Comparative Morphology of Rodent Vestibular Periphery. II. Cristae Ampullares

Department of Anatomy and Cell Biology, University of Illinois, Chicago, Illinois Submitted 4 August 2003; accepted in final form 25 June 2004 We made flattened neuroepithelial preparations of horizontal and vertical (anterior and posterior) cristae from mouse, rat, gerbil, guinea pig, chinchilla, a...

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Veröffentlicht in:Journal of neurophysiology 2005-01, Vol.93 (1), p.267-280
Hauptverfasser: Desai, Sapan S, Ali, Hussain, Lysakowski, Anna
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Sprache:eng
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Zusammenfassung:Department of Anatomy and Cell Biology, University of Illinois, Chicago, Illinois Submitted 4 August 2003; accepted in final form 25 June 2004 We made flattened neuroepithelial preparations of horizontal and vertical (anterior and posterior) cristae from mouse, rat, gerbil, guinea pig, chinchilla, and tree squirrel. Calretinin immunohistochemistry was used to label the calyx class of afferents. Because these afferents are restricted to the central zone of the crista, their distribution allowed us to delineate this zone. In addition to calyx afferents, calretinin also labels 5% of type I hair cells and 20% of type II hair cells throughout the mouse and rat crista epithelium. Measurements of the dimensions of the cristae and counts of hair cells and calyx afferents were determined on all species. Numbers of calyx afferents, hair cells, area, length, and width of the sensory epithelium increase from mouse to tree squirrel. As in the companion paper, we obtained additional data on vestibular end organ dimensions from the literature to construct a power law function describing the relationship between crista surface area and body weight. The vertical cristae of the mouse, rat, and gerbil have an eminentia cruciatum, a region located transversely along the midpoint of the sensory organ and consisting of nonsensory cells. Apart from this eminentia cruciatum, there are no statistical differences between horizontal and vertical cristae with regard to area, width, length, the number and type of hair cells, and number of calretinin-labeled calyx afferents. Address for reprint requests and other correspondence: A. Lysakowski, Dept. of Anatomy and Cell Biology, University of Illinois at Chicago (M/C 512), 808 S. Wood St. Room 578, Chicago, IL 60612 (E-mail: alysakow{at}uic.edu )
ISSN:0022-3077
1522-1598
DOI:10.1152/jn.00747.2003