©The Author(s) 2020.
World J Radiol. Sep 28, 2020; 12(9): 204-212
Published online Sep 28, 2020. doi: 10.4329/wjr.v12.i9.204
Published online Sep 28, 2020. doi: 10.4329/wjr.v12.i9.204
Table 4 Distribution of white matter atrophy in the brain of children with non-cyanotic congenital heart disease
| Brain region | MNI coordinates | Cluster size | Peak intensity | ||
| Pulvinar | 27 | -31.5 | 9 | 33 | 6.0857 |
| Sub-lobar | 33 | ||||
| Right cerebrum | 33 | ||||
| White matter | 32 | ||||
| Extra-nuclear | 32 | ||||
| Precentral gyrus | -37.5 | -1.5 | 33 | 52 | 6.9196 |
| Left cerebrum | 52 | ||||
| Frontal lobe | 52 | ||||
| White matter | 49 | ||||
| Precentral gyrus | 31 | ||||
| Precentral_L (AAL) | 28 | ||||
| Postcentral gyrus | 33 | -18 | 40.5 | 34 | 5.6201 |
| Right cerebrum | 34 | ||||
| Frontal lobe | 34 | ||||
| White matter | 33 | ||||
| Sub-gyral | 32 | ||||
- Citation: Jia X, Ma XH, Liang JW. Application of voxel-based morphometric method to detect brain changes in children with non-cyanotic congenital heart disease. World J Radiol 2020; 12(9): 204-212
- URL: https://www.wjgnet.com/1949-8470/full/v12/i9/204.htm
- DOI: https://dx.doi.org/10.4329/wjr.v12.i9.204