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Update cv.yml
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JB515 committed May 8, 2024
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institution: Queen Mary University of London, United Kingdom
year: 2024
description:
# - Developed soft haptic technologies for real-time robot operation in difficult environments.
# - Co-designed a 3D printable face shield visor for COVID-19 protection, the second such product to gain medical certification in the UK. Over 3,000 of these visors were produced and used in London hospitals.
# - Equipment manager for the Centre for Advanced Robotics rapid prototyping lab responsible for all training, consumables, maintenance and documentation
# - Won funding for and participated in a 3-month visit to York University, Canada working on haptic feedback for teleoperation of underwater robots
# - Supported undergraduate students competing in the 2020 Cybathlon (all-terrain wheelchair) competition
# - Supervised/co-supervised 8 MSc, MEng and BSc project students to completion (2 prize winning projects)
# - Webmaster for the Centre for Advanced Robotics public website
# - Funded by the Engineering and Physical Sciences Research Council
- Developed soft haptic technologies for real-time robot operation in difficult environments.
- Co-designed a 3D printable face shield visor for COVID-19 protection, the second such product to gain medical certification in the UK. Over 3,000 of these visors were produced and used in London hospitals.
- Equipment manager for the Centre for Advanced Robotics rapid prototyping lab responsible for all training, consumables, maintenance and documentation
- Won funding for and participated in a 3-month visit to York University, Canada working on haptic feedback for teleoperation of underwater robots
- Supported undergraduate students competing in the 2020 Cybathlon (all-terrain wheelchair) competition
- Supervised/co-supervised 8 MSc, MEng and BSc project students to completion (2 prize winning projects)
- Webmaster for the Centre for Advanced Robotics public website
- Funded by the Engineering and Physical Sciences Research Council

- title: MEng, Electronic and Information Engineering
institution: Imperial College London, United Kingdom
year: 2018
description:
- title: Master's project
contents:
# - Developed a fingertip tactile display to impart a tactile representation of printed text, shape and colour
# - Awarded 85% mark and the Eric Laithwaite prize for outstanding innovation in an individual project
# - Demonstrated this and other HCI projects at the Imperial College and Great Exhibition Road Festivals
- Developed a fingertip tactile display to impart a tactile representation of printed text, shape and colour
- Awarded 85% mark and the Eric Laithwaite prize for outstanding innovation in an individual project
- Demonstrated this and other HCI projects at the Imperial College and Great Exhibition Road Festivals
- title: Projects
contents:
# - Built a robotic walking aid featuring obstacle avoidance and detection of falls and clinical gait disorders
# - Built a voice controlled, smart exoskeleton for a coffee machine (sponsored by IBM)
# - Studied the human perception of depth cues in 3D images, and associated performance improvements when incorporated into visual interfaces. Published and presented a paper at IEEE Symposium on Information Visualization (IV2017).
# - Developed a small-scale C to MIPS compiler in C++ using FLEX, BISON and a MIPS simulator
# - Developed my own single camera 2D-3D image conversion algorithm, and implemented this on an FPGA
# - Designed an automated water monitoring system for the Nepal Water for Health Challenge

- Built a robotic walking aid featuring obstacle avoidance and detection of falls and clinical gait disorders
- Built a voice controlled, smart exoskeleton for a coffee machine (sponsored by IBM)
- Studied the human perception of depth cues in 3D images, and associated performance improvements when incorporated into visual interfaces. Published and presented a paper at IEEE Symposium on Information Visualization (IV2017).
- Developed a small-scale C to MIPS compiler in C++ using FLEX, BISON and a MIPS simulator
- Developed my own single camera 2D-3D image conversion algorithm, and implemented this on an FPGA
- Designed an automated water monitoring system for the Nepal Water for Health Challenge

