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When discussing gay literature in the French, contemporary sphere, one of the most up
and coming and prominent authors is Édouard Louis. His works’ focus on the realism and
violence of the working class offers a critical and necessary perspective of the gay experience in
modern-day France. While recent in their creation, Louis’

When discussing gay literature in the French, contemporary sphere, one of the most up
and coming and prominent authors is Édouard Louis. His works’ focus on the realism and
violence of the working class offers a critical and necessary perspective of the gay experience in
modern-day France. While recent in their creation, Louis’ works follow a connecting thread that
is inseparable from other autofiction novels that have a narrator with same sex attractions such as
Annie Ernaux’s Ce qu’ils disent or rien and Didier Eribon’s Retour à Reims. Often commonly
discussed as French LGBT literature, these autofictional works that extend from Gide to Eribon
to now Louis demonstrate how the proposed societal dualities, limitations, and hierarchies
described by philosophers like Michel Foucault and Judith Butler affect homosexual
performativity. Louis’ first novel En finir avec Eddy Bellegueule, published on January 2, 2014,
offers another illustration of this analysis. It specifically describes the metaphysical
(metaphysical being the relationship between the outer stimuli and internal perspective) effects
and constraints of current poverty on homosexual performativity. By analyzing En finir avec
Eddy Bellegueule through this theoretical framework of power and poverty, this thesis adds a
theoretical and intersectional nuance to the narrative voice that current literature focusing on the
novel’s landscape mentions but does not reflect on. I argue that it is important to attach an
autofictional timeline that is necessary to promote and apply future ontological doctrines to this
genre.

ContributorsYanez, Mariano (Author) / Canovas, Frédéric (Thesis director) / Agruss, David (Committee member) / School of International Letters and Cultures (Contributor, Contributor, Contributor, Contributor) / Dean, The College of Liberal Arts and Sciences (Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
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Description
The generation of walking motion is one of the most vital functions of the human body because it allows us to be mobile in our environment. Unfortunately, numerous individuals suffer from gait impairment as a result of debilitating conditions like stroke, resulting in a serious loss of mobility. Our understanding

The generation of walking motion is one of the most vital functions of the human body because it allows us to be mobile in our environment. Unfortunately, numerous individuals suffer from gait impairment as a result of debilitating conditions like stroke, resulting in a serious loss of mobility. Our understanding of human gait is limited by the amount of research we conduct in relation to human walking mechanisms and their characteristics. In order to better understand these characteristics and the systems involved in the generation of human gait, it is necessary to increase the depth and range of research pertaining to walking motion. Specifically, there has been a lack of investigation into a particular area of human gait research that could potentially yield interesting conclusions about gait rehabilitation, which is the effect of surface stiffness on human gait. In order to investigate this idea, a number of studies have been conducted using experimental devices that focus on changing surface stiffness; however, these systems lack certain functionality that would be useful in an experimental scenario. To solve this problem and to investigate the effect of surface stiffness further, a system has been developed called the Variable Stiffness Treadmill system (VST). This treadmill system is a unique investigative tool that allows for the active control of surface stiffness. What is novel about this system is its ability to change the stiffness of the surface quickly, accurately, during the gait cycle, and throughout a large range of possible stiffness values. This type of functionality in an experimental system has never been implemented and constitutes a tremendous opportunity for valuable gait research in regard to the influence of surface stiffness. In this work, the design, development, and implementation of the Variable Stiffness Treadmill system is presented and discussed along with preliminary experimentation. The results from characterization testing demonstrate highly accurate stiffness control and excellent response characteristics for specific configurations. Initial indications from human experimental trials in relation to quantifiable effects from surface stiffness variation using the Variable Stiffness Treadmill system are encouraging.
ContributorsBarkan, Andrew Robert (Author) / Artemiadis, Panagiotis (Thesis director) / Santello, Marco (Committee member) / Barrett, The Honors College (Contributor) / Mechanical and Aerospace Engineering Program (Contributor)
Created2015-05