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A Mechanical Analysis of Suspensory Locomotion in Primates and Other MammalsGranatosky, Michael Constantine January 2016 (has links)
<p>For primates, and other arboreal mammals, adopting suspensory locomotion represents one of the strategies an animal can use to prevent toppling off a thin support during arboreal movement and foraging. While numerous studies have reported the incidence of suspensory locomotion in a broad phylogenetic sample of mammals, little research has explored what mechanical transitions must occur in order for an animal to successfully adopt suspensory locomotion. Additionally, many primate species are capable of adopting a highly specialized form of suspensory locomotion referred to as arm-swinging, but few scenarios have been posited to explain how arm-swinging initially evolved. This study takes a comparative experimental approach to explore the mechanics of below branch quadrupedal locomotion in primates and other mammals to determine whether above and below branch quadrupedal locomotion represent neuromuscular mirrors of each other, and whether the patterns below branch quadrupedal locomotion are similar across taxa. Also, this study explores whether the nature of the flexible coupling between the forelimb and hindlimb observed in primates is a uniquely primate feature, and investigates the possibility that this mechanism could be responsible for the evolution of arm-swinging. </p><p> To address these research goals, kinetic, kinematic, and spatiotemporal gait variables were collected from five species of primate (Cebus capucinus, Daubentonia madagascariensis, Lemur catta, Propithecus coquereli, and Varecia variegata) walking quadrupedally above and below branches. Data from these primate species were compared to data collected from three species of non-primate mammals (Choloepus didactylus, Pteropus vampyrus, and Desmodus rotundus) and to three species of arm-swinging primate (Hylobates moloch, Ateles fusciceps, and Pygathrix nemaeus) to determine how varying forms of suspensory locomotion relate to each other and across taxa. </p><p> From the data collected in this study it is evident the specialized gait characteristics present during above branch quadrupedal locomotion in primates are not observed when walking below branches. Instead, gait mechanics closely replicate the characteristic walking patterns of non-primate mammals, with the exception that primates demonstrate an altered limb loading pattern during below branch quadrupedal locomotion, in which the forelimb becomes the primary propulsive and weight-bearing limb; a pattern similar to what is observed during arm-swinging. It is likely that below branch quadrupedal locomotion represents a “mechanical release” from the challenges of moving on top of thin arboreal supports. Additionally, it is possible, that arm-swinging could have evolved from an anatomically-generalized arboreal primate that began to forage and locomote below branches. During these suspensory bouts, weight would have been shifted away from the hindlimbs towards forelimbs, and as the frequency of these boats increased the reliance of the forelimb as the sole form of weight support would have also increased. This form of functional decoupling may have released the hindlimbs from their weight-bearing role during suspensory locomotion, and eventually arm-swinging would have replaced below branch quadrupedal locomotion as the primary mode of suspensory locomotion observed in some primate species. This study provides the first experimental evidence supporting the hypothetical link between below branch quadrupedal locomotion and arm-swinging in primates.</p> / Dissertation
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Visualizing discourses and governance of human embryonic stem cell research in South Korea (in comparison to the UK)Kim, Leo Dhohoon January 2016 (has links)
This thesis investigates how the discourses and governance of human embryonic stem cell (hESC) research operated in South Korea. Comparing South Korea to the UK in three fields (government, newspapers, and public responses) and reflecting scientific misconduct in the South Korean scientists' community, the study tries to identify hidden variables that influenced the national trajectory. To capture dynamic yet underrepresented national and cultural characteristics, the author has analysed microscopic interactions including actors' utterances, media framing, human relations and strategies. By using the methodology to pursue sociological approaches with semantic and social network analysis, concepts usually inferred and narrated by the researcher gain a visual and measurable representation in terms of Actor-Networks. The study concludes that the failure to institutionalise a sustainably cooperative research environment and (bio)ethical regulation in South Korea is an outcome of the lack of reflexive social discourse and deliberative governance. The national characteristics mainly derived from the subdued status of experts, scientists, in the government and the predominant media framing to represent life science as a mere tool to economic development. More crucially, people in general accepted the economy-oriented discourse. From the outcome of the semantic network analysis, it turns out that the public attitude was mainly constructed from people's limited objective and desire to utilise science to pursue social status and economic development. South Korean people largely disregarded the possible threat of hESC research to women's bodies that was related to human rights. A new scientific leadership should recognise this culturally embedded atmosphere and more effectively mediate government, mass media, lay public and scientific community by reconstituting expert role, critical media framing of science, and broader deliberation on the social function of scientific knowledge.
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Automating the Experimental LaboratoryKulkarni, Chaitanya Krishnaji January 2021 (has links)
No description available.
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Impacts of Water Warming on the Physiology and Life-History of a Tropical Freshwater FishBrodnik, Reed Michael 13 August 2015 (has links)
No description available.
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