodeScholar
2019

Multicamera 3D Reconstruction of Dynamic Surgical Cavities: Non-Rigid Registration and Point Classification

IROS 2019poster

Deformable objects and surfaces are ubiquitous in the daily lives of humans - from the garments in fashion to soft tissues within the body. Because of this routine interaction with soft materials, humans are adept and trained in manipulation of deformable objects while avoiding irreversible damage.…

Cited by 14SourceScholar
2019

Surgical Instrument Segmentation for Endoscopic Vision with Data Fusion of rediction and Kinematic Pose

ICRA 2019

The real-time and robust surgical instrument segmentation is an important issue for endoscopic vision. We propose an instrument segmentation method fusing the convolutional neural networks (CNN) prediction and the kinematic pose information. First, the CNN model ToolNet-C is designed, which cascades

Cited by 56SourceScholar
2019

Surgical instrument segmentation for endoscopic vision with data fusion of cnn prediction and kinematic pose

ICRA 2019poster

The real-time and robust surgical instrument segmentation is an important issue for endoscopic vision. We propose an instrument segmentation method fusing the convolutional neural networks (CNN) prediction and the kinematic pose information. First, the CNN model ToolNet-C is designed, which cascades…

Cited by 64SourceScholar
2018

A Novel Recurrent Neural Network for Improving Redundant Manipulator Motion Planning Completeness

ICRA 2018poster

Recurrent Neural Networks (RNNs) demonstrated advantages on control precision, system robustness and computational efficiency, and have been widely applied to redundant manipulator control optimization. Existing RNN control schemes locally optimize trajectories and are efficient and reliable on obst…

Cited by 33SourceScholar
2018

Comparison of 3D Surgical Tool Segmentation Procedures with Robot Kinematics Prior

IROS 2018poster

3D reconstruction and surgical tool segmentation are necessary for several advanced tasks in robot-assisted laparoscopic surgery. These tasks include vision-based force estimation, surgical guidance, and medical image registration where pre-operative data (CT or MRI scan image slices) are overlaid o…

Cited by 29SourceScholar
2018

Learned Hand Gesture Classification Through Synthetically Generated Training Samples

IROS 2018poster

Hand gestures are a natural component of human-human communication. Simple hand gestures are intuitive and can exhibit great lexical variety. It stands to reason that such a user input mechanism can have many benefits, including seamless interaction, intuitive control and robustness to physical cons…

Cited by 14SourceScholar
2017

Gaussian Process Regression for Sensorless Grip Force Estimation of Cable-Driven Elongated Surgical Instruments

RA-L 2017

Haptic feedback is a critical but a clinically missing component in robotic Minimally Invasive Surgeries. This paper proposes a Gaussian Process Regression(GPR) based scheme to address the gripping force estimation problem for clinically commonly used elongated cable-driven surgical instruments. Bas

Cited by 61SourceScholar
2017

Improving control precision and motion adaptiveness for surgical robot with recurrent neural network

IROS 2017poster

Surgical robot research is driven by the desire of improving surgical outcomes. This paper proposed a Recurrent Neural Network based controller to address two problems: 1) improving control precision, 2) increasing adaptiveness for robot motion (explained in Section I). RNN was adopted in this work…

Cited by 34SourceScholar
2017

Integrated asymmetric stop operator based model for strain stress hysteresis characteristics of cable driven robots loaded longitudinally

IROS 2017poster

Beside the output-input hysteresis, the longitudinally loaded cables of medical robotics such as RAVEN II exhibit asymmetric saturated strain-load hysteresis loops. This study investigates modeling the hysteresis nonlinearities of these cables using a stop-operator based Prandtl-Ishlinskii (SPI) mod…

Cited by 6SourceScholar
2017

Roboscope: A flexible and bendable surgical robot for single portal Minimally Invasive Surgery

ICRA 2017poster

Minimally Invasive Surgery (MIS) can reduce iatrogenic injury and decrease the possibility of surgical complications. This paper presents a novel flexible and bendable endoscopic device, “Roboscope”, which delivers two instruments, two miniature scanning fiber endoscopes, and a suction/irrigation po…

Cited by 45SourceScholar
2017

Utilizing Elasticity of Cable-Driven Surgical Robot to Estimate Cable Tension and External Force

RA-L 2017

Cable-driven robots enable compact design by allowing actuators to be mounted away from joints. This kind of actuation is desired in surgical robots. The cables in these robots must remain under tension at all times in order to have optimum performance. Thus, the knowledge of initial value of cable

Cited by 46SourceScholar
2016

Dynamic modeling of cable driven elongated surgical instruments for sensorless grip force estimation

ICRA 2016

Haptic feedback plays a key role in surgeries, but it is still a missing component in robotic Minimally Invasive Surgeries. This paper proposes a dynamic model-based sensorless grip force estimation method to address the haptic perception problem for commonly used elongated cable-driven surgical ins

Cited by 46SourceScholar
2016

Hysteresis model of longitudinally loaded cable for cable driven robots and identification of the parameters

ICRA 2016

In this paper, we propose model of longitudinally loaded cable based on the Bouc-Wen hysteresis model and within the framework of the Duhem operator. By optimizing the 9 hysteresis model parameters with a genetic algorithm, the proposed model is shown to be capable of representing quasi-static respo

Cited by 50SourceScholar
2016

Unscented Kalman Filter and 3D vision to improve cable driven surgical robot joint angle estimation

ICRA 2016

Cable driven manipulators are popular in surgical robots due to compact design, low inertia, and remote actuation. In these manipulators, encoders are usually mounted on the motor, and joint angles are estimated based on transmission kinematics. However, due to non-linear properties of cables such a

Cited by 36SourceScholar
2015

Improving position precision of a servo-controlled elastic cable driven surgical robot using Unscented Kalman Filter

IROS 2015poster

Cable driven power transmission is popular in many manipulator applications including medical arms. In spite of advantages obtained by removing motors from the mechanism, cable transmission introduces higher non-linearity and more uncertainties such as cable stretch and cable coupling. In order to i…

Cited by 56SourceScholar
2015

Measurement of the cable-pulley Coulomb and viscous friction for a cable-driven surgical robotic system

IROS 2015poster

In this paper we present experimentally obtained cable-pulley Coulomb and viscous friction for cable-driven surgical robotic systems including the RAVEN II surgical robotic research platform. In the study of controlling cable-driven systems a simple mathematical model which does not capture physical…

Cited by 65SourceScholar
2015

Path planning for semi-automated simulated robotic neurosurgery

IROS 2015poster

This paper considers the semi-automated robotic surgical procedure for removing the brain tumor margins, where the manual operation is a tedious and time-consuming task for surgeons. We present robust path planning methods for robotic ablation of tumor residues in various shapes, which are represent…

Cited by 34SourceScholar
2015

Semi-autonomous simulated brain tumor ablation with RAVENII Surgical Robot using behavior tree

ICRA 2015poster

Medical robots have been widely used to assist surgeons to carry out dexterous surgical tasks via various ways. Most of the tasks require surgeon's operation directly or indirectly. Certain level of autonomy in robotic surgery could not only free the surgeon from some tedious repetitive tasks, but a…

Cited by 145SourceScholar