Related Experiment Video
Updated: Feb 12, 2026

Visualizing Bacterial Motility Based on a Color Reaction
Published on: February 15, 2022
Evaluation of bacterial run and tumble motility parameters through trajectory analysis
Xiaomeng Liang1, Nanxi Lu2, Lin-Ching Chang3
1Civil Engineering, The Catholic University of America, Washington, DC, USA.
Abstract:
In this paper, a method for extraction of the behavior parameters of bacterial migration based on the run and tumble conceptual model is described. The methodology is applied to the microscopic images representing the motile movement of flagellated Azotobacter vinelandii. The bacterial cells are considered to change direction during both runs and tumbles as is evident from the movement trajectories. An unsupervised cluster analysis was performed to fractionate each bacterial trajectory into run and tumble segments, and then the distribution of parameters for each mode were extracted by fitting mathematical distributions best representing the data. A Gaussian copula was used to model the autocorrelation in swimming velocity. For both run and tumble modes, Gamma distribution was found to fit the marginal velocity best, and Logistic distribution was found to represent better the deviation angle than other distributions considered. For the transition rate distribution, log-logistic distribution and log-normal distribution, respectively, was found to do a better job than the traditionally agreed exponential distribution. A model was then developed to mimic the motility behavior of bacteria at the presence of flow. The model was applied to evaluate its ability to describe observed patterns of bacterial deposition on surfaces in a micro-model experiment with an approach velocity of 200 μm/s. It was found that the model can qualitatively reproduce the attachment results of the micro-model setting.
Related Concept Videos
Orthogonal Trajectories
Noncompartmental Analysis: Miscellaneous Pharmacokinetic Parameters
One key aspect of the noncompartmental approach is determining a drug's total clearance. This can be done by dividing the drug dose by the area under the concentration-time curve from zero to infinity. The area under the concentration-time curve represents the drug's...
Wave Parameters
Gastric Motility
Peristaltic Waves and Chyme Formation
Upon food entry, the stomach initiates...
Cell Motility through Blebbing
Blebbing Through the Matrix
In multicellular...
Microtubules in Cell Motility

