Publications by authors named "M J McMahon"

Puberty is a particularly vulnerable time for individuals with autism spectrum disorder (ASD) during which baseline challenges are exacerbated, functioning often deteriorates, and additional barriers emerge. Specific concerns include increased vulnerability, decreased safety, and increased mood and behavioral disturbances. Youth with ASD need guidance and explicit instruction/skill development on topics such as hygiene/self-care, appropriate sexual activity, and menstruation management.

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Discovered more than four decades ago, nonsense-mediated mRNA decay (NMD) plays a fundamental role in the regulation of gene expression and is a major contributor to numerous diseases. With advanced technologies, several novel approaches aim to directly circumvent the effects of disease-causing frameshift and nonsense mutations. Additional therapeutics aim to globally dampen the NMD pathway in diseases associated with pathway hyperactivation, one example being Fragile X Syndrome.

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Introduction: People with intellectual disabilities experience health inequalities at a greater level than their non-disabled peers. Notably, while general health status is starting to receive some attention, the reproductive health and rights of people with intellectual disabilities continue to be understudied from a policy and research perspective. The objective of this review is to elucidate the complex interplay between individual, social and structural factors that influence reproductive health outcomes for this population.

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The vision of the ASPEN Rhoads Research Foundation is to promote innovation and research discovery to improve nutrition care and health. The Foundation was launched in 1993, incorporated in 2002, and established as a nonprofit 501(c)(3) organization in 2007. On the occasion of American Society for Parenteral and Enteral Nutrition (ASPEN)'s 50th anniversary, this article examines the creation of the Foundation, the state of clinical nutrition research funding, the Foundation's philanthropic mission, and the return on investment of Foundation grant support.

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Background: Glioblastoma is the most aggressive malignant brain tumor with poor survival due to its invasive nature driven by cell migration, with unclear linkage to transcriptomic information. The aim of this study was to develop a physics-based framework connecting to transcriptomics to predict patient-specific glioblastoma cell migration.

Methods And Results: We applied a physics-based motor-clutch model, a cell migration simulator (CMS), to parameterize the migration of glioblastoma cells and define physical biomarkers on a patient-by-patient basis.

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