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Full-Text Articles in Medicine and Health Sciences

An Improved Murine Femur Fracture Device For Bone Healing Studies, Joseph Marturano, Benjamin Cleveland, Melissa Bryne, Shannon O'Connell, John Wixted, Kristen Billiar Dec 2015

An Improved Murine Femur Fracture Device For Bone Healing Studies, Joseph Marturano, Benjamin Cleveland, Melissa Bryne, Shannon O'Connell, John Wixted, Kristen Billiar

Kristen L. Billiar

Murine models are commonly used to investigate bone healing and test new treatments before human trials. Our objective was to design an improved murine femur fracture device and determine optimal mass and velocity settings for maximal likelihood of transverse fracture. Fracture reproducibility was maximized using an adjustable kinetic energy level, a novel mouse positioning system and an electromagnet striker release assembly. Sixty wild-type mice of 8-12-week-old male and female with a weight of 26.4+/-6.1g were subjected to an experimental postmortem fracture in the left and right femur (n=120) using variable kinetic energy inputs. A best-fit prediction equation for transverse fracture …


Locomotor Adaptation Is Influenced By The Interaction Between Perturbation And Baseline Asymmetry After Stroke., Christine M. Tyrell, Erin Helm, Darcy S. Reisman Aug 2015

Locomotor Adaptation Is Influenced By The Interaction Between Perturbation And Baseline Asymmetry After Stroke., Christine M. Tyrell, Erin Helm, Darcy S. Reisman

Department of Physical Therapy Faculty Papers

Stroke survivors without cerebellar involvement retain the ability to adapt to the split-belt treadmill; however it has been suggested that their rate of adaptation may be slowed compared to those who are neurologically intact. Depending on limb placement, the split-belt treadmill can be configured to either exaggerate baseline asymmetry, or reduce it, which may affect the behavior of adaptation or de-adaptation. The objectives of this study were to characterize the rate and magnitude of locomotor (de)adaptation in chronic stroke survivors compared to healthy matched subjects, and to evaluate whether exaggeration or reduction of baseline asymmetry impact the responses. Seventeen stroke …


A Randomized Controlled Trial Of Exercise In Spinal And Bulbar Muscular Atrophy., Joseph A Shrader, Ilona Kats, Angela Kokkinis, Cris Zampieri, Ellen Levy, Galen O Joe, Joshua G. Woolstenhulme, Bart E Drinkard, Michaele R Smith, Willie Ching, Laboni Ghosh, Derrick Fox, Sungyoung Auh, Alice B Schindler, Kenneth H Fischbeck, Christopher Grunseich Jul 2015

A Randomized Controlled Trial Of Exercise In Spinal And Bulbar Muscular Atrophy., Joseph A Shrader, Ilona Kats, Angela Kokkinis, Cris Zampieri, Ellen Levy, Galen O Joe, Joshua G. Woolstenhulme, Bart E Drinkard, Michaele R Smith, Willie Ching, Laboni Ghosh, Derrick Fox, Sungyoung Auh, Alice B Schindler, Kenneth H Fischbeck, Christopher Grunseich

Physical Therapy and Health Care Sciences Faculty Publications

OBJECTIVE: To determine the safety and efficacy of a home-based functional exercise program in spinal and bulbar muscular atrophy (SBMA).

METHODS: Subjects were randomly assigned to participate in 12 weeks of either functional exercises (intervention) or a stretching program (control) at the National Institutes of Health in Bethesda, MD. A total of 54 subjects enrolled, and 50 completed the study with 24 in the functional exercise group and 26 in the stretching control group. The primary outcome measure was the Adult Myopathy Assessment Tool (AMAT) total score, and secondary measures included total activity by accelerometry, muscle strength, balance, timed up …


Mitochondria-Associated Micrornas In Rat Hippocampus Following Traumatic Brain Injury, Wang-Xia Wang, Nishant P. Visavadiya, Jignesh D. Pandya, Peter T. Nelson, Patrick G. Sullivan, Joe E. Springer Mar 2015

Mitochondria-Associated Micrornas In Rat Hippocampus Following Traumatic Brain Injury, Wang-Xia Wang, Nishant P. Visavadiya, Jignesh D. Pandya, Peter T. Nelson, Patrick G. Sullivan, Joe E. Springer

Sanders-Brown Center on Aging Faculty Publications

Traumatic brain injury (TBI) is a major cause of death and disability. However, the molecular events contributing to the pathogenesis are not well understood. Mitochondria serve as the powerhouse of cells, respond to cellular demands and stressors, and play an essential role in cell signaling, differentiation, and survival. There is clear evidence of compromised mitochondrial function following TBI; however, the underlying mechanisms and consequences are not clear. MicroRNAs (miRNAs) are small non-coding RNA molecules that regulate gene expression post-transcriptionally, and function as important mediators of neuronal development, synaptic plasticity, and neurodegeneration. Several miRNAs show altered expression following TBI; however, the …


The Effect Of Multidisciplinary Rehabilitation On Brain Structure And Cognition In Huntington's Disease: An Exploratory Study, Travis M. Cruickshank, Jennifer A. Thompson, Juan F. Dominguez D, Alvaro P. Reyes, Mike Bynevelt, Nellie Georgiou-Karistianis, Roger A. Barker, Mel R. Ziman Jan 2015

The Effect Of Multidisciplinary Rehabilitation On Brain Structure And Cognition In Huntington's Disease: An Exploratory Study, Travis M. Cruickshank, Jennifer A. Thompson, Juan F. Dominguez D, Alvaro P. Reyes, Mike Bynevelt, Nellie Georgiou-Karistianis, Roger A. Barker, Mel R. Ziman

Research outputs 2014 to 2021

Background: There is a wealth of evidence detailing gray matter degeneration and loss of cognitive function over time in individuals with Huntington's disease (HD). Efforts to attenuate disease-related brain and cognitive changes have been unsuccessful to date. Multidisciplinary rehabilitation, comprising motor and cognitive intervention, has been shown to positively impact on functional capacity, depression, quality of life and some aspects of cognition in individuals with HD. This exploratory study aimed to evaluate, for the first time, whether multidisciplinary rehabilitation can slow further deterioration of disease-related brain changes and related cognitive deficits in individuals with manifest HD. Methods: Fifteen participants who …


The Manual Ability Classification System: A Scoping Review, Deepa Jeevanantham, Emily Dyszuk, Doreen Bartlett Jan 2015

The Manual Ability Classification System: A Scoping Review, Deepa Jeevanantham, Emily Dyszuk, Doreen Bartlett

Physical Therapy Publications

PURPOSE: To examine the use of the Manual Ability Classification System (MACS) and to identify gaps in the literature by conducting a thorough search of existing publications from 2006 to March 2013.

METHODS: An extensive literature search included 15 databases, using the search terms "Manual Ability Classification System" or "MACS" to retrieve relevant abstracts.

RESULTS: A total of 161 articles were identified for final inclusion. The review identified literature that supports the reliability, validity, and stability of the MACS.

CONCLUSIONS: The MACS could be considered as a standard classification for children with cerebral palsy on the basis of manual abilities. …