Publications by authors named "Athey T"

Article Synopsis
  • Molecular chaperones are essential for maintaining protein balance, and loss of Smyd1b in zebrafish leads to disorganized muscle fibers and increased heat shock protein expression.
  • RNA sequencing revealed that the upregulated heat shock proteins, particularly Hsp70s, are important for myosin folding and assembly in muscle cells.
  • Additionally, Hsf1 is crucial for activating heat shock gene expression during stress, with its absence exacerbating muscle issues in Smyd1b mutants and decreasing survival under heat stress.
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CASK (MIM#300172), encoding a calcium/calmodulin-dependent serine protein kinase, is crucial for synaptic transmission and gene regulation during neural development. Pathogenic variants of CASK are known to cause several neurodevelopmental disorders, including X-linked intellectual disability and microcephaly with pontine and cerebellar hypoplasia (MICPCH). This study introduces a novel, de novo synonymous CASK variant (NM_001367721.

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Connectomics provides essential nanometer-resolution, synapse-level maps of neural circuits to understand brain activity and behavior. However, few researchers have access to the high-throughput electron microscopes necessary to generate enough data for whole circuit or brain reconstruction. To date, machine-learning methods have been used after the collection of images by electron microscopy (EM) to accelerate and improve neuronal segmentation, synapse reconstruction and other data analysis.

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Here, we introduce , an R package to determine the distribution of very low frequency variants (VLFs) in nucleotide and amino acid sequences for the analysis of errors in DNA sequence records. The package allows users to assess VLFs in aligned and trimmed protein-coding sequences by automatically calculating the frequency of nucleotides or amino acids in each sequence position and outputting those that occur under a user-specified frequency (default of = 0.001).

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The international neuroscience community is building the first comprehensive atlases of brain cell types to understand how the brain functions from a higher resolution, and more integrated perspective than ever before. In order to build these atlases, subsets of neurons (e.g.

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Characterizing cellular diversity at different levels of biological organization and across data modalities is a prerequisite to understanding the function of cell types in the brain. Classification of neurons is also essential to manipulate cell types in controlled ways and to understand their variation and vulnerability in brain disorders. The BRAIN Initiative Cell Census Network (BICCN) is an integrated network of data-generating centers, data archives, and data standards developers, with the goal of systematic multimodal brain cell type profiling and characterization.

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Spondyloepimetaphyseal dysplasia with joint laxity, leptodactylic type (SEMDJL2), is a rare bone dysplasia that results from hotspot (amino acids148/149) mutations in KIF22. Clinically, affected individuals present with generalized joint laxity, limb malalignment, midface hypoplasia, gracile digits, postnatal short stature, and occasionally, tracheolaryngomalacia; additionally, radiological features include severe epi-metaphyseal abnormalities and slender metacarpals. This report evaluates the progression of SEMDJL2 throughout the life of the oldest individual reported in the literature-a 66-year-old man with a pathogenic KIF22 variant (c.

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The international neuroscience community is building the first comprehensive atlases of brain cell types to understand how the brain functions from a higher resolution, and more integrated perspective than ever before. In order to build these atlases, subsets of neurons (e.g.

View Article and Find Full Text PDF

The international neuroscience community is building the first comprehensive atlases of brain cell types to understand how the brain functions from a higher resolution, and more integrated perspective than ever before. In order to build these atlases, subsets of neurons (e.g.

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Whole-brain fluorescence images require several stages of computational processing to fully reveal the neuron morphology and connectivity information they contain. However, these computational tools are rarely part of an integrated pipeline. Here we present BrainLine, an open-source pipeline that interfaces with existing software to provide registration, axon segmentation, soma detection, visualization and analysis of results.

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Clinical exome sequencing (ES) is the most comprehensive genomic test to identify underlying genetic diseases in Canada. We performed this retrospective cohort study to investigate the diagnostic yield of clinical ES in adulthood. Inclusion criteria were: (1) Adult patients ≥18 years old; (2) Patients underwent clinical ES between January 1 and December 31, 2021; (3) Patients were seen in the Department of Medical Genetics.

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Background: Mitochondrial long-chain fatty acid oxidation and carnitine metabolism defects are a group of inherited metabolic diseases. We performed a retrospective cohort study to report on the phenotypic and genotypic spectrum of mitochondrial long-chain fatty acid oxidation and carnitine metabolism defects as well as their treatment outcomes.

Methods: All patients with mitochondrial long-chain fatty acid oxidation and carnitine metabolism defects were included.

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Recent advances in brain clearing and imaging have made it possible to image entire mammalian brains at sub-micron resolution. These images offer the potential to assemble brain-wide atlases of neuron morphology, but manual neuron reconstruction remains a bottleneck. Several automatic reconstruction algorithms exist, but most focus on single neuron images.

