Abstract
The laminar patterns displayed by MR microscopy (MRM) form one basis for the classification of the cytoarchitectonic areas (Brodmann areas). It is plausible that in the future MRM may depict Brodmann areas directly, and not only by inference from gross anatomic location. Our purpose was to depict the laminar cytoarchitecture of excised, formalin-fixed specimens of human cerebral cortex by use of 9.4-T MR and to correlate MR images with histologic stains of the same sections. Formalin-fixed samples of human sensory isocortex (calcarine, Heschl's, and somatosensory cortices), motor isocortex (hand motor area of M1), polar isocortex (frontal pole), allocortex (hippocampal formation), and transitional periallocortex (retrosplenial cortex) were studied by MRM at 9.4 T with intermediate-weighted pulse sequences for a total overnight acquisition time of 14 hours 17 minutes for each specimen. The same samples were then histologically analyzed to confirm the MR identification of the cortical layers. Curves representing the change in MR signal intensity across the cortex were generated to display the signal intensity profiles for each type of cortex. High-field-strength MR imaging at a spatial resolution of 78 x 78 x 500 micro m resolves the horizontal lamination of isocortex, allocortex, and periallocortex and displays specific intracortical structures such as the external band of Baillarger. The signal intensity profiles demonstrate the greatest hypointensity at the sites of maximum myelin concentration and maximum cell density and show gradations of signal intensity inversely proportional to varying cell density. MRM at 9.4 T depicts important aspects of the cytoarchitecture of normal formalin-fixed human cortex.
MeSH Terms
Cerebral Cortex/anatomy & histology,pathology
Female
Formaldehyde
Humans
Image Processing, Computer-Assisted
Magnetic Resonance Imaging/methods
Male
Middle Aged
Tissue Fixation
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Fatterpekar Girish M
Department of Radiology of The Mount Sinai School of Medicine, New York, NY 10029, USA.
Naidich Thomas P
Delman Bradley N
Aguinaldo Juan G
Gultekin S Humayun
Sherwood Chet C
Hof Patrick R
Drayer Burton P
Fayad Zahi A
References (21)
21 references, click to expand
-
Hippocampal formation and related structures of the limbic lobe: anatomic-MR correlation. Part I. Surface features and coronal sections.
Radiology. 1987 Mar;162(3):747-54
PMID: 3809489
-
A stereological approach to human cortical architecture: identification and delineation of cortical areas.
J Chem Neuroanat. 2000 Oct;20(1):31-47
PMID: 11074342
-
High field magnetic resonance imaging of normal and pathologic human medulla oblongata.
Anat Rec. 1994 Feb;238(2):277-86
PMID: 8154612
-
The motor cortex: anatomic substrates of function.
Neuroimaging Clin N Am. 2001 May;11(2):171-93, vii-viii
PMID: 11489733
-
Human cingulate cortex: surface features, flat maps, and cytoarchitecture.
J Comp Neurol. 1995 Aug 28;359(3):490-506
PMID: 7499543
-
Localization of the motor hand area to a knob on the precentral gyrus. A new landmark.
Brain. 1997 Jan;120 ( Pt 1):141-57
PMID: 9055804
-
Heschl and superior temporal gyri: low signal intensity of the cortex on T2-weighted MR images of the normal brain.
Radiology. 2000 Jan;214(1):217-21
PMID: 10644127
-
Anatomic relationships along the low-middle convexity: Part I--Normal specimens and magnetic resonance imaging.
Neurosurgery. 1995 Mar;36(3):517-32
PMID: 7753352
-
Human leptomeningeal and cortical vascular anatomy of the cerebral cortex at 8 Tesla.
J Comput Assist Tomogr. 1999 Nov-Dec;23(6):850-6
PMID: 10589558
-
MRI of brain iron.
AJR Am J Roentgenol. 1986 Jul;147(1):103-10
PMID: 3487201
-
Microanatomy of the excised human spinal cord and the cervicomedullary junction examined with high-resolution MR imaging at 9.4 Tesla.
AJNR Am J Neuroradiol. 1993 May-Jun;14(3):699-707
PMID: 8517362
-
Topographic anatomy of the insular region.
J Neurosurg. 1999 Apr;90(4):720-33
PMID: 10193618
-
Hippocampal formation and related structures of the limbic lobe: anatomic-MR correlation. Part II. Sagittal sections.
Radiology. 1987 Mar;162(3):755-61
PMID: 3809490
-
Architectonic analysis of the human retrosplenial cortex.
J Comp Neurol. 2000 May 22;421(1):14-28
PMID: 10813770
-
Anatomy and transmitter receptors of the supplementary motor areas in the human and nonhuman primate brain.
Adv Neurol. 1996;70:29-43
PMID: 8615210
-
Location of the central sulcus via cortical thickness of the precentral and postcentral gyri on MR.
AJNR Am J Neuroradiol. 1996 Oct;17(9):1699-706
PMID: 8896626
-
Advances in cytoarchitectonic mapping of the human cerebral cortex.
Neuroimaging Clin N Am. 2001 May;11(2):151-69, vii
PMID: 11489732
-
Magnetic resonance microscopy of the C57BL mouse brain.
Neuroimage. 2000 Jun;11(6 Pt 1):601-11
PMID: 10860789
-
Observer-independent method for microstructural parcellation of cerebral cortex: A quantitative approach to cytoarchitectonics.
Neuroimage. 1999 Jan;9(1):165-77
PMID: 9918738
-
Cytology of human caudomedial cingulate, retrosplenial, and caudal parahippocampal cortices.
J Comp Neurol. 2001 Sep 24;438(3):353-76
PMID: 11550177
-
Limbic lobe of the human brain: evaluation with turbo fluid-attenuated inversion-recovery MR imaging.
Radiology. 2000 May;215(2):470-5
PMID: 10796927