TY - JOUR
T1 - The inferior colliculus of the rat
T2 - Quantitative immunocytochemical study of GABA and glycine
AU - Merchán, M.
AU - Aguilar, L. A.
AU - Lopez-Poveda, E. A.
AU - Malmierca, M. S.
N1 - Funding Information:
Dr. Ole P. Ottersen kindly provided GABA and glycine antibodies. We thank Ignacio Plaza for his excellent technical assistance, and Jack Kelly, Douglas Oliver, Kirsten Osen and Bruce Warr for their critical reading and comments on a previous version of the manuscript. This study was supported by the Spanish DGES; grant number: BFI-2000-1396, Spanish DGES; grant number BFI-2003-09147-02-01 to M.A.M. and M.S.M.; the Spanish JCYL-UE grant number: SA040/04 to M.S.M. and M.A.M.), and the Spanish FIS; grant numbers PI020343 and G03/203 to E.A.L.-P. L.A.A. was supported by the Fundación Carolina (Spain).
PY - 2005
Y1 - 2005
N2 - Both GABA and glycine (Gly) containing neurons send inhibitory projections to the inferior colliculus (IC), whereas inhibitory neurons within the IC are primarily GABAergic. To date, however, a quantitative description of the topographic distribution of GABAergic neurons in the rat's IC and their GABAergic or glycinergic inputs is lacking. Accordingly, here we present detailed maps of GABAergic and glycinergic neurons and terminals in the rat's IC. Semithin serial sections of the IC were obtained and stained for GABA and Gly. Images of the tissue were digitized and used for a quantitative densitometric analysis of GABA immunostaining. The optical density, perimeter, and number of GABA- and Gly immunoreactive boutons apposed to the somata were measured. Data analysis included comparisons across IC subdivisions and across frequency regions within the central nucleus of the IC. The results show that: 1) 25% of the IC neurons are GABAergic; 2) there are more GABAergic neurons in the central nucleus of the IC than previously estimated; 3) GABAergic neurons are larger than non-GABAergic; 4) GABAergic neurons receive less GABA and glycine puncta than non-GABAergic; 5) differences across frequency regions are minor, except that the non-GABAergic neurons from high frequency regions are larger than their counterparts in low frequency regions; 6) differences within the laminae are greater along the dorsomedial-ventrolateral axis than along the rostrocaudal axis; 7) GABA and non-GABAergic neurons receive different numbers of puncta in different IC subdivisions; and 8) GABAergic puncta are both apposed to the somata and in the neuropil, glycinergic puncta are mostly confined to the neuropil.
AB - Both GABA and glycine (Gly) containing neurons send inhibitory projections to the inferior colliculus (IC), whereas inhibitory neurons within the IC are primarily GABAergic. To date, however, a quantitative description of the topographic distribution of GABAergic neurons in the rat's IC and their GABAergic or glycinergic inputs is lacking. Accordingly, here we present detailed maps of GABAergic and glycinergic neurons and terminals in the rat's IC. Semithin serial sections of the IC were obtained and stained for GABA and Gly. Images of the tissue were digitized and used for a quantitative densitometric analysis of GABA immunostaining. The optical density, perimeter, and number of GABA- and Gly immunoreactive boutons apposed to the somata were measured. Data analysis included comparisons across IC subdivisions and across frequency regions within the central nucleus of the IC. The results show that: 1) 25% of the IC neurons are GABAergic; 2) there are more GABAergic neurons in the central nucleus of the IC than previously estimated; 3) GABAergic neurons are larger than non-GABAergic; 4) GABAergic neurons receive less GABA and glycine puncta than non-GABAergic; 5) differences across frequency regions are minor, except that the non-GABAergic neurons from high frequency regions are larger than their counterparts in low frequency regions; 6) differences within the laminae are greater along the dorsomedial-ventrolateral axis than along the rostrocaudal axis; 7) GABA and non-GABAergic neurons receive different numbers of puncta in different IC subdivisions; and 8) GABAergic puncta are both apposed to the somata and in the neuropil, glycinergic puncta are mostly confined to the neuropil.
KW - Amino acids
KW - Auditory pathway
KW - Axosomatic endings
KW - Inferior colliculus
KW - Inhibitory neurotransmitters
KW - Optical densitometry
UR - http://www.scopus.com/inward/record.url?scp=28844483712&partnerID=8YFLogxK
U2 - 10.1016/j.neuroscience.2004.12.030
DO - 10.1016/j.neuroscience.2004.12.030
M3 - Artículo (Contribución a Revista)
C2 - 16344160
AN - SCOPUS:28844483712
SN - 0306-4522
VL - 136
SP - 907
EP - 925
JO - Neuroscience
JF - Neuroscience
IS - 3
ER -