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whole brain diffusion mri data dmri  (Bruker Corporation)


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    Structured Review

    Bruker Corporation whole brain diffusion mri data dmri
    Example diffusion <t>MRI</t> reconstruction and tracking results. (A) The unprecedented data quality with ultra-high resolution allows for mapping the structural connectivity of the chimpanzee brain (wild, female, 6 years) with high precision. The images shows slices of the color coded fractional anisotropy computed from the measurement (color coding of main diffusion direction: red—left right, green—superior inferior, blue – anterior posterior). (B) The high-resolution <t>dMRI</t> data enables tractography on fine spatial scales in the same chimpanzee brain. Three respective tract reconstructions are depicted: Inferior Fronto-Occipital Fasciculus, IFOF (green); Corticospinal tract (blue); Cingulum (turquoise). The three depicted tracts were selected as examples for this illustration due to their well-known morphology in humans.
    Whole Brain Diffusion Mri Data Dmri, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 97/100, based on 3073 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/diffusion+mri+dmri+data/Diffusion/pmc10800984-141-1-11
    Average 97 stars, based on 3073 article reviews
    whole brain diffusion mri data dmri - by Bioz Stars, 2026-09
    97/100 stars

    Images

    1) Product Images from "Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution"

    Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution

    Journal: Frontiers in Integrative Neuroscience

    doi: 10.3389/fnint.2023.1299087

    Example diffusion MRI reconstruction and tracking results. (A) The unprecedented data quality with ultra-high resolution allows for mapping the structural connectivity of the chimpanzee brain (wild, female, 6 years) with high precision. The images shows slices of the color coded fractional anisotropy computed from the measurement (color coding of main diffusion direction: red—left right, green—superior inferior, blue – anterior posterior). (B) The high-resolution dMRI data enables tractography on fine spatial scales in the same chimpanzee brain. Three respective tract reconstructions are depicted: Inferior Fronto-Occipital Fasciculus, IFOF (green); Corticospinal tract (blue); Cingulum (turquoise). The three depicted tracts were selected as examples for this illustration due to their well-known morphology in humans.
    Figure Legend Snippet: Example diffusion MRI reconstruction and tracking results. (A) The unprecedented data quality with ultra-high resolution allows for mapping the structural connectivity of the chimpanzee brain (wild, female, 6 years) with high precision. The images shows slices of the color coded fractional anisotropy computed from the measurement (color coding of main diffusion direction: red—left right, green—superior inferior, blue – anterior posterior). (B) The high-resolution dMRI data enables tractography on fine spatial scales in the same chimpanzee brain. Three respective tract reconstructions are depicted: Inferior Fronto-Occipital Fasciculus, IFOF (green); Corticospinal tract (blue); Cingulum (turquoise). The three depicted tracts were selected as examples for this illustration due to their well-known morphology in humans.

