Publications by authors named "C E Denby"

Background: Research on Alzheimer disease and related dementias is increasingly focused on preventative strategies to target modifiable risk factors (eg, exercise, diet, cognitive stimulation) to reduce risk of cognitive decline, though it remains difficult for adults to adopt and maintain these behaviors on their own.

Methods/participants: In this survey study, we examined knowledge about modifiable risk factors for dementia, engagement in healthy lifestyle behaviors, and associated barriers/facilitators in an Alzheimer disease prevention registry of at-risk, cognitively normal adults (n=135: 77% female; 96% Caucasian and non-Hispanic; mean age=66.1; 79% with family history of dementia; 46% with subjective memory decline).

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Purpose: Most techniques used for automatic segmentation of subcortical brain regions are developed for three-dimensional (3D) MR images. MRIs obtained in non-specialist hospitals may be non-isotropic and two-dimensional (2D). Automatic segmentation of 2D images may be challenging and represents a lost opportunity to perform quantitative image analysis.

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Despite an increasing number of drug treatment options for people with idiopathic generalized epilepsy (IGE), drug resistance remains a significant issue and the mechanisms underlying it remain poorly understood. Previous studies have largely focused on potential cellular or genetic explanations for drug resistance. However, epilepsy is understood to be a network disorder and there is a growing body of literature suggesting altered topology of large-scale resting networks in people with epilepsy compared with controls.

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It is well established that abnormal thalamocortical systems play an important role in the generation and maintenance of primary generalised seizures. However, it is currently unknown which thalamic nuclei and how nuclear-specific thalamocortical functional connectivity are differentially impacted in patients with medically refractory and non-refractory idiopathic generalised epilepsy (IGE). In the present study, we performed structural and resting-state functional magnetic resonance imaging (MRI) in patients with refractory and non-refractory IGE, segmented the thalamus into constituent nuclear regions using a probabilistic MRI segmentation method and determined thalamocortical functional connectivity using seed-to-voxel connectivity analyses.

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Idiopathic generalized epilepsy (IGE) is a collection of generalized nonlesional epileptic network disorders. Around 20-40% of patients with IGE are refractory to antiseizure medication, and mechanisms underlying refractoriness are poorly understood. Here, we characterize structural brain network alterations and determine whether network alterations differ between patients with refractory and nonrefractory IGE.

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