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Published on: January 15, 2010
White Matter Microstructural Underpinnings of Mild Behavioral Impairment in Parkinson's Disease
Oury Monchi1,2,3,4, Gabriel D Pinilla-Monsalve1,2, Hannes Almgren3,4
1Centre de recherche de l'Institut universitaire de gériatrie de Montréal, Montreal, Quebec, Canada.
Background:
Patients with Parkinson's disease (PD) experience changes in behavior, personality, and cognition that can manifest even in the initial stages of the disease. Previous studies have suggested that mild behavioral impairment (MBI) should be considered an early marker of cognitive decline. However, the precise neurostructural underpinnings of MBI in early- to mid-stage PD remain poorly understood.
Objective:
The aim was to explore the changes in white matter microstructure linked to MBI and mild cognitive impairment (MCI) in early- to mid-stage PD using diffusion magnetic resonance imaging (dMRI).
Methods:
A total of 91 PD patients and 36 healthy participants were recruited and underwent anatomical MRI and dMRI, a comprehensive neuropsychological battery, and the completion of the Mild Behavioral Impairment-Checklist. Metrics of white matter integrity included tissue fractional anisotropy (FAt) and radial diffusivity (RDt), free water (FW), and fixel-based apparent fiber density (AFD).
Results:
The connection between the left amygdala and the putamen was disrupted when comparing PD patients with MBI (PD-MBI) to PD-non-MBI, as evidenced by increased RDt (η2 = 0.09, P = 0.004) and both decreased AFD (η2 = 0.05, P = 0.048) and FAt (η2 = 0.12, P = 0.014). Compared to controls, PD patients with both MBI and MCI demonstrated increased FW for the connection between the left orbitofrontal gyrus (OrG) and the hippocampus (η2 = 0.22, P = 0.008), augmented RDt between the right OrG and the amygdala (η2 = 0.14, P = 0.008), and increased RDt (η2 = 0.25, P = 0.028) with decreased AFD (η2 = 0.10, P = 0.046) between the right OrG and the caudate nucleus.
Conclusion:
MBI is associated with abnormal microstructure of connections involving the orbitofrontal cortex, putamen, and amygdala. To our knowledge, this is the first assessment of the white matter microstructure in PD-MBI using dMRI. © 2024 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
Insights
Mild behavioral impairment (MBI) in Parkinson's disease (PD) is linked to altered white matter connections in key brain regions. This study used dMRI to reveal neurostructural changes associated with MBI in early- to mid-stage PD patients.
Area of Science:
- Neuroscience
- Neurology
- Medical Imaging
Background:
- Parkinson's disease (PD) presents with behavioral, personality, and cognitive changes, even early on.
- Mild behavioral impairment (MBI) is a potential early marker for cognitive decline in PD.
- The neurostructural basis of MBI in early- to mid-stage PD is not well understood.
Purpose of the Study:
- To investigate white matter microstructure changes associated with MBI and mild cognitive impairment (MCI) in early- to mid-stage PD.
- Utilize diffusion magnetic resonance imaging (dMRI) to explore these neurostructural underpinnings.
Main Methods:
- Recruited 91 PD patients and 36 healthy controls.
- Acquired anatomical MRI and dMRI data.
- Administered neuropsychological tests and the Mild Behavioral Impairment-Checklist.
- Analyzed white matter integrity using fractional anisotropy (FAt), radial diffusivity (RDt), free water (FW), and apparent fiber density (AFD).
Main Results:
- PD patients with MBI showed disrupted left amygdala-putamen connections (increased RDt, decreased AFD and FAt).
- PD patients with both MBI and MCI exhibited increased free water in left orbitofrontal gyrus (OrG)-hippocampus connections.
- These patients also showed altered right OrG connections with the amygdala (increased RDt) and caudate nucleus (increased RDt, decreased AFD).
Conclusions:
- MBI in PD is associated with abnormal white matter microstructure in connections involving the orbitofrontal cortex, putamen, and amygdala.
- This study provides novel insights into the neurostructural correlates of MBI in PD using dMRI.
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