    Techniques Used: Diffusion-based Assay

    Microstructural mapping of a chimpanzee brain using quantitative MRI. (A) The quantitative MRI parameters R1, R2*, MT sat and PD acquired at 7 T and ultra-high resolution are shown for the same axial slice of one post mortem chimpanzee brain (wild, male, 45 years.). All parameters show exquisite contrast between gray and white matter and are sensitive biomarkers of brain tissue microstructure including brain myelination and brain iron content. (B) The high resolution multimodal maps allow for comprehensive characterization of brain anatomy resolving smallest neuroanatomical features including (i) layers within the cortex (arrow indicates the highly myelinated Stria of Gennari in the primary visual cortex in the lunate sulcus), (ii) thin gray matter structures such as the claustrum, (iii) substructures within the hippocampus and (iv) iron accumulation in subcortical structures. (C) Whole brain quantitative MRI maps allow for mapping of myeloarchitecture across the entire brain facilitating quantitative comparison of brain organization across species. R1 sampled at middle cortical depth and mapped across the neocortex for (bottom panel) one post mortem chimpanzee brain (captive, female, 44 years.) reflect different myelination of brain areas (highly myelinated motor, sensory and auditory cortex indicated with arrows) and can be compared with the same metric obtained in (right panel) humans in vivo . Note that absolute R1 values are larger due to fixation of the post mortem brain tissue compared to in vivo .
    Figure Legend Snippet: Microstructural mapping of a chimpanzee brain using quantitative MRI. (A) The quantitative MRI parameters R1, R2*, MT sat and PD acquired at 7 T and ultra-high resolution are shown for the same axial slice of one post mortem chimpanzee brain (wild, male, 45 years.). All parameters show exquisite contrast between gray and white matter and are sensitive biomarkers of brain tissue microstructure including brain myelination and brain iron content. (B) The high resolution multimodal maps allow for comprehensive characterization of brain anatomy resolving smallest neuroanatomical features including (i) layers within the cortex (arrow indicates the highly myelinated Stria of Gennari in the primary visual cortex in the lunate sulcus), (ii) thin gray matter structures such as the claustrum, (iii) substructures within the hippocampus and (iv) iron accumulation in subcortical structures. (C) Whole brain quantitative MRI maps allow for mapping of myeloarchitecture across the entire brain facilitating quantitative comparison of brain organization across species. R1 sampled at middle cortical depth and mapped across the neocortex for (bottom panel) one post mortem chimpanzee brain (captive, female, 44 years.) reflect different myelination of brain areas (highly myelinated motor, sensory and auditory cortex indicated with arrows) and can be compared with the same metric obtained in (right panel) humans in vivo . Note that absolute R1 values are larger due to fixation of the post mortem brain tissue compared to in vivo .

    Techniques Used: Comparison, In Vivo

    Related Articles

    Mass Spectrometry:

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited
    Article Snippet: .. Gu (2024) [ ] , Skin swab , MALDI-TOF Mass Spectrometry (Bruker) , Kirby Bauer disk diffusion test (Etest) , CLSI , PEN-susceptible. .. Lampejo (2024) [ ] , Blood culture , MALDI-TOF Mass Spectrometry , Kirby Bauer disk diffusion test , EUCAST , CLI-, PEN-, VA-susceptible. MTZ-resistant.

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited.
    Article Snippet: .. Author Year Reference Type of Sample Method of Identification Method ofSusceptibility Testing Interpretation Criteria Antibiotics Resistance Phenotype (MIC mg/L) Chinello (2025) [28] Material drained from orbital cellulitis MALDI-TOF Mass Spectrometry NR NR AMC < 0.016, AZY 2, CLI > 256, DAPTO 4, LZD 0.19, MEM 0.012, MTZ > 256, TZP < 0.016 Faiz (2025) [29] Intraoperative sample from abscess MALDI-TOF Mass Spectrometry (Bruker) Kirby Bauer disk diffusion test EUCAST 2023 breakpoint for Corynebacterium CLI-, LIN-, RIF-, TET-susceptible CIP-, MOX-, PEN-, SXT-, VA-resistant Lovering (2025) [30] Blood culture MALDI-TOF MassSpectrometry NR NR CN, CRO, LZD, MEM, PEN, VA susceptible Saijo (2025) [31] Intraoperative sample from debridement MALDI-TOF Mass Spectrometry NR NR CRO 0.5, FEP 2, CTX 0.5, ERY < 0.12, PEN 0.25, RIF < 1, SXT < 0.5, VA 0.5 Bozso (2024) [32] Blood culture NR NR NR CLI ≤ 0.016, PEN ≤ 0.03 Chang (2024) [33] Blood culture, intraoperative samples from abscess NR NR NR NR Chin (2024) [34] Intraoperative sample from abscess NR NR NR NR Grusiecki (2024) [35] Purulent material from abscess NR NR NR PEN-susceptible CIP-, CLI-, MXF-resistant Gu (2024) [36] Skin swab MALDI-TOF Mass Spectrometry (Bruker) Kirby Bauer disk diffusion test (Etest) CLSI PEN-susceptible https://doi.org/10.3390/pathogens15030335 Table 3. ..

