Generating Interactive 3D Spatial Visualizations of Microbial Abundance in Poultry Litter Using RStudio
M A Peckenschneider1, E G Olson1, J K Byrnes2
1Meat Science and Animal Biologics Discovery, Department of Animal and Dairy Sciences, University of Wisconsin-Madison.
Abstract:
Traditional assessments of poultry litter microbiology and physicochemical composition often rely on static tables or two-dimensional visualizations that may not capture the spatial heterogeneity within the pen environment. This protocol describes interactive three-dimensional (3D) visualizations that integrate microbial enumeration data and environmental parameters across a poultry pen. A grid-based layout was used to approximate pen sampling, and simulated datasets were first generated to demonstrate the workflow. The experimental dataset was used to evaluate spatial gradients relative to environmental features, including the water line, feeders, and pen entrance. Data were processed in RStudio using plotly to generate interactive 3D plots. Aerobic bacterial loads ranged from 5.9 to 8.6 log₁₀ CFU/g, with significantly higher abundance near the water line (P = 0.023) and lower counts at increasing distance from the feature. The resulting surface plots visually highlighted clustering of microbial populations around moisture-rich areas and demonstrated the utility of the framework for interpreting spatial patterns of microbial communities in poultry litter. Although further evaluation under commercial poultry conditions is needed, the current protocol provides a reproducible method for visualizing and analyzing spatial heterogeneity in poultry litter datasets.
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