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MRI Overestimates Excitotoxic Amygdala Lesion Damage in Rhesus Monkeys
Benjamin M Basile1, Chloe L Karaskiewicz1, Emily C Fiuzat1
1Section on the Neurobiology of Learning and Memory, Laboratory of Neuropsychology, National Institute of Mental Health, National Institutes of Health (NIH)Bethesda, MD, United States.
Abstract:
Selective, fiber-sparing excitotoxic lesions are a state-of-the-art tool for determining the causal contributions of different brain areas to behavior. For nonhuman primates especially, it is advantageous to keep subjects with high-quality lesions alive and contributing to science for many years. However, this requires the ability to estimate lesion extent accurately. Previous research has shown that in vivo T2-weighted magnetic resonance imaging (MRI) accurately estimates damage following selective ibotenic acid lesions of the hippocampus. Here, we show that the same does not apply to lesions of the amygdala. Across 19 hemispheres from 13 rhesus monkeys, MRI assessment consistently overestimated amygdala damage as assessed by microscopic examination of Nissl-stained histological material. Two outliers suggested a linear relation for lower damage levels, and values of unintended amygdala damage from a previous study fell directly on that regression line, demonstrating that T2 hypersignal accurately predicts damage levels below 50%. For unintended damage, MRI estimates correlated with histological assessment for entorhinal cortex, perirhinal cortex and hippocampus, though MRI significantly overestimated the extent of that damage in all structures. Nevertheless, ibotenic acid injections routinely produced extensive intentional amygdala damage with minimal unintended damage to surrounding structures, validating the general success of the technique. The field will benefit from more research into in vivo lesion assessment techniques, and additional evaluation of the accuracy of MRI assessment in different brain areas. For now, in vivo MRI assessment of ibotenic acid lesions of the amygdala can be used to confirm successful injections, but MRI estimates of lesion extent should be interpreted with caution.
Insights
Magnetic resonance imaging (MRI) overestimates damage from ibotenic acid lesions in the amygdala in rhesus monkeys. While accurate for damage below 50%, MRI estimates require caution for assessing lesion extent in this brain region.
Area of Science:
- Neuroscience
- Primate Research
- Neuroimaging
Background:
- Selective excitotoxic lesions are crucial for understanding brain function in nonhuman primates.
- Accurate lesion assessment is vital for long-term studies, necessitating reliable imaging techniques.
- Previous studies confirmed T2-weighted MRI accuracy for hippocampal lesions but not amygdala lesions.
Purpose of the Study:
- To evaluate the accuracy of in vivo T2-weighted MRI for assessing ibotenic acid-induced lesions in the rhesus monkey amygdala.
- To compare MRI-based lesion estimations with histological assessments.
- To determine the reliability of MRI for quantifying damage in the amygdala and surrounding structures.
Main Methods:
- Selective, fiber-sparing excitotoxic lesions were induced using ibotenic acid in 13 rhesus monkeys (19 hemispheres).
- In vivo T2-weighted MRI was performed to estimate lesion extent.
- Histological analysis of Nissl-stained material was used as the gold standard for assessing actual lesion size.
- Correlation and regression analyses were used to compare MRI estimates with histological data.
Main Results:
- MRI consistently overestimated amygdala damage compared to histological examination.
- A linear relationship was observed, with T2 hypersignal accurately predicting amygdala damage levels below 50%.
- MRI also overestimated damage in the entorhinal cortex, perirhinal cortex, and hippocampus, though correlations were found for unintended damage.
Conclusions:
- In vivo T2-weighted MRI is not fully accurate for estimating the extent of ibotenic acid lesions in the rhesus monkey amygdala.
- While useful for confirming successful injection, MRI-based lesion size estimates for the amygdala should be interpreted cautiously.
- Further research into in vivo lesion assessment techniques across different brain areas is warranted.

