Literature DB >> 8725303

Comparison of cerebellothalamic and pallidothalamic projections in the monkey (Macaca fuscata): a double anterograde labeling study.

S T Sakai1, M Inase, J Tanji.   

Abstract

To address the question of segregated projections from the internal segment of the globus pallidus (GPi) and the cerebellar nuclei (Cb) to the thalamus in the monkey, we employed a double anterograde labeling strategy combining the anterograde transport of horseradish peroxidase conjugated to wheat germ agglutinin (WGA-HRP) with biotinylated dextran amine (BDA) transport. The tissue was processed sequentially for WGA-HRP, and then BDA immunohistochemistry using two different chromogens. Since the two labels were easily distinguishable on the same histological section, the interrelationship between the cerebellar and pallidal projection systems could be directly evaluated. We found that both the cerebellothalamic and pallidothalamic label consisted of dense plexuses of labeled fibers and swellings in a patch-like configuration. The patches or foci of labeling were distributed either as dense single label or as interdigitating patches of double label. We found dense single label in the central portion of the ventral anterior nucleus pars principalis (VApc) and the ventral lateral nucleus pars oralis (VLo) following the GPi injections or in the central portion of the ventral posterior lateral nucleus pars oralis (VPLo) and nucleus X (X) following the cerebellar nuclei injections. Complementary interdigitating patches of WGA-HRP and BDA labeling were found primarily in transitional border regions between thalamic nuclei. On occasion, we found overlap of both labels. We observed a gradient pattern in the density of the pallidothalamic and cerebellothalamic projections. The pallidothalamic territory included VApc, VLo, and the ventral lateral nucleus pars caudalis (VLc), with the density of these projections decreasing along an anterior to posterior gradient in the thalamus. Occasional patches of pallidal label were found in VPLo and nucleus X. Conversely, the density of cerebellothalamic projections increased along the same gradient, with the cerebellothalamic territory extending anteriorly beyond the cell-sparse zones of VPLo, X, and VLc to include VLo and VApc also. These data suggest that although the cerebellar and pallidal projections primarily occupy separate thalamic territories, individual thalamic nuclei receive differentially weighted inputs from these sources.

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Year:  1996        PMID: 8725303     DOI: 10.1002/(SICI)1096-9861(19960429)368:2<215::AID-CNE4>3.0.CO;2-6

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  39 in total

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Journal:  J Neurosci       Date:  2000-05-15       Impact factor: 6.167

2.  Cerebellar projections to the prefrontal cortex of the primate.

Authors:  F A Middleton; P L Strick
Journal:  J Neurosci       Date:  2001-01-15       Impact factor: 6.167

3.  Cortical activation during rhythmic hand movements performed under three types of control: an fMRI study.

Authors:  R A Bernard; D A Goran; S T Sakai; T H Carr; D McFarlane; B Nordell; T G Cooper; E J Potchen
Journal:  Cogn Affect Behav Neurosci       Date:  2002-09       Impact factor: 3.282

4.  Kinaesthetic neurons in thalamus of humans with and without tremor.

Authors:  Z H T Kiss; K D Davis; R R Tasker; A M Lozano; B Hu; J O Dostrovsky
Journal:  Exp Brain Res       Date:  2003-03-07       Impact factor: 1.972

5.  Signals from the ventrolateral thalamus to the motor cortex during locomotion.

Authors:  Vladimir Marlinski; Wijitha U Nilaweera; Pavel V Zelenin; Mikhail G Sirota; Irina N Beloozerova
Journal:  J Neurophysiol       Date:  2011-10-12       Impact factor: 2.714

6.  Unravelling cerebellar pathways with high temporal precision targeting motor and extensive sensory and parietal networks.

Authors:  Fahad Sultan; Mark Augath; Salah Hamodeh; Yusuke Murayama; Axel Oeltermann; Alexander Rauch; Peter Thier
Journal:  Nat Commun       Date:  2012-06-26       Impact factor: 14.919

7.  Involvement of the human ventrolateral thalamus in olfaction.

Authors:  S Zobel; T Hummel; J Ilgner; A Finkelmeyer; U Habel; D Timmann; J B Schulz; M Kronenbuerger
Journal:  J Neurol       Date:  2010-07-17       Impact factor: 4.849

8.  The thalamic connections of motor, premotor, and prefrontal areas of cortex in a prosimian primate (Otolemur garnetti).

Authors:  P-C Fang; I Stepniewska; J H Kaas
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Review 9.  Cerebellum: connections and functions.

Authors:  Mitchell Glickstein; Karl Doron
Journal:  Cerebellum       Date:  2008-11-11       Impact factor: 3.847

10.  Responses of ventral posterior thalamus neurons to three-dimensional vestibular and optic flow stimulation.

Authors:  Hui Meng; Dora E Angelaki
Journal:  J Neurophysiol       Date:  2009-12-02       Impact factor: 2.714

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