- title: Positions Held
type: time_table
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institution: Imperial College London, United Kingdom
year: 2023-present
description:
# - Conducted research into using haptic feedback and XR to support the training of dexterous medical skills, focusing on physical examinations.
# - Working towards deploying haptic medical simulations as part of the Imperial College medical curriculum.
# - Close collaboration with surgeons and clinical teaching staff in multiple disciplines.
# - Designing and executing user studies with both non-specialist and expert participants.
# - Led a team of three researchers investigating optimized 3D printing of lower limb prosthetics.
# - Co-Chair of the Imperial College Special Interest Group on XR in Education
# - Funded by the Imperial College Digital Innovation Fund
# - Conducted research into using haptic feedback and XR to support the training of dexterous medical skills, focusing on physical examinations.
# - Working towards deploying haptic medical simulations as part of the Imperial College medical curriculum.
# - Close collaboration with surgeons and clinical teaching staff in multiple disciplines.
# - Designing and executing user studies with both non-specialist and expert participants.
# - Led a team of three researchers investigating optimized 3D printing of lower limb prosthetics.
# - Co-Chair of the Imperial College Special Interest Group on XR in Education
# - Funded by the Imperial College Digital Innovation Fund

- title: Visiting Researcher
institution: Seoul National University, South Korea
year: 2024
description:
# - Conducted research into soft, shape changing tactile displays to simulate medical lumps
# - Embedded in the HeRo (Healthcare Robotics) Lab
# - Funded by UKRI (UK) and NRF (Korea)
# - Conducted research into soft, shape changing tactile displays to simulate medical lumps
# - Embedded in the HeRo (Healthcare Robotics) Lab
# - Funded by UKRI (UK) and NRF (Korea)


- title: Co-Founder and Chief Engineer
institution: Human Robotix Ltd., London, United Kingdom
year: 2021-present
# - Designed and built a back-drivable wrist interface now being used in universities across the UK and Europe.
# - Co-founded Human Robotix Ltd. to sell this robot to researchers and clinicians.

# - Designed and built a back-drivable wrist interface now being used in universities across the UK and Europe.
# - Co-founded Human Robotix Ltd. to sell this robot to researchers and clinicians.

- title: Visiting Researcher
institution: York University, Toronto, Canada
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- title: Visiting Researcher
institution: Royal London Dental Hospital, London, United Kingdom
year: 2022
# - Designed an approved, 3D printable, reusable face shield visor for rapid manufacturing and deployment early in the COVID-19 pandemic. Made and delivered nearly 3000 of these to hospitals and clinics in London.
# - Designed and built a smartphone-based face scanner to automatically generate 3D printable, personalized face mask adapters and implemented a pipeline to automatically 3D print these for hospital staff.
# - Designed innovative 3D printable implants and models to support novel maxillofacial surgeries, now being used clinically.
# - Designed and prototyped a personalisible, sensorised jaw exerciser to support jaw rehabilitation after surgery.
# - Developing biocompatible 3D printing materials for use in dentistry in collaboration with a market leader in 3D printing (project details under NDA).
# - Designed an approved, 3D printable, reusable face shield visor for rapid manufacturing and deployment early in the COVID-19 pandemic. Made and delivered nearly 3000 of these to hospitals and clinics in London.
# - Designed and built a smartphone-based face scanner to automatically generate 3D printable, personalized face mask adapters and implemented a pipeline to automatically 3D print these for hospital staff.
# - Designed innovative 3D printable implants and models to support novel maxillofacial surgeries, now being used clinically.
# - Designed and prototyped a personalisible, sensorised jaw exerciser to support jaw rehabilitation after surgery.
# - Developing biocompatible 3D printing materials for use in dentistry in collaboration with a market leader in 3D printing (project details under NDA).

- title: Research Assistant
institution: Imperial College London, United Kingdom
year: 2020-2021
# - Developing an affordable, portable, backdrivable force feedback interface for human motor control and haptics research and robotic physical rehabilitation.
# - Supervised by Professor Etienne Burdet
# - Developing an affordable, portable, backdrivable force feedback interface for human motor control and haptics research and robotic physical rehabilitation.
# - Supervised by Professor Etienne Burdet


- title: Teaching Assistant
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