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Psychological, neuropsychological, and electrocortical effects of mixed mold exposure
B Robert Crago1, Michael R Gray, Lonnie A Nelson
1Neurobehavioral Health Services, Tucson, Arizona 85712, USA. bcbrain1@msn.com
Abstract:
The authors assessed the psychological, neuropsychological, and electrocortical effects of human exposure to mixed colonies of toxigenic molds. Patients (N = 182) with confirmed mold-exposure history completed clinical interviews, a symptom checklist (SCL-90-R), limited neuropsychological testing, quantitative electroencephalogram (QEEG) with neurometric analysis, and measures of mold exposure. Patients reported high levels of physical, cognitive, and emotional symptoms. Ratings on the SCL-90-R were "moderate" to "severe," with a factor reflecting situational depression accounting for most of the variance. Most of the patients were found to suffer from acute stress, adjustment disorder, or post-traumatic stress. Differential diagnosis confirmed an etiology of a combination of external stressors, along with organic metabolically based dysregulation of emotions and decreased cognitive functioning as a result of toxic or metabolic encephalopathy. Measures of toxic mold exposure predicted QEEG measures and neuropsychological test performance. QEEG results included narrowed frequency bands and increased power in the alpha and theta bands in the frontal areas of the cortex. These findings indicated a hypoactivation of the frontal cortex, possibly due to brainstem involvement and insufficient excitatory input from the reticular activating system. Neuropsychological testing revealed impairments similar to mild traumatic brain injury. In comparison with premorbid estimates of intelligence, findings of impaired functioning on multiple cognitive tasks predominated. A dose-response relationship between measures of mold exposure and abnormal neuropsychological test results and QEEG measures suggested that toxic mold causes significant problems in exposed individuals. Study limitations included lack of a comparison group, patient selection bias, and incomplete data sets that did not allow for comparisons among variables.
Insights
Exposure to toxic mold significantly impacts mental health and cognitive function. Mold exposure correlates with psychological distress, impaired brain activity (quantitative electroencephalogram), and cognitive deficits.
Area of Science:
- Environmental Health
- Neuroscience
- Psychology
Background:
- Toxigenic molds are increasingly recognized as environmental health hazards.
- Human exposure can lead to a range of adverse health effects.
- Understanding the specific psychological and neurological impacts is crucial.
Purpose of the Study:
- To assess the psychological, neuropsychological, and electrocortical effects of exposure to mixed colonies of toxigenic molds.
- To investigate the relationship between mold exposure levels and observed health outcomes.
Main Methods:
- 182 patients with confirmed mold exposure underwent clinical interviews, symptom checklists (SCL-90-R), neuropsychological testing, and quantitative electroencephalogram (QEEG).
- Mold exposure levels were quantitatively measured.
- Neurometric analysis was applied to QEEG data.
Main Results:
- Patients reported moderate to severe physical, cognitive, and emotional symptoms, often linked to stress and adjustment disorders.
- Mold exposure measures predicted abnormal QEEG findings (frontal hypoactivation) and neuropsychological impairments.
- Impairments were consistent with mild traumatic brain injury, showing decreased cognitive functioning.
Conclusions:
- Toxic mold exposure is associated with significant psychological distress and neurological dysfunction.
- A dose-response relationship suggests toxic mold directly contributes to encephalopathy and cognitive deficits.
- Findings indicate potential brainstem involvement and reduced frontal cortical activity due to mold toxins.