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited.
    Article Snippet: .. MTZ-resistant Alrwashdeh (2023) [38] Blood culture and BAL MALDI-TOF MassSpectrometry NR PEN-susceptible Herai (2023) [39] Pleural fluid MALDI-TOF Mass Spectrometry (Bruker) NR NR NR Sahhar (2023) [40] Intraoperative sample from abscess MALDI-TOF Mass Spectrometry (Bruker) Kirby Bauer diffusion test (Disks and Etest) NR CLI-, CRO-, DOX-, LEV-, LZD-, PEN, RIF-, VA-susceptible Hicks (2022) [41] Intraoperative sample from abscess MALDI-TOF Mass Spectrometry Kirby Bauer diffusion test (Etest) NR PEN 0.064 Thomas (2022) [42] Intraoperative sample from debridement NR NR NR NR Purulent material from wound NR NR NR NR Purulent material from wound NR NR NR NR Intraoperative sample from debridement NR NR NR NR Intraoperative sample from debridement NR NR NR NR Purulent material from ulcer NR NR NR NR https://doi.org/10.3390/pathogens15030335 Table 3. ..

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited
    Article Snippet: Herai (2023) [ ] , Pleural fluid , MALDI-TOF Mass Spectrometry (Bruker) , NR , NR , NR. .. Sahhar (2023) [ ] , Intraoperative sample from abscess , MALDI-TOF Mass Spectrometry (Bruker) , Kirby Bauer diffusion test (Disks and Etest) , NR , CLI-, CRO-, DOX-, LEV-, LZD-, PEN, RIF-, VA-susceptible. .. Hicks (2022) [ ] , Intraoperative sample from abscess , MALDI-TOF Mass Spectrometry , Kirby Bauer diffusion test (Etest) , NR , PEN 0.064.

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited
    Article Snippet: Chinello (2025) [ ] , Material drained from orbital cellulitis , MALDI-TOF Mass Spectrometry , NR , NR , AMC < 0.016, AZY 2, CLI > 256, DAPTO 4, LZD 0.19, MEM 0.012, MTZ > 256, TZP < 0.016. .. Faiz (2025) [ ] , Intraoperative sample from abscess , MALDI-TOF Mass Spectrometry (Bruker) , Kirby Bauer disk diffusion test , EUCAST 2023 breakpoint for Corynebacterium , CLI-, LIN-, RIF-, TET-susceptible CIP-, MOX-, PEN-, SXT-, VA-resistant. .. Lovering (2025) [ ] , Blood culture , MALDI-TOF Mass Spectrometry , NR , NR , CN, CRO, LZD, MEM, PEN, VA susceptible.

    Diffusion-based Assay:

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited
    Article Snippet: .. Gu (2024) [ ] , Skin swab , MALDI-TOF Mass Spectrometry (Bruker) , Kirby Bauer disk diffusion test (Etest) , CLSI , PEN-susceptible. .. Lampejo (2024) [ ] , Blood culture , MALDI-TOF Mass Spectrometry , Kirby Bauer disk diffusion test , EUCAST , CLI-, PEN-, VA-susceptible. MTZ-resistant.

    Article Title: Potassium Hexafluoroacetylacetonate Complex with 18-Crown-6 Ether as a Volatile Precursor of Molecular and Inorganic Films: Thermal and Structural Insights.
    Article Snippet: The 1H DOSY NMR experiment [85,86] was performed on the same equipment with a 5 mm BBI probe with z-gradient. .. Diffusion coefficients were measured using the standard Bruker Ledbpgp2s sequence. ..

