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Journal of Neurochemistry
|
August 1, 1983
Effect of sound stimulation at several levels on concentrations of primary amines, including neurotransmitter candidates, in perilymph of the guinea pig inner ear
M J Drescher, D G Drescher, J E Medina
Brain Research
|
October 28, 1999
Autoradiographic demonstration of quinuclidinyl benzilate binding sites in the vestibular organs of the gerbil
D G Drescher, T P Kerr, M J Drescher
Brain Research
|
August 4, 1987
Potassium-evoked release of endogenous primary amine-containing compounds from the trout saccular macula and saccular nerve in vitro
M J Drescher, D G Drescher, J S Hatfield
Hearing Research
|
September 1, 1993
High affinity aldosterone binding sites (type I receptors) in the mammalian inner ear
D Z Pitovski, M J Drescher, D G Drescher
The Anatomical Record
|
September 1, 1993
Acetylcholinesterase activity is associated with efferent endings in the sensory epithelia of the utricle and semicircular canals of the rainbow trout inner ear
K M Khan, M J Drescher, J S Hatfield, et al.
Hearing Research
|
April 1, 1994
Immunohistochemical localization of S-100 protein in auditory and vestibular end organs of the mouse and hamster
J D Foster, M J Drescher, J S Hatfield, et al.
Hearing Research
|
August 1, 1993
Immunohistochemical localization of S-100 protein in the saccule of the rainbow trout (Salmo gairdnerii R.)
J D Foster, M J Drescher, K M Khan, et al.
Life Sciences
|
January 1, 1990
Argiotoxin-636 blocks effects of N-methyl-D-aspartate on lateral line of Xenopus laevis at concentrations which do not alter spontaneous or evoked neural activity
S L Guth, D A Scapini, M J Drescher, et al.
Neuroscience Letters
|
August 25, 1995
Cytochemical localization of adenylyl cyclase activity within the sensory epithelium of the trout saccule
M J Drescher, R C Kern, J S Hatfield, et al.
Brain Research
|
January 22, 1993
Aldosterone mediates an increase in [3H]ouabain binding at Na+, K(+)-ATPase sites in the mammalian inner ear
D Z Pitovski, M J Drescher, T P Kerr, et al.
Page
of 4
Search research articles
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Showing results (11-20 of 36) with videos related to
Sort By:
Page
of 4
Journal of Neurochemistry
|
August 1, 1983
Effect of sound stimulation at several levels on concentrations of primary amines, including neurotransmitter candidates, in perilymph of the guinea pig inner ear
M J Drescher, D G Drescher, J E Medina
Brain Research
|
October 28, 1999
Autoradiographic demonstration of quinuclidinyl benzilate binding sites in the vestibular organs of the gerbil
D G Drescher, T P Kerr, M J Drescher
Brain Research
|
August 4, 1987
Potassium-evoked release of endogenous primary amine-containing compounds from the trout saccular macula and saccular nerve in vitro
M J Drescher, D G Drescher, J S Hatfield
Hearing Research
|
September 1, 1993
High affinity aldosterone binding sites (type I receptors) in the mammalian inner ear
D Z Pitovski, M J Drescher, D G Drescher
The Anatomical Record
|
September 1, 1993
Acetylcholinesterase activity is associated with efferent endings in the sensory epithelia of the utricle and semicircular canals of the rainbow trout inner ear
K M Khan, M J Drescher, J S Hatfield, et al.
Hearing Research
|
April 1, 1994
Immunohistochemical localization of S-100 protein in auditory and vestibular end organs of the mouse and hamster
J D Foster, M J Drescher, J S Hatfield, et al.
Hearing Research
|
August 1, 1993
Immunohistochemical localization of S-100 protein in the saccule of the rainbow trout (Salmo gairdnerii R.)
J D Foster, M J Drescher, K M Khan, et al.
Life Sciences
|
January 1, 1990
Argiotoxin-636 blocks effects of N-methyl-D-aspartate on lateral line of Xenopus laevis at concentrations which do not alter spontaneous or evoked neural activity
S L Guth, D A Scapini, M J Drescher, et al.
Neuroscience Letters
|
August 25, 1995
Cytochemical localization of adenylyl cyclase activity within the sensory epithelium of the trout saccule
M J Drescher, R C Kern, J S Hatfield, et al.
Brain Research
|
January 22, 1993
Aldosterone mediates an increase in [3H]ouabain binding at Na+, K(+)-ATPase sites in the mammalian inner ear
D Z Pitovski, M J Drescher, T P Kerr, et al.
Page
of 4