PubMed Health⌕ Search

Biomedical subjects

J K Brunso-Bechtold

Publications and source records attributed to J K Brunso-Bechtold.

40 records · Page 3Linked to original sources

HRP study of the organization of auditory afferents ascending to central nucleus of inferior colliculus in cat.

The ascending auditory projections to central nucleus of inferior colliculus and its ventrolateral and dorsomedial subdivisions (ICVL and ICDM) have been studied in cat using both pressure and electrophoretic injections of horseradish peroxidase (HRP). The results indicate that the predominant ascending projections to inferior colliculus originate in (1) contralateral cochlear nucleus, (2) contralateral and ipsilateral lateral superior olive, (3) ipsilateral medial superior olive, (4) ipsilateral ventral nucleus of the lateral lemniscus, (5) ipsilateral and contralateral dorsal nucleus of the lateral lemniscus, and (6) contralateral inferior colliculus. In addition, ipsilateral cochlear nucleus, ipsilateral and contralateral intermediate nucleus of the lateral lemniscus, ipsilateral, and to a lesser extent contralateral, periolivary nuclei project to inferior colliculus. Of these nuclei, the lateral superior olive projects exclusively to ICVL and ipsilateral cochlear nucleus and contralateral inferior colliculus project mostly, if not exclusively, to ICDM. Many of these projections demonstrate a cochleotopic organization and frequency a nucleotopic organization as well. A cochleotopic organization of the projections is apparent for cochlear nucleus and superior olivary complex. A nucleotopic organization suggests that the heaviest terminations of contralateral inferior colliculus are medial and dorsal in inferior colliculus, of medial superior olive are dorsal and lateral, of superior olivary complex are rostral, of cochlear nucleus are caudal, and of ventral nucleus of the lateral lemniscus are caudal.

Animals↗

Retrograde transport of nerve growth factor in chicken embryo.

We have demonstrated retrograde transport of nerve growth factor to the dorsal root ganglia in the chicken embryo. Polyacrylamide gel pellets impregnated with 125I-labeled nerve growth factor were implanted subcutaneously in the leg of stage 36 (10-day) chicken embryos. The embryos were killed 8 hr after implantation and were processed for routine autoradiography. Examination revealed significant labeling of all lumbar dorsal root ganglia on the side of the implanted pellet. The lateral motor columns and ventral roots as well as the dorsal roots on both sides were unlabeled. These observations show that in the chicken embryo, during the period of sensory cell sensitivity to nerve growth factor, there is a selective uptake and retrograde transport of nerve growth factor from the target area to the dorsal root ganglia. These observations supplement reports from other laboratories in which selective retrograde transport of nerve growth factor in neonatal and adult rodents has been demonstrated.

Animals↗