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited.
    Article Snippet: .. Author Year Reference Type of Sample Method of Identification Method ofSusceptibility Testing Interpretation Criteria Antibiotics Resistance Phenotype (MIC mg/L) Chinello (2025) [28] Material drained from orbital cellulitis MALDI-TOF Mass Spectrometry NR NR AMC < 0.016, AZY 2, CLI > 256, DAPTO 4, LZD 0.19, MEM 0.012, MTZ > 256, TZP < 0.016 Faiz (2025) [29] Intraoperative sample from abscess MALDI-TOF Mass Spectrometry (Bruker) Kirby Bauer disk diffusion test EUCAST 2023 breakpoint for Corynebacterium CLI-, LIN-, RIF-, TET-susceptible CIP-, MOX-, PEN-, SXT-, VA-resistant Lovering (2025) [30] Blood culture MALDI-TOF MassSpectrometry NR NR CN, CRO, LZD, MEM, PEN, VA susceptible Saijo (2025) [31] Intraoperative sample from debridement MALDI-TOF Mass Spectrometry NR NR CRO 0.5, FEP 2, CTX 0.5, ERY < 0.12, PEN 0.25, RIF < 1, SXT < 0.5, VA 0.5 Bozso (2024) [32] Blood culture NR NR NR CLI ≤ 0.016, PEN ≤ 0.03 Chang (2024) [33] Blood culture, intraoperative samples from abscess NR NR NR NR Chin (2024) [34] Intraoperative sample from abscess NR NR NR NR Grusiecki (2024) [35] Purulent material from abscess NR NR NR PEN-susceptible CIP-, CLI-, MXF-resistant Gu (2024) [36] Skin swab MALDI-TOF Mass Spectrometry (Bruker) Kirby Bauer disk diffusion test (Etest) CLSI PEN-susceptible https://doi.org/10.3390/pathogens15030335 Table 3. ..

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited.
    Article Snippet: .. MTZ-resistant Alrwashdeh (2023) [38] Blood culture and BAL MALDI-TOF MassSpectrometry NR PEN-susceptible Herai (2023) [39] Pleural fluid MALDI-TOF Mass Spectrometry (Bruker) NR NR NR Sahhar (2023) [40] Intraoperative sample from abscess MALDI-TOF Mass Spectrometry (Bruker) Kirby Bauer diffusion test (Disks and Etest) NR CLI-, CRO-, DOX-, LEV-, LZD-, PEN, RIF-, VA-susceptible Hicks (2022) [41] Intraoperative sample from abscess MALDI-TOF Mass Spectrometry Kirby Bauer diffusion test (Etest) NR PEN 0.064 Thomas (2022) [42] Intraoperative sample from debridement NR NR NR NR Purulent material from wound NR NR NR NR Purulent material from wound NR NR NR NR Intraoperative sample from debridement NR NR NR NR Intraoperative sample from debridement NR NR NR NR Purulent material from ulcer NR NR NR NR https://doi.org/10.3390/pathogens15030335 Table 3. ..

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited
    Article Snippet: Herai (2023) [ ] , Pleural fluid , MALDI-TOF Mass Spectrometry (Bruker) , NR , NR , NR. .. Sahhar (2023) [ ] , Intraoperative sample from abscess , MALDI-TOF Mass Spectrometry (Bruker) , Kirby Bauer diffusion test (Disks and Etest) , NR , CLI-, CRO-, DOX-, LEV-, LZD-, PEN, RIF-, VA-susceptible. .. Hicks (2022) [ ] , Intraoperative sample from abscess , MALDI-TOF Mass Spectrometry , Kirby Bauer diffusion test (Etest) , NR , PEN 0.064.

    Article Title: Physical and chemical characterisation of ophthalmic lens-grinding wastewater: uncovering environmental implications.
    Article Snippet: .. 1D 1H and 2D 1H-1H NMR DOSY (Diffusion-ordered spectroscopy) experiments were carried out on a 9.4 T Bruker AVANCE III 400 spectrometer (Bruker Corporation, Billerica MA, USA) equipped with a Bruker DiffBB probe, specifically a 5 mm high-power diffusion BBI probe. ..

