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- Creators: School of Social and Behavioral Sciences
- Status: Published
We have seen the joy pets bring into people’s lives, and the sadness that follows the loss of them. Many pet owners view their pets as more than just animals: they are family. They offer a level of love and support similar to friends and family, despite not being human. Some pets are also trained as service animals to assist humans who struggle with diagnosed physical, mental, and other disabilities. However, emotional support animals appear to lie somewhere between pets and service animals, as there are rules and policies still developing around them. With more and more college students requesting to bring ESAs on campus, the question of their effectiveness has been raised. The aim of this honors thesis study is to examine the effectiveness of ESAs in alleviating mental health symptoms in college students. More specifically, I wanted to evaluate students who currently live on campus (or have lived on campus in the past). The first aim will be to determine whether non-pet owners versus ESA owners (and pet owners in general) show a difference in their stress levels. The second aim is to examine if owning a pet or ESA predicts stress levels differently between genders. The final aim of the study is to determine if degree of attachment to pets predicts differences in stress in the owners.
The relevance of depression in the clinical realm is well known, as it is one of the most common mental disorders in the United States. Clinical depression is the leading cause of disease for women worldwide. The sex difference in depression and anxiety has guided the research of not just recent studies but older studies as well, supporting the theory that gonadal hormones are associated with the mechanisms of emotional cognition. The scientific literature points towards a clear correlative relationship between gonadal hormones, especially estrogens, and emotion regulation. This thesis investigates the neural pathways that have been indicated to regulate mood and anxiety. Currently, the research points to the hypothalamic-pituitary-adrenal axis, which regulates the stress response through its ultimate secretion of cortisol through the adrenal cortex, and its modulated response when exposed to higher levels of estrogen. Another mechanism that has been investigated is the interaction of estrogen and the serotonergic system, which is noteworthy because the serotonergic system is known for its importance in mood regulation. However, it is important to note that the research seeking to determine the neurobiological underpinnings of estrogen and the serotonergic system is not expansive. Future research should focus on determining the direct relationship between cortisol hypersecretion and estrogens, the specific neurobiological effects of serotonergic receptor subtypes on the antidepressant actions of estrogens, and the simultaneous effects of the stress and serotonergic systems on depressive symptoms.
Veterans are approximately 30% more likely than non-veterans to suffer from severe hearing impairment. Tinnitus, or ringing in the ears, which is increasingly common among military service men and women, has been linked to significant cognitive and psychological impairment and can be worsened by the same sounds that trigger post-traumatic stress disorder (PTSD). In fact, tinnitus and PTSD often present as comorbidities, and recent studies suggest these two disorders may share a common neurological pathway. Additional studies are required to better understand the connection between hearing loss and impaired cognitive function such as that observed in with PTSD. Here, we use the fruit fly, Drosophila melanogaster, to explore the relationship between hearing loss and cognitive function. Negative geotaxis climbing assays and courtship behavior analysis were used to examine neurobehavioral changes induced by prolonged, intense auditory stimulation. Preliminary results suggest that exposure to loud noise for an extended period of time significantly affected Drosophila behavior, with males being more sensitive than females. Based on our results, there appears to be a potential connection between noise exposure and behavior, further suggesting that Drosophila could be an effective model to study the link between hearing loss and PTSD.