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Data Use Terms

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× WU-Minn HCP Consortium Open Access Data Use Terms
I request access to data collected by the Washington University - University of Minnesota Consortium of the Human Connectome Project (WU-Minn HCP), and I agree to the following:

1. I will not attempt to establish the identity of or attempt to contact any of the included human subjects.

2. I understand that under no circumstances will the code that would link these data to Protected Health Information be given to me, nor will any additional information about individual human subjects be released to me under these Open Access Data Use Terms.

3. I will comply with all relevant rules and regulations imposed by my institution. This may mean that I need my research to be approved or declared exempt by a committee that oversees research on human subjects, e.g. my IRB or Ethics Committee. The released HCP data are not considered de-identified, insofar as certain combinations of HCP Restricted Data (available through a separate process) might allow identification of individuals.  Different committees operate under different national, state and local laws and may interpret regulations differently, so it is important to ask about this. If needed and upon request, the HCP will provide a certificate stating that you have accepted the HCP Open Access Data Use Terms.

4. I may redistribute original WU-Minn HCP Open Access data and any derived data as long as the data are redistributed under these same Data Use Terms.

5. I will acknowledge the use of WU-Minn HCP data and data derived from WU-Minn HCP data when publicly presenting any results or algorithms that benefitted from their use.

1. Papers, book chapters, books, posters, oral presentations, and all other printed and digital presentations of results derived from HCP data should contain the following wording in the acknowledgments section: "Data were provided [in part] by the Human Connectome Project, WU-Minn Consortium (Principal Investigators: David Van Essen and Kamil Ugurbil; 1U54MH091657) funded by the 16 NIH Institutes and Centers that support the NIH Blueprint for Neuroscience Research; and by the McDonnell Center for Systems Neuroscience at Washington University."

2. Authors of publications or presentations using WU-Minn HCP data should cite relevant publications describing the methods used by the HCP to acquire and process the data. The specific publications that are appropriate to cite in any given study will depend on what HCP data were used and for what purposes. An annotated and appropriately up-to-date list of publications that may warrant consideration is available at http://www.humanconnectome.org/about/acknowledgehcp.html

3. The WU-Minn HCP Consortium as a whole should not be included as an author of publications or presentations if this authorship would be based solely on the use of WU-Minn HCP data.

6. Failure to abide by these guidelines will result in termination of my privileges to access WU-Minn HCP data.

Files

Type  Name  Size 
DScalar ave_b20003000_dti_odi_cortex.dscalar.nii 0000630448 615 KB
Surface L.inflated_MSMAll.32k_fs_LR.surf.gii 0001120647 1 MB
Surface L.pial_MSMAll.32k_fs_LR.surf.gii 0001158542 1 MB
DScalar ave_b2000_dti_ficvf_cortex.dscalar.nii 0000630432 615 KB
DScalar ave_odifromkappa_cortex_only.dscalar.nii 0000639552 624 KB
DScalar ave_b2000_noddi_odi_cortex.dscalar.nii 0000630432 615 KB
DScalar ave_ball_noddi_ficvf_cortex.dscalar.nii 0000630432 615 KB
Border R.HCP_multi_modal_parcellation.border 0000698521 682 KB
Surface L.midthickness_MSMAll.32k_fs_LR.surf.gii 0001174562 1 MB
DScalar ave_b3000_dti_ficvf_cortex.dscalar.nii 0000630432 615 KB
DScalar ave_b10002000_noddi_odi_cortex.dscalar.nii 0000630480 615 KB
Surface R.very_inflated_MSMAll.32k_fs_LR.surf.gii 0001112811 1 MB
DScalar ave_b1000_dti_FA.dscalar.nii 0001249032 1 MB
DScalar ave_ball_dti_MD.dscalar.nii 0001226680 1 MB
DScalar ave_b10002000_dti_odi_cortex.dscalar.nii 0000630448 615 KB
DScalar ave_b10003000_noddi_odi_cortex.dscalar.nii 0000630480 615 KB
DScalar ave_b1000_dti_odi_cortex.dscalar.nii 0000630416 615 KB
Surface R.inflated_MSMAll.32k_fs_LR.surf.gii 0001107896 1 MB
DScalar ave_ball_dti_odi_cortex.dscalar.nii 0000630400 615 KB
Surface R.pial_MSMAll.32k_fs_LR.surf.gii 0001145811 1 MB
DScalar ave_b20003000_noddi_ficvf_cortex.dscalar.nii 0000630496 615 KB
DScalar ave_b2000_dti_odi_cortex.dscalar.nii 0000630416 615 KB
DScalar ave_b20003000_dti_ficvf_cortex.dscalar.nii 0000630464 615 KB
DScalar ave_b3000_noddi_odi_cortex.dscalar.nii 0000630432 615 KB
DScalar ave_b10002000_noddi_ficvf_cortex.dscalar.nii 0000630496 615 KB
DScalar ave_b1000_dti_ficvf_cortex.dscalar.nii 0000630432 615 KB
DScalar ave_b3000_dti_odi_cortex.dscalar.nii 0000630416 615 KB
DScalar ave_ball_dti_ficvf_cortex.dscalar.nii 0000630416 615 KB
DScalar ave_ball_noddi_odi_cortex.dscalar.nii 0000630416 615 KB
DScalar ave_b1000_noddi_odi_cortex.dscalar.nii 0000630432 615 KB
DScalar ave_ball_dti_FA.dscalar.nii 0001226680 1 MB
DScalar ave_b10002000_dti_ficvf_cortex.dscalar.nii 0000630464 615 KB
Surface L.very_inflated_MSMAll.32k_fs_LR.surf.gii 0001125462 1 MB
DScalar ave_b20003000_noddi_odi_cortex.dscalar.nii 0000630480 615 KB
DScalar ave_b3000_noddi_ficvf_cortex.dscalar.nii 0000630448 615 KB
Surface R.midthickness_MSMAll.32k_fs_LR.surf.gii 0001161755 1 MB
DScalar ave_b3000_dti_MD.dscalar.nii 0001249032 1 MB
DScalar ave_b3000_dti_FA.dscalar.nii 0001249032 1 MB
DScalar ave_b10003000_dti_odi_cortex.dscalar.nii 0000630448 615 KB
DScalar ave_b1000_noddi_ficvf_cortex.dscalar.nii 0000630448 615 KB
DScalar ave_b2000_noddi_ficvf_cortex.dscalar.nii 0000630448 615 KB
DScalar ave_b10003000_dti_ficvf_cortex.dscalar.nii 0000630464 615 KB
DScalar ave_b1000_dti_MD.dscalar.nii 0001249032 1 MB
Surface R.white_MSMAll.32k_fs_LR.surf.gii 0001147389 1 MB
Surface L.white_MSMAll.32k_fs_LR.surf.gii 0001160216 1 MB
DScalar ave_b10003000_noddi_ficvf_cortex.dscalar.nii 0000630496 615 KB
DScalar ave_b3000_dti_odi.dscalar.nii 0001125384 1 MB
Border L.HCP_multi_modal_parcellation.border 0000703714 687 KB
/page
Scene File: DTI_NODDI.scene
Figure 2
Figure 3
Figure S3
Figure S4

study:
Diffusion Tensor Model links to Neurite Orientation Dispersion and Density Imaging at high b-value in Cerebral Cortical Gray Matter

PATH:
DTI_NODDI.scene

SCENES:
  • Figure 2
  • Figure 3
  • Figure S3
  • Figure S4
©2025 Washington University School of Medicine

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