    Article Title: Insights into Arcanobacterium haemolyticum : A Narrative Review of an Emerging Pathogen Revisited
    Article Snippet: Chinello (2025) [ ] , Material drained from orbital cellulitis , MALDI-TOF Mass Spectrometry , NR , NR , AMC < 0.016, AZY 2, CLI > 256, DAPTO 4, LZD 0.19, MEM 0.012, MTZ > 256, TZP < 0.016. .. Faiz (2025) [ ] , Intraoperative sample from abscess , MALDI-TOF Mass Spectrometry (Bruker) , Kirby Bauer disk diffusion test , EUCAST 2023 breakpoint for Corynebacterium , CLI-, LIN-, RIF-, TET-susceptible CIP-, MOX-, PEN-, SXT-, VA-resistant. .. Lovering (2025) [ ] , Blood culture , MALDI-TOF Mass Spectrometry , NR , NR , CN, CRO, LZD, MEM, PEN, VA susceptible.

    Sequencing:

    Article Title: Potassium Hexafluoroacetylacetonate Complex with 18-Crown-6 Ether as a Volatile Precursor of Molecular and Inorganic Films: Thermal and Structural Insights.
    Article Snippet: The 1H DOSY NMR experiment [85,86] was performed on the same equipment with a 5 mm BBI probe with z-gradient. .. Diffusion coefficients were measured using the standard Bruker Ledbpgp2s sequence. ..

    Nuclear Magnetic Resonance:

    Article Title: Physical and chemical characterisation of ophthalmic lens-grinding wastewater: uncovering environmental implications.
    Article Snippet: .. 1D 1H and 2D 1H-1H NMR DOSY (Diffusion-ordered spectroscopy) experiments were carried out on a 9.4 T Bruker AVANCE III 400 spectrometer (Bruker Corporation, Billerica MA, USA) equipped with a Bruker DiffBB probe, specifically a 5 mm high-power diffusion BBI probe. ..

    Spectroscopy:

    Article Title: Physical and chemical characterisation of ophthalmic lens-grinding wastewater: uncovering environmental implications.
    Article Snippet: .. 1D 1H and 2D 1H-1H NMR DOSY (Diffusion-ordered spectroscopy) experiments were carried out on a 9.4 T Bruker AVANCE III 400 spectrometer (Bruker Corporation, Billerica MA, USA) equipped with a Bruker DiffBB probe, specifically a 5 mm high-power diffusion BBI probe. ..



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    Example diffusion <t>MRI</t> reconstruction and tracking results. (A) The unprecedented data quality with ultra-high resolution allows for mapping the structural connectivity of the chimpanzee brain (wild, female, 6 years) with high precision. The images shows slices of the color coded fractional anisotropy computed from the measurement (color coding of main diffusion direction: red—left right, green—superior inferior, blue – anterior posterior). (B) The high-resolution <t>dMRI</t> data enables tractography on fine spatial scales in the same chimpanzee brain. Three respective tract reconstructions are depicted: Inferior Fronto-Occipital Fasciculus, IFOF (green); Corticospinal tract (blue); Cingulum (turquoise). The three depicted tracts were selected as examples for this illustration due to their well-known morphology in humans.
    Whole Brain Diffusion Mri Data Dmri, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/diffusion+mri+dmri+data/Diffusion/pmc10800984-141-1-11
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    Image Search Results


    Example diffusion MRI reconstruction and tracking results. (A) The unprecedented data quality with ultra-high resolution allows for mapping the structural connectivity of the chimpanzee brain (wild, female, 6 years) with high precision. The images shows slices of the color coded fractional anisotropy computed from the measurement (color coding of main diffusion direction: red—left right, green—superior inferior, blue – anterior posterior). (B) The high-resolution dMRI data enables tractography on fine spatial scales in the same chimpanzee brain. Three respective tract reconstructions are depicted: Inferior Fronto-Occipital Fasciculus, IFOF (green); Corticospinal tract (blue); Cingulum (turquoise). The three depicted tracts were selected as examples for this illustration due to their well-known morphology in humans.

