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Thank you again for your help. Here is one subject, let me know if you need more.
Kind regards, Samuel
On Mon, Apr 4, 2022 at 10:40 AM Douglas N. Greve dgreve@mgh.harvard.edu wrote:
That's so weird. Can you make the data available to us?
On 3/29/2022 8:00 AM, Samuel Paré wrote:
External Email - Use CautionHi Dough,
Thanks for your response. We followed your suggestion and ran the 7T data without the -highres option. This gave us values which are in the normal range of what we get when using 3T mean curvature data. We looked whether there was a fixed scaling factor between the data with and without the -highres option. This did not seem to be the case as the scaling factor for the different subregions varied between 1,18 (for the left G_subcallosal) and 2,95 (for the left S_collat_transv_ant). I attached a pdf with the results.
Thank you again
On Sun, Mar 27, 2022 at 5:31 PM Douglas N. Greve dgreve@mgh.harvard.edu wrote:
This does not make sense to me. What resolution is your 3T and 7T data? Can you run the 7T data at 1mm (ie, without the -hires option) and see if it changes?
On 3/20/2022 9:42 AM, Samuel Paré wrote:
External Email - Use CautionHello,
We are looking at some of our data acquired on a 7T magnet. We ran recon-all with the “highres” flag. The obtained results for cortical thickness and cortical volume are very comparable to data that we obtain when using 3 T brain images. However, the results for cortical curvature are significantly different from what we get by our 3 T data. I attach the output of mean cortical curvature values using the Destrieux atlas for a 3T and 7T dataset on healthy controls. As you can notice, they differ roughly by a factor of 2. Any explanation for what may cause this large difference?
Thanks,
Samuel
[image: image.png]
*Samuel Paré, MSc* Laboratoire du développement et plasticité du système visuel École d'optométrie Université de Montréal
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-- *Samuel Paré, MSc* Laboratoire du développement et plasticité du système visuel École d'optométrie Université de Montréal
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