MRI is described as a non-destructive technology for spatio-temporal in situ quantification of dynamic root-soil interfaces.
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MRI
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Dynamic root-soil interfaces can be spatio-temporally quantified in situ using non-destructive technologies such as X-ray computed tomography and MRI, which can detect developmental plasticity masked by destructive sampling.
We focus on studies that have combined neuromodulation with neuroimaging such as PET and MRI as these measures provide detailed information about the distributed networks that are modulated
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X-ray computed tomography and MRI can non-destructively quantify dynamic root-soil interfaces in situ and detect developmental plasticity masked by destructive sampling.
Combining neuromodulation with PET and MRI provides detailed information about distributed networks modulated by stimulation and can reveal mechanisms of action.
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We focus on studies that have combined neuromodulation with neuroimaging such as PET and MRI as these measures provide detailed information about the distributed networks that are modulated and thus insight into both the mechanisms of action of neuromodulation but also potentially the basis of psychiatric disorders.
Combining neuromodulation with neuroimaging is valuable for refining targeted neuromodulation therapies for psychiatric disorders.
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Ultimately, these studies highlight the value of combining neuromodulation with neuroimaging to reveal the mechanisms through which these treatments influence the brain, knowledge vital for refining targeted neuromodulation therapies for psychiatric disorders.