    Journal: Frontiers in Integrative Neuroscience

    Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution

    doi: 10.3389/fnint.2023.1299087

    Figure Lengend Snippet: Example diffusion MRI reconstruction and tracking results. (A) The unprecedented data quality with ultra-high resolution allows for mapping the structural connectivity of the chimpanzee brain (wild, female, 6 years) with high precision. The images shows slices of the color coded fractional anisotropy computed from the measurement (color coding of main diffusion direction: red—left right, green—superior inferior, blue – anterior posterior). (B) The high-resolution dMRI data enables tractography on fine spatial scales in the same chimpanzee brain. Three respective tract reconstructions are depicted: Inferior Fronto-Occipital Fasciculus, IFOF (green); Corticospinal tract (blue); Cingulum (turquoise). The three depicted tracts were selected as examples for this illustration due to their well-known morphology in humans.

    Article Snippet: Here, whole-brain diffusion MRI data (dMRI) were acquired on a preclinical Bruker Biospec 94/30 MRI system at 9.4 T (Software Version Paravision 6.0.1), using a 300 mT/m gradient system and a 154 mm transmit-receive quadrature RF coil (Bruker BioSpin, Ettlingen, Germany).

    Techniques: Diffusion-based Assay

    Microstructural mapping of a chimpanzee brain using quantitative MRI. (A) The quantitative MRI parameters R1, R2*, MT sat and PD acquired at 7 T and ultra-high resolution are shown for the same axial slice of one post mortem chimpanzee brain (wild, male, 45 years.). All parameters show exquisite contrast between gray and white matter and are sensitive biomarkers of brain tissue microstructure including brain myelination and brain iron content. (B) The high resolution multimodal maps allow for comprehensive characterization of brain anatomy resolving smallest neuroanatomical features including (i) layers within the cortex (arrow indicates the highly myelinated Stria of Gennari in the primary visual cortex in the lunate sulcus), (ii) thin gray matter structures such as the claustrum, (iii) substructures within the hippocampus and (iv) iron accumulation in subcortical structures. (C) Whole brain quantitative MRI maps allow for mapping of myeloarchitecture across the entire brain facilitating quantitative comparison of brain organization across species. R1 sampled at middle cortical depth and mapped across the neocortex for (bottom panel) one post mortem chimpanzee brain (captive, female, 44 years.) reflect different myelination of brain areas (highly myelinated motor, sensory and auditory cortex indicated with arrows) and can be compared with the same metric obtained in (right panel) humans in vivo . Note that absolute R1 values are larger due to fixation of the post mortem brain tissue compared to in vivo .

    Journal: Frontiers in Integrative Neuroscience

    Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution

    doi: 10.3389/fnint.2023.1299087

    Figure Lengend Snippet: Microstructural mapping of a chimpanzee brain using quantitative MRI. (A) The quantitative MRI parameters R1, R2*, MT sat and PD acquired at 7 T and ultra-high resolution are shown for the same axial slice of one post mortem chimpanzee brain (wild, male, 45 years.). All parameters show exquisite contrast between gray and white matter and are sensitive biomarkers of brain tissue microstructure including brain myelination and brain iron content. (B) The high resolution multimodal maps allow for comprehensive characterization of brain anatomy resolving smallest neuroanatomical features including (i) layers within the cortex (arrow indicates the highly myelinated Stria of Gennari in the primary visual cortex in the lunate sulcus), (ii) thin gray matter structures such as the claustrum, (iii) substructures within the hippocampus and (iv) iron accumulation in subcortical structures. (C) Whole brain quantitative MRI maps allow for mapping of myeloarchitecture across the entire brain facilitating quantitative comparison of brain organization across species. R1 sampled at middle cortical depth and mapped across the neocortex for (bottom panel) one post mortem chimpanzee brain (captive, female, 44 years.) reflect different myelination of brain areas (highly myelinated motor, sensory and auditory cortex indicated with arrows) and can be compared with the same metric obtained in (right panel) humans in vivo . Note that absolute R1 values are larger due to fixation of the post mortem brain tissue compared to in vivo .

    Article Snippet: Here, whole-brain diffusion MRI data (dMRI) were acquired on a preclinical Bruker Biospec 94/30 MRI system at 9.4 T (Software Version Paravision 6.0.1), using a 300 mT/m gradient system and a 154 mm transmit-receive quadrature RF coil (Bruker BioSpin, Ettlingen, Germany).

    Techniques: Comparison, In Vivo