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Updated: Aug 16, 2026

Morris Water Maze Test: Optimization for Mouse Strain and Testing Environment
Published on: June 22, 2015
Bacterial endotoxin-induced behavioral alterations in two variations of the Morris water maze
Nathan L Sparkman1, Rachel A Kohman, Vincent J Scott
1Department of Psychology, Texas Christian University, Fort Worth, 76129, USA.
Abstract:
Several studies report that lipopolysaccharide (LPS) or interleukin-1beta (IL-1beta) may affect behavior in a variety of learning tasks, including the Morris water maze (MWM), though the nature of these effects varies with testing parameters. The present study used C57BL/6J mice to evaluate the effect of a single intraperitoneal LPS injection 4 h prior to day 1 of testing, LPS before each day of testing, or saline prior to each test day, on performance in two variations of the MWM. In the first experiment, one that utilized a standard hidden platform, LPS clearly affected performance, as shown by increased latencies and greatly decreased swimming speeds. However, a modest effect on distance swam was only present during later test days. These data show a clear deficit in performance (driven by decreased swim speed), and some evidence for learning decrements on later test days. To explore to what degree the effects of LPS in the water maze were the result of alterations in performance factors such as motor behavior, a second experiment was conducted in which a highly visible jet-black platform was utilized. Despite eliminating the need for spatial learning, mice administered LPS still exhibited significantly increased latency scores and decreased swim speed. However, there was no difference between treatment groups in distance swam. These results reinforce the idea that, even when present, potential learning effects of LPS may sometimes be difficult to untangle from performance effects unrelated to learning, and underscore the need for utilizing behavioral tests that offer suitable control for LPS-induced performance effects.
Insights
Lipopolysaccharide (LPS) impairs mouse performance in the Morris water maze by decreasing swim speed, complicating the assessment of learning deficits. Careful control of performance factors is crucial when studying LPS effects.
Area of Science:
- Neuroscience
- Behavioral Pharmacology
Background:
- Lipopolysaccharide (LPS) and interleukin-1beta (IL-1beta) are known to influence behavior in learning tasks.
- The Morris water maze (MWM) is a common tool for assessing spatial learning and memory.
- Effects of LPS on MWM performance can vary significantly depending on experimental parameters.
Purpose of the Study:
- To investigate the impact of lipopolysaccharide (LPS) on mouse performance in two variations of the Morris water maze (MWM).
- To differentiate between LPS-induced learning deficits and performance impairments (e.g., motor behavior).
Main Methods:
- C57BL/6J mice received either a single intraperitoneal LPS injection or saline.
- Performance was assessed in two MWM tasks: one with a hidden platform and another with a visible platform.
- Key metrics included latency, swim speed, and distance swam.
Main Results:
- LPS administration led to increased latencies and significantly decreased swim speeds in both MWM variations.
- A modest effect on distance swam was observed only on later test days in the hidden platform task.
- No significant difference in distance swam was found between groups in the visible platform task, despite altered latency and speed.
Conclusions:
- LPS significantly impairs performance in the MWM, primarily through reduced swim speed, which confounds the assessment of learning.
- Distinguishing learning deficits from performance alterations in LPS studies requires careful consideration of behavioral control measures.
- Future research should employ behavioral tests that adequately control for LPS-induced performance effects to accurately evaluate learning.

