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Cerebral small vessel disease (cSVD) is associated with microvascular and parenchymal alterations. Intravoxel incoherent motion (IVIM) MRI has been proposed to simultaneously measure both the microvascular perfusion and parenchymal diffusivity. This study aimed to evaluate the application of IVIM in cSVD to assess the microvasculature and parenchymal microstructure.Seventy-three patients with cSVD (age 70 ± 11 y) and thirty-nine controls (age 69 ± 12 y) underwent IVIM imaging (3T). Group differences of the perfusion volume fraction f and the parenchymal diffusivity D were investigated using multivariable linear regression accounted for age, sex and cardiovascular factors. To examine the relation between the IVIM measures and the disease severity on structural MRI, white matter hyperintensity (WMH) load served as surrogate measure of the disease severity.Patients had a larger f (p < 0.024) in the normal appearing white matter (NAWM) than controls. Higher D (p < 0.031) was also observed for patients compared with controls in the NAWM and grey matter. Both f (p < 0.024) and D (p < 0.001) in the NAWM and grey matter increased with WMH load.The increased diffusivity reflects the predicted microstructural tissue impairment in cSVD. Unexpectedly, an increased perfusion volume fraction was observed in patients. Future studies are needed to reveal the precise nature of the increased perfusion volume fraction. IVIM imaging showed that the increases of f and D in cSVD were both related to disease severity, which suggests the potential of IVIM imaging to provide a surrogate marker for the progression of cSVD.

作者:Sau May, Wong;C Eleana, Zhang;Frank C G, van Bussel;Julie, Staals;Cécile R L P N, Jeukens;Paul A M, Hofman;Robert J, van Oostenbrugge;Walter H, Backes;Jacobus F A, Jansen

来源:NeuroImage. Clinical 2017 年 14卷

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作者:
Sau May, Wong;C Eleana, Zhang;Frank C G, van Bussel;Julie, Staals;Cécile R L P N, Jeukens;Paul A M, Hofman;Robert J, van Oostenbrugge;Walter H, Backes;Jacobus F A, Jansen
来源:
NeuroImage. Clinical 2017 年 14卷
标签:
BMI, body mass index Brain parenchyma Cerebral small vessel disease DGM, deep grey matter DW, diffusion weighted Diffusion weighted imaging FLAIR, fluid attenuated inversion recovery FOV, field of view IVIM, intravoxel incoherent motion imaging Intravoxel incoherent motion imaging LS, lacunar stroke Microvasculature NAWM, normal appearing white matter PVS, perivascular spaces Perfusion MR imaging ROI, region of interest SNR, signal-to-noise ratio WMH, white matter hyperintensity cSVD, cerebral small vessel disease mVCI, mild vascular cognitive impairment
Cerebral small vessel disease (cSVD) is associated with microvascular and parenchymal alterations. Intravoxel incoherent motion (IVIM) MRI has been proposed to simultaneously measure both the microvascular perfusion and parenchymal diffusivity. This study aimed to evaluate the application of IVIM in cSVD to assess the microvasculature and parenchymal microstructure.Seventy-three patients with cSVD (age 70 ± 11 y) and thirty-nine controls (age 69 ± 12 y) underwent IVIM imaging (3T). Group differences of the perfusion volume fraction f and the parenchymal diffusivity D were investigated using multivariable linear regression accounted for age, sex and cardiovascular factors. To examine the relation between the IVIM measures and the disease severity on structural MRI, white matter hyperintensity (WMH) load served as surrogate measure of the disease severity.Patients had a larger f (p < 0.024) in the normal appearing white matter (NAWM) than controls. Higher D (p < 0.031) was also observed for patients compared with controls in the NAWM and grey matter. Both f (p < 0.024) and D (p < 0.001) in the NAWM and grey matter increased with WMH load.The increased diffusivity reflects the predicted microstructural tissue impairment in cSVD. Unexpectedly, an increased perfusion volume fraction was observed in patients. Future studies are needed to reveal the precise nature of the increased perfusion volume fraction. IVIM imaging showed that the increases of f and D in cSVD were both related to disease severity, which suggests the potential of IVIM imaging to provide a surrogate marker for the progression of cSVD.