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Biology subjects

Bush, T. R.

Publications and source records attributed to Bush, T. R..

2 recordsLinked to original sources

Evidence of Gait Impairment After mTBI in an Adolescent Pig Model

This study investigates the effects of mild traumatic brain injury (mTBI) on gait in Yucatan minipigs, a relevant animal model for assessing balance impairments after TBI. Retro-reflective markers were placed on different anatomical locations on the pig, and eight motion capture cameras were set up along the sides of the pig walking path to capture natural gait data. Pigs were tested both before and after induced head injury, allowing for direct comparison of gait alterations. Our findings reveal significant impairments, including reduced shoulder flexibility, altered head movement, and compensatory stabilization strategies, such as increased vertical nodding. These observations suggest that, like human mTBI patients, pigs exhibit balance deficits and modified movement patterns. The results demonstrate the utility of the adolescent pig model in studying mTBI-related balance disturbances, providing valuable insights into its neurological and biomechanical consequences. This research lays the groundwork for future studies focused on developing diagnostic and therapeutic strategies for mTBI-induced gait impairments.

bioengineering↗

Multimodal characterization of Yucatan minipig behavior and physiology through maturation

Brain injuries that are induced by external forces are particularly challenging to model experimentally. In recent decades, the domestic pig has been gaining popularity as a highly relevant animal model to address the pathophysiological mechanisms and the biomechanics associated with head injuries. Understanding cognitive, motor, and sensory aspects of pig behavior throughout development is crucial for evaluating cognitive and motor deficits after injury. We have developed a comprehensive battery of tests to characterize the behavior and physiological function of the Yucatan minipig throughout maturation. Behavioral testing included assessments of learning and memory, executive functions, circadian rhythms, gait analysis, and level of motor activity. We applied traditional behavioral apparatus and analysis methods, as well as state-of-the-art sensor technologies to report on motion and activity, and artificial intelligent approaches to analyze behavior. We studied pigs from 16 weeks old through sexual maturity at 35 weeks old. The results show multidimensional characterization of minipig behavior, and how it develops and changes with age. This animal model may capitulate the biomechanical consideration and phenotype of head injuries in the developing brain and can drive forward the field of understanding pathophysiological mechanisms and developing new therapies to accelerate recovery in children who have suffered head trauma.

animal behavior and cognition↗