Electrical potentials of the subtectorial space in the guinea pig cochlea. 1977

Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki

Precipitation of cobalt ions and iontophoretic marking by Alcian Blue were utilized in examination of physiological properties of the subtectorial space in the guinea pig cochlea. Cobalt ions injected into the scala media were sulfurated and observed as a black precipitation in cross sections. Precipitation was seen on the upper and the lower surface of the tectorial membrane, and on the reticular membrane. Alcian Blue was the most suitable dye for marking in the organ of Corti. Recording sites of potentials in the subtectorial space were identified by Alcian Blue marking. The potentials were similar to those measured in the scala media. These facts verify that the subtectorial space communicates with the scala media through the outermost margin of the tectorial membrane. Thus the sensory hairs of hair cells are bathed in the endolymph of high potassium concentration, and the condition for optimum sensitivity of their receptor function is maintained.

UI MeSH Term Description Entries
D008564 Membrane Potentials The voltage differences across a membrane. For cellular membranes they are computed by subtracting the voltage measured outside the membrane from the voltage measured inside the membrane. They result from differences of inside versus outside concentration of potassium, sodium, chloride, and other ions across cells' or ORGANELLES membranes. For excitable cells, the resting membrane potentials range between -30 and -100 millivolts. Physical, chemical, or electrical stimuli can make a membrane potential more negative (hyperpolarization), or less negative (depolarization). Resting Potentials,Transmembrane Potentials,Delta Psi,Resting Membrane Potential,Transmembrane Electrical Potential Difference,Transmembrane Potential Difference,Difference, Transmembrane Potential,Differences, Transmembrane Potential,Membrane Potential,Membrane Potential, Resting,Membrane Potentials, Resting,Potential Difference, Transmembrane,Potential Differences, Transmembrane,Potential, Membrane,Potential, Resting,Potential, Transmembrane,Potentials, Membrane,Potentials, Resting,Potentials, Transmembrane,Resting Membrane Potentials,Resting Potential,Transmembrane Potential,Transmembrane Potential Differences
D009925 Organ of Corti The spiral EPITHELIUM containing sensory AUDITORY HAIR CELLS and supporting cells in the cochlea. Organ of Corti, situated on the BASILAR MEMBRANE and overlaid by a gelatinous TECTORIAL MEMBRANE, converts sound-induced mechanical waves to neural impulses to the brain. Basilar Papilla,Corti's Organ,Spiral Organ,Corti Organ,Cortis Organ,Organ, Corti's,Organ, Spiral,Organs, Spiral,Papilla, Basilar,Spiral Organs
D003035 Cobalt A trace element that is a component of vitamin B12. It has the atomic symbol Co, atomic number 27, and atomic weight 58.93. It is used in nuclear weapons, alloys, and pigments. Deficiency in animals leads to anemia; its excess in humans can lead to erythrocytosis. Cobalt-59,Cobalt 59
D003051 Cochlea The part of the inner ear (LABYRINTH) that is concerned with hearing. It forms the anterior part of the labyrinth, as a snail-like structure that is situated almost horizontally anterior to the VESTIBULAR LABYRINTH. Cochleas
D006168 Guinea Pigs A common name used for the genus Cavia. The most common species is Cavia porcellus which is the domesticated guinea pig used for pets and biomedical research. Cavia,Cavia porcellus,Guinea Pig,Pig, Guinea,Pigs, Guinea
D000423 Alcian Blue A copper-containing dye used as a gelling agent for lubricants, for staining of bacteria and for the dyeing of histiocytes and fibroblasts in vivo. Alcian Blue 8GS,Alcian Blue 8GX,8GS, Alcian Blue,8GX, Alcian Blue,Blue 8GS, Alcian,Blue 8GX, Alcian,Blue, Alcian
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

Related Publications

Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
August 1958, The American journal of physiology,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
April 1987, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
November 1950, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine (New York, N.Y.),
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
January 1971, Archiv fur klinische und experimentelle Ohren- Nasen- und Kehlkopfheilkunde,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
November 1998, Hearing research,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
March 1991, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
April 1992, Hearing research,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
December 1987, Hearing research,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
August 1990, Zhongguo yi xue ke xue yuan xue bao. Acta Academiae Medicinae Sinicae,
Y Tanaka, and A Asanuma, and K Yanagisawa, and Y Katsuki
August 1990, Journal of neurophysiology,
Copied contents to your clipboard!