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Updated: Apr 14, 2026

Functional Neuroimaging Using Ultrasonic Blood-brain Barrier Disruption and Manganese-enhanced MRI
Published on: July 12, 2012
Effects of chronic manganese exposure on attention and working memory in non-human primates
J S Schneider1, C Williams1, M Ault1
1Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson University, Philadelphia, PA, United States.
Abstract:
Manganese (Mn) is essential for a variety of physiological processes, but at elevated levels, can be neurotoxic. While cognitive dysfunction has been recently appreciated to occur as a result of chronic Mn exposures, it is still unclear as to which cognitive domains are most susceptible to disruption by Mn exposure. We previously described early appearing Mn-induced changes in performance on a paired associate learning task in monkeys chronically exposed to Mn and suggested that performance of this task might be a sensitive tool for detecting cognitive dysfunction resulting from Mn exposure. As chronic Mn exposure has been suggested to be associated with attention, working memory and executive function deficits, the present study was conducted to assess the extent to which detrimental effects of chronic Mn exposure could be detected using tasks specifically designed to preferentially assess attention, working memory, and executive function. Six cynomolgus monkeys received Mn exposure over an approximate 12 month period and three served as control animals. All animals were trained to perform a self-ordered spatial search (SOSS) task and a five choice serial reaction time (5-CSRT) task. Deficits in performance of the SOSS task began to appear by the fourth month of Mn exposure but only became consistently significantly impaired beginning at the ninth month of Mn exposure. Performance on the 5-CSRT became significantly affected by the third month of Mn exposure. These data suggest that in addition to the paired associate learning task, cognitive processing speed (as measured by the 5-CSRT) may be a sensitive measure of Mn toxicity and that brain circuits involved in performance of the SOSS task may be somewhat less sensitive to disruption by chronic Mn exposure.
Insights
Chronic manganese (Mn) exposure causes neurotoxicity. Cognitive processing speed, measured by the five-choice serial reaction time (5-CSRT) task, is a sensitive indicator of Mn toxicity in monkeys.
Area of Science:
- Neuroscience
- Toxicology
- Cognitive Science
Background:
- Manganese (Mn) is essential but neurotoxic at high levels.
- Chronic Mn exposure is linked to cognitive deficits, but susceptible domains are unclear.
- Previous work identified paired associate learning as a sensitive measure.
Purpose of the Study:
- To assess Mn's impact on attention, working memory, and executive function.
- To evaluate the sensitivity of self-ordered spatial search (SOSS) and 5-choice serial reaction time (5-CSRT) tasks to Mn toxicity.
Main Methods:
- Six cynomolgus monkeys received chronic Mn exposure over 12 months; three served as controls.
- Animals performed SOSS and 5-CSRT tasks.
- Performance was monitored throughout the exposure period.
Main Results:
- SOSS task deficits appeared by month 4 and were significant by month 9.
- 5-CSRT task performance was significantly impaired by month 3.
- Cognitive processing speed (5-CSRT) showed earlier impairment than SOSS.
Conclusions:
- Cognitive processing speed (5-CSRT) is a sensitive measure of Mn neurotoxicity.
- Brain circuits for SOSS may be less sensitive to chronic Mn exposure than those for 5-CSRT.
- Both tasks contribute to understanding Mn-induced cognitive dysfunction.

