Innovative Projects Realized

Explore thousands of successful projects resulting from collaboration between organizations and post-secondary talent.

30508 Completed Projects

2882
AB
5105
BC
825
MB
681
NL
860
SK
9051
ON
9491
QC
97
PE
586
NB
1141
NS

Projects by Category

Utilizing Soybean Yellow Mottle Mosaic Virus as a Genetic Manipulation Tool for Genome Analysis in Fabaceae Plants

The research aims to identify key viral proteins through comprehensive genome analysis of plant viruses including soybean viruses, and to engineer virus vectors capable of modulating host gene expression. Specifically, the study will focus on developing a technology for targeted delivery of the CRISPR/Cas system into soybean cells with enhanced efficiency.

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Faculty Supervisor:

Peter Moffett

Student:

Partner:

Seoul National University

Discipline:

Life Sciences

Sector:

Education

University:

Université de Sherbrooke

Program:

Globalink Research Award

Recyclability of medical plastic disposables

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Faculty Supervisor:

TBD

Student:

Partner:

Hochschule Osnabrück

Discipline:

Life Sciences

Sector:

University:

Program:

Globalink Research Award

Optimizing Dynamic Graph Operations of a Large-Scale Network Analysis Tool

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Faculty Supervisor:

TBD

Student:

Partner:

Humboldt-Universität zu Berlin

Discipline:

Computer science

Sector:

Education

University:

Program:

Globalink Research Award

Cost-effectiveness of a synchronized care clinic for cardiometabolic therapies

Patients with type 2 diabetes are at greater risk for cardiovascular disease, including stroke or heart failure. Newer medications can improve cardiometabolic health for patients with diabetes. But many clinicians are not yet comfortable prescribing these guideline-directed medications, and other clinicians are only comfortable after patients see several specialists. As a result, many patients do not receive guideline-directed medications, while others face long delays in beginning therapies. At the McGill University Health Centre, an innovative quickly and safely initiate guideline-directed therapies. In this new model, patients see three specialists at each appointment to efficiently adjust other medications and ensure safe initiation. In this project, we will use a simulation model to estimates outcomes for diabetes patients with and without guidelinedirected therapies. Using the model, we will estimate the clinical benefit and cost-effectiveness of this synchronized care model for patients with type 2 diabetes.

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Faculty Supervisor:

W. Alton Russell

Student:

Partner:

McGill University Health Centre Foundation;McGill University Health Centre

Discipline:

Sociology

Sector:

Health and Related Sciences & Technology

University:

McGill University

Program:

Accelerate

3D organoid model: a new window in research of neurodegenerative disorders

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Faculty Supervisor:

TBD

Student:

Partner:

Johannes Gutenberg-Universität Mainz

Discipline:

Life Sciences

Sector:

Education

University:

Program:

Globalink Research Award

Selective Compression of Live Digital Video Frames for Power-friendly Wireless Transmission and Efficient Reconstruction

The project is aimed at implementing real-time processing techniques for video acquisition, compression and transmission. The project focuses on defining solutions in order to solve constraints within the system related to bandwidth and the battery energy of the sensor. Depending on the application, the acquisition and compression procedures could be based on extracting significant features and compressing them in a lossless fashion followed by data transmission over a wireless channel. The real-time transmission of data within the available bandwidth would be implemented so as to maximize the battery life while transmitting enough bits over the channel for an accurate image reconstruction. Specially tailored schemes for image recovery would be investigated such that the reconstructed image at the server and those streamed to the authorized end users would meet a certain high level quality. Furthermore, the algorithm would be automated to make it more adaptable under various conditions. These processes are relevant to the development of real-time machine vision sensor devices which have goals of energy conservation and ease of technological use.

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Faculty Supervisor:

Rabab Ward

Student:

Partner:

NZ Technologies Inc

Discipline:

Engineering

Sector:

Professional, scientific and technical services

University:

The University of British Columbia

Program:

Accelerate

Révolutionner la gestion de la douleur totale en soins palliatifs oncologiques : Une approche intégrative pharmacogénomique-spirituelle.

La «douleur totale» en soins palliatifs oncologiques, englobant la douleur physique, psychologique, sociale et spirituelle, représente un défi majeur. Sa gestion souvent sous-optimale conduit à une détérioration de la qualité de vie des patients. Ce projet vise à proposer une approche novatrice combinant deux disciplines très différentes : la pharmacogénomique et la théologie spirituelle. Les objectifs sont de: 1) Explorer, par une étude qualitative, les besoins non satisfaits en matière de gestion de la souffrance globale chez les personnes atteintes de cancer métastatique afin d’optimiser le soulagement de la souffrance; 2) Cerner, auprès des professionnels.lles de la santé travaillant dans les soins palliatifs, les enjeux actuels liés à la prise en charge de la souffrance globale des patients.es.
Ce projet vise à révolutionner les pratiques actuelles de prise en charge des symptômes douloureux, souvent limitées à des approches médicamenteuses ou spirituelles isolées et insuffisantes pour améliorer la qualité de vie des patients. Une équipe pluridisciplinaire internationale a été formée afin de développer une approche innovante et holistique visant le traitement de la personne malade dans sa globalité en oncologie, améliorant ainsi la qualité des soins et la qualité de vie des patients avec une intervention précoce, personnalisée et ciblée.

