date: 2021-09-15T14:28:21Z pdf:PDFVersion: 1.5 pdf:docinfo:title: Simulating Local Deformations in the Human Cortex Due to Blood Flow-Induced Changes in Mechanical Tissue Properties: Impact on Functional Magnetic Resonance Imaging xmp:CreatorTool: LaTeX with hyperref package access_permission:can_print_degraded: true subject: Investigating human brain tissue is challenging due to the complexity and the manifold interactions between structures across different scales. dc:format: application/pdf; version=1.5 pdf:docinfo:creator_tool: LaTeX with hyperref package access_permission:fill_in_form: true pdf:encrypted: false dc:title: Simulating Local Deformations in the Human Cortex Due to Blood Flow-Induced Changes in Mechanical Tissue Properties: Impact on Functional Magnetic Resonance Imaging modified: 2021-09-15T14:28:21Z cp:subject: Investigating human brain tissue is challenging due to the complexity and the manifold interactions between structures across different scales. pdf:docinfo:subject: Investigating human brain tissue is challenging due to the complexity and the manifold interactions between structures across different scales. pdf:docinfo:creator: Mahsa Zoraghi PTEX.Fullbanner: This is MiKTeX-pdfTeX 2.9.5840 (1.40.16) meta:author: Mahsa Zoraghi trapped: False meta:creation-date: 2021-09-15T12:03:53Z created: 2021-09-15T12:03:53Z access_permission:extract_for_accessibility: true Creation-Date: 2021-09-15T12:03:53Z Author: Mahsa Zoraghi producer: pdfTeX-1.40.16 pdf:docinfo:producer: pdfTeX-1.40.16 pdf:unmappedUnicodeCharsPerPage: 0 dc:description: Investigating human brain tissue is challenging due to the complexity and the manifold interactions between structures across different scales. Keywords: biophysical modeling, simulation, tissue mechanics, blood flow, deformation, BOLD, VASO, fMRI access_permission:modify_annotations: true PDFVersion: 1.5 dc:creator: Mahsa Zoraghi description: Investigating human brain tissue is challenging due to the complexity and the manifold interactions between structures across different scales. dcterms:created: 2021-09-15T12:03:53Z Last-Modified: 2021-09-15T14:28:21Z dcterms:modified: 2021-09-15T14:28:21Z title: Simulating Local Deformations in the Human Cortex Due to Blood Flow-Induced Changes in Mechanical Tissue Properties: Impact on Functional Magnetic Resonance Imaging xmpMM:DocumentID: uuid:7a8d13e4-cef2-46c9-bb6c-90059bbbb626 Last-Save-Date: 2021-09-15T14:28:21Z pdf:docinfo:keywords: biophysical modeling, simulation, tissue mechanics, blood flow, deformation, BOLD, VASO, fMRI pdf:docinfo:modified: 2021-09-15T14:28:21Z meta:save-date: 2021-09-15T14:28:21Z pdf:docinfo:custom:PTEX.Fullbanner: This is MiKTeX-pdfTeX 2.9.5840 (1.40.16) pdf:docinfo:custom:PDFVersion: 1.5 Content-Type: application/pdf X-Parsed-By: org.apache.tika.parser.DefaultParser creator: Mahsa Zoraghi dc:subject: biophysical modeling, simulation, tissue mechanics, blood flow, deformation, BOLD, VASO, fMRI access_permission:assemble_document: true xmpTPg:NPages: 13 pdf:charsPerPage: 3587 access_permission:extract_content: true access_permission:can_print: true pdf:docinfo:trapped: False meta:keyword: biophysical modeling, simulation, tissue mechanics, blood flow, deformation, BOLD, VASO, fMRI access_permission:can_modify: true pdf:docinfo:created: 2021-09-15T12:03:53Z