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Kelly A. Meiklejohn

Publications and source records attributed to Kelly A. Meiklejohn.

3 recordsLinked to original sources

From Genomes to Algorithms: Neural Network Applications for Palimpsest Detection in Medieval Manuscripts

Biocodicology, the study of biological information preserved in manuscripts, offers new opportunities to examine parchment as both a textual and biological artefact. This study applies non-destructive sampling to isolate and sequence mitochondrial genomes (mtGenomes) from a 14th-century manuscript, Ms. Codex 1629, which contains both single-use and palimpsested folios. We sought to evaluate whether palimpsest preparation, including chemical washing, compromised DNA integrity and whether computational methods could aid in identifying reused parchment. DNA sequencing revealed that both single-use and palimpsested parchments retained sufficient mtGenomes for analysis, with no significant differences in genome coverage or depth. To assess the potential of computational biology in manuscript studies, we implemented machine learning classifiers, including logistic regression and neural networks, to distinguish palimpsests from single-use folios. Models achieved high precision but exhibited reduced recall for the minority palimpsest class, reflecting dataset imbalance. While additional ancient mtGenome samples from palimpsest are required and further testing is needed, this study demonstrates how integrating molecular biology and neural networks highlights new approaches for palimpsest detection and underscores the evolving role of data science in biocodicology.

q-bio.GN

Descriptive and risk analysis of vehicle movements linked to porcine reproductive and respiratory syndrome and porcine epidemic diarrhea transmission in US commercial swine farms

Vehicle movements, including vehicle cabs and trailers, play a role in disseminating disease in swine production. However, there are many information gaps about vehicle movements patterns that increase the probability of disease transmission, which is crucial in developing better preventive strategies. In this study we described the movement pattern of vehicle cabs and trailers and identified risk factors for porcine reproductive and respiratory syndrome (PRRS) and porcine epidemic diarrhea (PED) farm's infectious status. We collected global positioning system (GPS) movement data from vehicle cabs and trailers for 18 months and basic information for 6621 farms in the U.S. For the vehicle movement data, we estimated 66 variables and evaluate their association with farms PRRS and PED status. Our univariate analysis showed that 56 variables were significant associated (p < 0.05) to PED and PRRS farm status. Within these variables, vehicle visit frequency and previous exposition to positive farms were the main risk factors for both diseases. Otherwise, increased vehicle cab and trailer loyalty for farm shipments and vehicle cleaning and disinfection events were protective factors. In the multivariate model, each additional weekly visit by a vehicle cab that had been exposed to a positive farm one day before the shipment was associated with a 234\% and 243\% increase in the odds of a farm testing PRRS- and PED-positive, respectively. Our analysis revealed that vehicle contact history play a crucial role in the transmission of PRRS and PED. These findings can provide insights to develop more target strategies aimed at reducing the transmission and outbreaks linked to vehicle movements in swine production.

q-bio.QM

Evaluation of the infectivity of porcine epidemic diarrhea virus on swine vehicles after cleaning and disinfection

Biosecurity measures enforced by the swine industry are in place not only to protect a single farm, but also the vast community of interconnected swine farms. Vehicles play a role in disease movement and given that most pigs move throughout the system multiple times during their lives, vehicle cleanliness is key to preventing disease spread. The objective of this study was to determine the infectivity of PEDV on various swine industry vehicles and evaluate the associated cleaning and disinfection (C&D) methods. Viral swabs were collected from various locations on swine industry vehicles and were used to make the bioassay inoculums which were given to a total of 54 piglets enrolled across two bioassays: a pilot bioassay to ensure the samples were collected and stored in a way that preserved the virus, and a full bioassay testing samples collected from vehicles post C&D. The piglets enrolled in the pilot bioassay tested positive for PEDV within 48 hours, confirming the methods were appropriate and capable of infecting piglets with PEDV. From the full bioassay, the piglets inoculated with samples collected from inside the pigs-to-market vehicle cabins experienced severe diarrhea and tested positive for PEDV. No other experimental treatment group experienced persistent clinical symptoms of PEDV in the full bioassay, suggesting the concentration of infectious PEDV remaining after C&D was not enough to cause severe PED in healthy piglets. However, the cleaning efficacy varied greatly across vehicle types, suggesting that producers should continue to uphold and improve vehicle C&D.

q-bio.OT