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Faculty Supervisor:

Aline Hajj

Student:

Partner:

University of Fribourg

Discipline:

Life Sciences

Sector:

Education

University:

Université Laval

Program:

Globalink Research Award

Water quality and community attitudes at three sites of inaccessible water

Recreational waters offer many benefits to society and public health. However, they can become risky when contaminated by disease-causing microbes. To ensure public safety, water quality is monitored at developed recreational water locations in compliance with the Canadian Recreational Water Quality Guidelines. In the interests of improving quality of life and local water quality, municipal and community groups including partner organization Swim Drink Fish work to identify new locations for recreational water on Burrard Inlet. This project comprises two sub-projects. One monitors microbial levels at potential sites for development, helping build a database for future use. The other surveys nearby residents to understand their connection to water, barriers they face in access, and their desires for better access to water in their neighborhood. The two subprojects are connected by the site-specific data on water quality and the relationship that locals have with water.

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Faculty Supervisor:

Jane Fowler;Michael Schmitt

Student:

Partner:

Swim Drink Fish

Discipline:

Life Sciences

Sector:

Other services (except public administration)

University:

Simon Fraser University

Program:

Accelerate

Wind-enhanced interfacial evaporation for volume reduction of highly concentrated slurries

The volumetric reduction of tailings is required to exert volumetric control on these ponds and shorten the timeline required for the reclamation of the lands occupied by the ponds. In this project we propose to harvest wind energy for fast interfacial evaporation to speed up drying process and volume reduction of highly concentrated waste slurries.

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Faculty Supervisor:

Xuehua Zhang

Student:

Partner:

BC Research Inc.

Discipline:

Engineering

Sector:

Clean Technology; Sustainability & the Environment; Water

University:

University of Alberta

Program:

Accelerate

Mieux gérer l’occupation du sol pour atténuer les impacts du changement climatique à l’aide d’imagerie satellitaire

Le changement climatique augmente la fréquence et l’intensité des évènements climatiques extrêmes : inondations, ilots de chaleur urbain, sécheresses, etc. Dans l’analyse et la gestion de ces phénomènes, l’évolution de l’occupation du sol est souvent négligée tant l’attention est concentrée sur l’impact du climat. Cependant, la croissance démographique et l’étalement urbain engendrent une croissance urbaine et péri-urbaine sans précédent, dont les conséquences aggravent les effets du changement climatique.
L’objectif de ce projet est de développer de nouvelles méthodes de quantification des surfaces imperméabilisées dans les zones urbaines et péri-urbaines et de développer des scénarios de stratégie de gestion de l’occupation du sol afin d’estimer les impacts de croissance urbaine et péri-urbaine sur les inondations et les ilots de chaleur urbain.

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Faculty Supervisor:

Yacine Bouroubi

Student:

Partner:

Université Côte d'Azur

Discipline:

Earth science

Sector:

Environmental Science and Technology

University:

Université de Sherbrooke

Program:

Globalink Research Award

L2M – Product Design and Market Outreach to help Auto Repair Shops Automate Customer Engagement

Mxpert is working on a project to create a new system that makes it easier for auto repair shops to connect with their customers. This system will help shops schedule appointments, send reminders, and keep customers updated in a really simple and automatic way. For the repair shops that work with us, this means less time spent on the phone and more time fixing cars and expanding business. Overall, this project is all about making things smoother and more efficient for both the auto repair shops and their customers, which should help the shops attract more business and keep their customers happy.

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Faculty Supervisor:

Jeff Larsen

Student:

Partner:

Springboard Atlantic Inc.

Discipline:

Business

Sector:

Automotive

University:

Dalhousie University

Program:

Business Strategy Internship

L2M – Innovating Concussion Management with Head First Network

Head First Network is on a mission to enhance concussion awareness and safety within the student-athlete community. By prioritizing education, we aim to empower athletes with the knowledge and resources necessary to effectively manage concussions, guiding them toward the appropriate professional support. Our comprehensive approach extends to coaches and teams, equipping them with the tools to recognize concussions and understand their significant impact. Through targeted interviews with athletes, influencers, and healthcare professionals, we’ve shaped our services to meet the nuanced needs of our community. Head First Network is dedicated to building a culture of safety and awareness, ensuring athletes, coaches, and teams are prepared to address the challenges of concussions with confidence and care.

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Faculty Supervisor:

Jeff Larsen

Student:

Partner:

Springboard Atlantic Inc.

Discipline:

Business

Sector:

Health and Related Sciences & Technology; Other; Social Innovation

University:

Dalhousie University

Program:

Business Strategy Internship