平特五不中

Core Facility and Technology Development Program: Competition II

Following the 2020 mid-term core facility/technology platform renewal process, HBHL launched its second Core Facility and Technology Development Program in April 2021. Fifteen applications were received, of which three were selected for funding based on the following process:

  1. External evaluations (four non-平特五不中 reviewers per application)
  2. Sex- and gender-based analysis plus (SGBA+) review: two non-平特五不中 SGBA+ experts
  3. NeuroHub engagement: Reviewed by NeuroHub leadership
  4. User analysis: Core facility/technology platform user lists cross-checked with HBHL鈥檚 database of funded PIs
  5. Strategic review and recommendation for funding: Conducted by a special committee made up of Strategic Steering Committee and Research Management Committee members who were not in conflict of interest
  6. Final Funding Decisions: The HBHL Board of Directors reviewed the recommendations from the special committee and made final funding decisions.

Read more about HBHL's general funding allocation process for all funded programs.


Funded Core Facilities and Technology Platforms

Two researchers using analysis tools on computers elevated on cabinets.

Principal Investigator: Keith Murai
Co-Applicants:

  • Dr. Philippe Huot, Montreal Neurological Institute
  • Dr. Mark Brandon, Douglas Mental Health University Institute
  • Dr. Sylvain Williams, Douglas Mental Health University Institute
  • Dr. Jean-Baptiste Poline, Montreal Neurological Institute

Funding received:听$1,500,000 over three years

The 平特五不中-Mouse-Miniscope (M3)聽animal modelling platform, which also encompasses the聽聽(CMARC),聽aims to build new expertise, technologies, and core services to help bridge studies between mouse and humans. To do this, M3聽develops, tests聽and implements novel approaches for understanding and decoding brain and circuit function in both mice and marmosets. HBHL funding will allow M3 team members to work together to create a fully integrated mouse-to-marmoset service platform that will enable聽sharing of data, infrastructure, hardware, software, and technical know-how across 平特五不中 sites. At the same time, the platform will strengthen 平特五不中's marmoset resources and allow access to new techniques and data sets for 平特五不中, Canadian and international researchers collaboratively engaged in neurophysiology, neuroimaging, behavioral analysis and disease modelling.

Exterior of CIC building, which has a intricate metail facade.

Principal Investigator:听Mallar Chakravarty
Co-applicants:听

  • Dominique Walker, Douglas Research Centre
  • Patricia Pelufo Silviera, Douglas Research Centre
  • Cecilia Flores, Douglas Research Centre
  • Lalit Srivastava, Douglas Research Centre
  • Jai Shah, Douglas Research Centre
  • Jean-Baptiste Poline, 平特五不中
  • Lena Palaniyappan, Western University
  • Romina Mizrahi, Douglas Research Centre

Funding received: $700,000 over three years

The Cerebral Imaging Centre (CIC), located at the Douglas Research Centre, is a unique facility housing a 3T Siemens Prisma Magnetic Resonance Imaging (MRI) scanner and 7T Bruker Biospec MRI scanner under one roof. As one of the leading psychiatric research centres in聽Canada, the CIC聽is聽uniquely positioned to perform cutting edge research in model systems, in clinical populations, and to examine variation that relate brain and behaviour across the lifespan. HBHL funding will help to augment the CIC's current offerings by allowing the Centre to prioritize four specific goals:

  1. Improve the platform to deal with the specific challenges of scanning early in the lifespan
  2. Expand multi-modal integration related to animal imaging
  3. Enhance聽data sharing through NeuroHub
  4. Build partnerships with industry and other academic institutions

Principal Investigator: Nancy Mayo
Co-applicants:

  • Lesley Fellows, 平特五不中
  • Simon Ducharme, 平特五不中
  • Alexander Thiel, 平特五不中
  • Sara Ahmed, 平特五不中
  • Laurence Kirmayer, 平特五不中
  • Madeleine Sharp, 平特五不中

Funding received: $300,000 over three years

Fully characterizing a brain disorder or mental illness requires the measurement of how the disorder affects a person鈥檚 life聽and how their social and cultural backgrounds influence both the brain and the effects of the brain on the person. It is uncommon聽for these outcomes and influences to be fully integrated in neuroscience research, however, open science platforms now make this integration possible. The Brain Health Outcomes Platform+ (BHOP+) was developed to ensure that the voice of the patient living with a neurological or mental health disorder is heard when considering how the brain works.

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