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2 result(s) for "Vanier, Luc"
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Dance and the Alexander technique : exploring the missing link
\"In Dance and the Alexander Technique, Rebecca Nettl-Fiol and Luc Vanier utilize their ten years of research on developmental movement and dance training to explore the relationship between a specific movement technique and the basic principles of support and coordination. The Alexander Technique, developed in the early twentieth century by F. M. Alexander, can be used to enhance dexterity in all types of activities, from everyday actions as mundane as tooth-brushing to highly demanding dance movements. Applying the tenets of this technique through the lens of a specific subset of principles called the Dart Procedures, the authors offer a unique approach for using the Alexander Technique in dance and other activities. The principles of this technique are used by people in all walks of life and have proven to be effective for enhancing performance and improving overall health and well-being. Amply illustrated and supplemented with a DVD that demonstrates the concepts and applications of the Alexander Technique, this book will be highly instrumental for dancers, teachers of dance, and anyone interested in giving everyday movements more efficiency, dexterity, and elegance\"--Provided by publisher.
Vascular and blood-brain barrier-related changes underlie stress responses and resilience in female mice and depression in human tissue
Prevalence, symptoms, and treatment of depression suggest that major depressive disorders (MDD) present sex differences. Social stress-induced neurovascular pathology is associated with depressive symptoms in male mice; however, this association is unclear in females. Here, we report that chronic social and subchronic variable stress promotes blood-brain barrier (BBB) alterations in mood-related brain regions of female mice. Targeted disruption of the BBB in the female prefrontal cortex (PFC) induces anxiety- and depression-like behaviours. By comparing the endothelium cell-specific transcriptomic profiling of the mouse male and female PFC, we identify several pathways and genes involved in maladaptive stress responses and resilience to stress. Furthermore, we confirm that the BBB in the PFC of stressed female mice is leaky. Then, we identify circulating vascular biomarkers of chronic stress, such as soluble E-selectin. Similar changes in circulating soluble E-selectin, BBB gene expression and morphology can be found in blood serum and postmortem brain samples from women diagnosed with MDD. Altogether, we propose that BBB dysfunction plays an important role in modulating stress responses in female mice and possibly MDD. The vascular, cellular and molecular changes underlying sex differences in mood disorders are unclear. Here, the authors show that blood-brain barrier dysfunction modulates anxiety- and depressive-like behaviors in female mice and endothelium-specific changes associated with maladaptive responses compared to resilience to stress.