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Article Synopsis
  • The article discusses the importance of standardizing data in neuroscience research to improve its quality and usability.
  • It highlights the role of international collaboration and organizations like the INCF in promoting the FAIR principles (Findable, Accessible, Interoperable, Reusable) for neuroscience data.
  • The authors emphasize that the lack of standards is a significant barrier to effectively sharing and reusing multimodal and multiscale neuroscience data.
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Neuromorphology is crucial to identifying neuronal subtypes and understanding learning. It is also implicated in neurological disease. However, standard morphological analysis focuses on macroscopic features such as branching frequency and connectivity between regions, and often neglects the internal geometry of neurons.

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Introduction: Childhood epilepsy is one of the most common neurological problems. The transferrin isoelectric focusing (TIEF) test is a screening test for congenital disorders of glycosylation (CDG). We identified abnormal TIEF test in children with epilepsy in our epilepsy genetics clinic.

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Research to discover clinically useful predictors of lithium response in patients with bipolar disorder has largely found them to be elusive. We demonstrate here that detailed neuroimaging may have the potential to fill this important gap in mood disorder therapeutics. Lithium treatment and bipolar disorder have both been shown to affect anatomy of the hippocampi and amygdalae but there is no consensus on the nature of their effects.

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Article Synopsis
  • The study investigates wound healing and fibrosis after a heart attack, emphasizing the need for better treatment options due to increasing MI incidence and survival rates.
  • A new hybrid model combines a logic-based differential equation (LDE) for fibroblast signaling with an agent-based model (ABM) to simulate the complex interactions of various cell types and environmental factors involved in cardiac fibrosis.
  • The model accurately predicts changes in fibrosis based on dynamic factors like cytokine levels and cell behavior, offering a framework for researching how specific molecular alterations affect heart tissue recovery.
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Background: The number of invasive group A (iGAS) infections due to hitherto extremely rare type strains has increased in several Canadian provinces since late 2015. We hypothesized that the cases recorded in the different provinces are linked and caused by strains of an clone that recently emerged and expanded explosively.

Methods: We analyzed both active and passive surveillance data for iGAS infections and used whole-genome sequencing to investigate the phylogenetic relationships of the strains responsible for these invasive infections country-wide.

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Adequacy of the current clinical definition of institutional influenza outbreaks is unclear. We performed a retrospective genome sequencing and epidemiologic analysis of institutional influenza outbreaks that occurred during the 2014-15 influenza season in Toronto, Canada. We sequenced the 2 earliest submitted samples positive for influenza A(H3N2) from each of 38 reported institutional outbreaks in long-term care facilities.

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Article Synopsis
  • The study focused on understanding how pili, which help group B Streptococcus (GBS) infect hosts, are structured and differ across various strains in Toronto, Canada.
  • Researchers analyzed 1332 GBS isolates using PCR and whole genome sequencing, discovering a new variant of a key pilin protein, named BP-1b, which showed only 63% similarity to the standard version of the protein.
  • The findings highlighted that this new variant appears frequently in specific GBS serotypes but is undetectable with common testing methods, suggesting that incorporating new PCR primers could improve the accuracy of identifying strains.
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The capsular polysaccharide (CPS) is the major virulence factor of the emerging zoonotic pathogen Streptococcus suis. CPS differences are also the basis for serological differentiation of the species into 29 serotypes. Serotypes 2 and 1/2, which possess identical gene content in their cps loci, express CPSs that differ only by substitution of galactose (Gal) by N-acetylgalactosamine (GalNAc) in the CPS side chain.

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Article Synopsis
  • Invasive group A Streptococcus (iGAS) disease is on the rise globally, particularly due to the emergence of a new variant called clade 3, which has unclear clinical characteristics.
  • A study conducted in Toronto over 14 years analyzed the genetic data of iGAS isolates, revealing a significant increase in clade 3 cases after its emergence, with overall disease incidence rising from 0.14 to 0.22 per 100,000 people.
  • Clade 3 strains are associated with more cases of arthritis but fewer instances of necrotizing fasciitis, and they predominantly affect younger and middle-aged individuals.
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Article Synopsis
  • Molecular typing through whole genome sequencing (WGS) was used to identify genetic relationships and predict antibiotic resistance in 240 invasive pneumococcal isolates from older adults in Ontario between 2009 and 2013.
  • The study found that 98.3% of isolates had their sequence type accurately determined, and WGS showed high sensitivity (95%) and specificity (100%) for predicting antibiotic resistance compared to standard testing.
  • Notably, the emerging non-vaccine serotype 22F was divided into two clades with distinct genetic features, and the findings suggest the need for enhanced molecular surveillance of pneumococcal strains in light of evolving antibiotic resistance.
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