Patterns of calcium‐binding proteins support parallel and hierarchical organization of human auditory areas
- 10 January 2003
- journal article
- research article
- Published by Wiley in European Journal of Neuroscience
- Vol. 17 (2) , 397-410
- https://doi.org/10.1046/j.1460-9568.2003.02430.x
Abstract
The human primary auditory cortex (AI) is surrounded by several other auditory areas, which can be identified by cyto‐, myelo‐ and chemoarchitectonic criteria. We report here on the pattern of calcium‐binding protein immunoreactivity within these areas. The supratemporal regions of four normal human brains (eight hemispheres) were processed histologically, and serial sections were stained for parvalbumin, calretinin or calbindin. Each calcium‐binding protein yielded a specific pattern of labelling, which differed between auditory areas. In AI, defined as area TC [see C. von Economo and L. Horn (1930) Z. Ges. Neurol. Psychiatr.,130, 678–757], parvalbumin labelling was dark in layer IV; several parvalbumin‐positive multipolar neurons were distributed in layers III and IV. Calbindin yielded dark labelling in layers I–III and V; it revealed numerous multipolar and pyramidal neurons in layers II and III. Calretinin labelling was lighter than that of parvalbumin or calbindin in AI; calretinin‐positive bipolar and bitufted neurons were present in supragranular layers. In non‐primary auditory areas, the intensity of labelling tended to become progressively lighter while moving away from AI, with qualitative differences between the cytoarchitectonically defined areas. In analogy to non‐human primates, our results suggest differences in intrinsic organization between auditory areas that are compatible with parallel and hierarchical processing of auditory information.Keywords
This publication has 56 references indexed in Scilit:
- Distinct Pathways Involved in Sound Recognition and Localization: A Human fMRI StudyNeuroImage, 2001
- Functional Specialization in Rhesus Monkey Auditory CortexScience, 2001
- Human Primary Auditory Cortex: Cytoarchitectonic Subdivisions and Mapping into a Spatial Reference SystemNeuroImage, 2001
- Quantitative Distribution of Parvalbumin, Calretinin, and Calbindin D-28k Immunoreactive Neurons in the Visual Cortex of Normal and Alzheimer CasesExperimental Neurology, 1998
- Calcium-binding proteins immunoreactivity in the human subcortical and cortical visual structuresVisual Neuroscience, 1996
- Auditory thalamocortical pathways defined in monkeys by calcium‐binding protein immunoreactivityJournal of Comparative Neurology, 1995
- Processing of Complex Sounds in the Macaque Nonprimary Auditory CortexScience, 1995
- Neurochemical gradient along the monkey occipito-temporal cortical pathwayNeuroReport, 1994
- Neocortical neuronal subpopulations labeled by a monoclonal antibody to calbindin exhibit differential vulnerability in Alzheimer's diseaseExperimental Neurology, 1991
- Estimation of nuclear population from microtome sectionsThe Anatomical Record, 1946