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  • 1
    Online Resource
    Online Resource
    McGill University Library and Archives ; 2020
    In:  International Journal of Whole Person Care Vol. 7, No. 1 ( 2020-01-15), p. 40-41
    In: International Journal of Whole Person Care, McGill University Library and Archives, Vol. 7, No. 1 ( 2020-01-15), p. 40-41
    Abstract: One in 12 Canadians have a rare disease, yet medical education continues to espouse Dr. Woodward’s aphorism “when you hear hoofbeats think horses, not zebras.” This produces physician attitudes which are deleterious to the care of people with rare diseases. The McGill University Rare Disease Interest Group (rareDIG) has created programming which sensitizes medical students to the extent and reality of rare diseases.rareDIG helps them to develop attitudes and approaches which shorten the diagnostic odyssey and improve care of people with rare diseases. Success stems from drawing attention to the realities of rare disease through direct patient interaction, creating a strong social media presence, and building collaborations with rare disease advocacy groups and networks. Our inaugural Rare Disease Day event was attended by over 100 attendees including medical students, patients and their families, and a variety of health professionals.Other successes include a Patient Perspective Series addressing the holistic approach to rare disease, shadowing opportunities, “n = rare” journal clubs, and a “Humans of Rare Disease” advocacy project. Medical students represent an important cohort to target with rare disease awareness campaigns that has largely been overlooked by current advocacy efforts. By exposing medical students early in their education to the realities of rare diseases, student-run interest groups can improve medical students’ understanding and perception of rare diseases and ultimately improve patient care in the future. rareDIG strives to continue achieving its objectives in rare disease education and aide other medical schools in creating their own rare disease student groups. 
    Type of Medium: Online Resource
    ISSN: 2291-918X
    Language: Unknown
    Publisher: McGill University Library and Archives
    Publication Date: 2020
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  • 2
    In: Scientific Data, Springer Science and Business Media LLC, Vol. 2, No. 1 ( 2015-11-10)
    Abstract: The hippocampus is composed of distinct anatomical subregions that participate in multiple cognitive processes and are differentially affected in prevalent neurological and psychiatric conditions. Advances in high-field MRI allow for the non-invasive identification of hippocampal substructure. These approaches, however, demand time-consuming manual segmentation that relies heavily on anatomical expertise. Here, we share manual labels and associated high-resolution MRI data (MNI-HISUB25; submillimetric T1- and T2-weighted images, detailed sequence information, and stereotaxic probabilistic anatomical maps) based on 25 healthy subjects. Data were acquired on a widely available 3 Tesla MRI system using a 32 phased-array head coil. The protocol divided the hippocampal formation into three subregions: subicular complex, merged Cornu Ammonis 1, 2 and 3 (CA1-3) subfields, and CA4-dentate gyrus (CA4-DG). Segmentation was guided by consistent intensity and morphology characteristics of the densely myelinated molecular layer together with few geometry-based boundaries flexible to overall mesiotemporal anatomy, and achieved excellent intra-/inter-rater reliability (Dice index ≥90/87%). The dataset can inform neuroimaging assessments of the mesiotemporal lobe and help to develop segmentation algorithms relevant for basic and clinical neurosciences.
    Type of Medium: Online Resource
    ISSN: 2052-4463
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2015
    detail.hit.zdb_id: 2775191-0
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