Farmworkers’ perception on risks and interventions of work-related musculoskeletal disorders and heat-related illness

This project is a part of the preliminary phase of the research program aiming to design assistive device to prevent WMSDs and HRI in farmworkers. The intern will gather qualitative data by administering questionnaires and conducting an interview with workers on their perceptions of risks and interventions. Fifty workers over 18 years old, stratified samples […]

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Development of speech privacy criteria in offices

This project aims to develop an objective and universal speech privacy method that can be used within and between open-plan and closed offices, taking account of transmission paths and likely speech sound levels based on space type and usage. A performance classification table complete with likely subjective response and percentage intelligibility will be developed for […]

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Design, Fabrication and Testing of a Smart Sleeve for Upper Limb Tele-Rehabilitation Using a Novel Strain Sensor

The main objective of this study is to design a new fabric-based wearable tele-rehab system for automatic assessment of patients’ range of motion and quality of movements. This wearable system will consist of a lightweight stretchable sleeve that can accommodate frequent large stresses while keeping the functionality and durability of the device intact. In addition, […]

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Identification of Cost-Effective Recycling Strategies for High-Performance Thermoplastic Prepreg Production Waste

The use of composites in transportation vehicles has been increasing for many years without a proportional response in the commercialization of recycling technologies to deal with this composites waste. Most of the waste generated during manufacturing and end-of-life is currently either landfilled or incinerated. Governments around the world recognize that such practices represent an obstacle […]

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Maximizing the information transfer rate of a textile-based myoelectric interface

The electrical activity of muscles can be recorded from the skin and used to control external devices. Advances in this technology have the potential to allow a broad range of users with disabilities to control assistive technologies. This project will develop a system that uses sensors embedded in garments to measure muscle signals, and artificial […]

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Development of the Next-generation Automated Mobile Recycling System

Mobile recycling, as part of efforts to help reduce the greenhouse emissions, is a novel type of recycling type emerged in recent years. The U-Cycle automated mobile recycling system located in Newfoundland and Labrador is a typical paradigm. This research project focuses on developing methodologies for multiple modules for the next-generation mobile recycling, including mechanism, […]

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Characterizing and Optimizing polyurethane cementitious composite mixtures

In industrial areas like manufacturing units, logistics centers, and warehouses, floors are exposed to heavy traffic along with high mechanical loads and possible chemicals contact. This promotes the use of polymeric cementitious flooring compositions such as epoxy resin-based flooring compositions and polyurethane (PU) cementitious systems. The latter showed outstanding mechanical properties and do not suffer […]

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Textile-based immunosensors for sweat biomarkers: A case study for measuring cortisol

The portable user friendly devices can help us monitor our health status without any need to refer clinics. This capability is good to timely and efficacious medical interventions. This project aimed at realizing this device by making the key component involved in recognizing the biomarkers. We will synthesize the component at first using available inexpensive […]

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Advance Machine Learning for Medical Survival Analysis

In this Mitacs Cluster project, we aim to investigate and improve performance of deep survival models developed by Ortho Biomed Inc., our industrial collaborator. The main objective is to predict clinical outcomes, such as time of death, and the time of organ failure before and after surgery, more accurately and more efficiently. Architecturally, Ortho Biomed […]

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Risk-based evaluation and optimization of friction devices for seismic retrofits of non-ductile building structures in Canada

Canada’s early-designed public buildings (i.e., schools and hospitals) are at significant risk of seismic damage and collapse. The installation of seismic protective devices, such as friction devices designed and manufactured by Quaketek Inc, offers a viable strategy to mitigate the seismic risk of building structures. However, the practical use of friction devices has commonly relied […]

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