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ACETYLCHOLINESTERASE HISTOCHEMISTRY OF THE THALAMUS IN THE PRIMATE

ACETYLCHOLINESTERASE HISTOCHEMISTRY OF THE THALAMUS IN THE PRIMATE
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摘要 Objective To observe the distribution of acetylcholinesterase activity in the thalamus of the monkey.Methods Histochemical method was used to detect the acetylcholinesterase activity in the thalamus.Results Acetylcholinesterase was found to be inhomogeneous distribution in the primate thalamus and to reveal previously uncovered inhomogeneity within certain thalamic nuclei and their subdivisions. The medial, ventral and posterior nuclear groups displayed markedly uneven acetylcholinesterase reaction.In the mediodorsal nucleus,three distinct sbudivisions were revealed by acetylcholinesterase histochemistry, medial magnocellular part, ventral sector of central parvicellular part and dorsolateral sector of lateral pars multiformity showed weak, moderate and strong acetylcholinesterase activity, respectively. In the ventral nuclear group, acetylcholinesterase histochemistry was strong in the medial part of ventral posterior nucleus, moderate in the magnocellular part of ventral anterior, caudal, medial, oral and pars postrema parts of ventral lateral nucleus, as well as lateral part of ventral posterior nucleus, poor and weak in the inferior part of ventral posterior nucleus, par compacta of the medial part of ventral posterior nucleus and parvicellular part of ventral anterior nucleus. In the pulvinar nucleus, acetylcholinesterase reaction ranged from weak, moderate to strong in the parts of the oral, medial and lateral, as well as inferior of this nucleus, respectively. Regional variations of acetylcholinesterase activity within the thalamic nuclei and their subdivisions can help to identify them by acetylcholinesterase histochemistry. In addition, the dark patches of strong acetylcholinesterase activity contrasting with a lighter surrounding matrix were revealed within the parvicellular part and pars multiformis of mediodorsal nucleus, paracentral nucleus, central lateral nucleus, pars postrema part of ventral lateral nucleus and medial habenula nucleus, as well as medial part of pulvinar necleus, respectively.Conclusion Acetylcholinesterase histochemistry can serve as useful marker for delineating the thalamic nuclei and their sbudivisions. The different distribution of acetylcholinesterase histochemistry implies the activity of thalamic nuclei may be modulated by cholinergic systems. Objective To observe the distribution of acetylcholinesterase activity in the thalamus of the monkey.Methods Histochemical method was used to detect the acetylcholinesterase activity in the thalamus.Results Acetylcholinesterase was found to be inhomogeneous distribution in the primate thalamus and to reveal previously uncovered inhomogeneity within certain thalamic nuclei and their subdivisions. The medial, ventral and posterior nuclear groups displayed markedly uneven acetylcholinesterase reaction.In the mediodorsal nucleus,three distinct sbudivisions were revealed by acetylcholinesterase histochemistry, medial magnocellular part, ventral sector of central parvicellular part and dorsolateral sector of lateral pars multiformity showed weak, moderate and strong acetylcholinesterase activity, respectively. In the ventral nuclear group, acetylcholinesterase histochemistry was strong in the medial part of ventral posterior nucleus, moderate in the magnocellular part of ventral anterior, caudal, medial, oral and pars postrema parts of ventral lateral nucleus, as well as lateral part of ventral posterior nucleus, poor and weak in the inferior part of ventral posterior nucleus, par compacta of the medial part of ventral posterior nucleus and parvicellular part of ventral anterior nucleus. In the pulvinar nucleus, acetylcholinesterase reaction ranged from weak, moderate to strong in the parts of the oral, medial and lateral, as well as inferior of this nucleus, respectively. Regional variations of acetylcholinesterase activity within the thalamic nuclei and their subdivisions can help to identify them by acetylcholinesterase histochemistry. In addition, the dark patches of strong acetylcholinesterase activity contrasting with a lighter surrounding matrix were revealed within the parvicellular part and pars multiformis of mediodorsal nucleus, paracentral nucleus, central lateral nucleus, pars postrema part of ventral lateral nucleus and medial habenula nucleus, as well as medial part of pulvinar necleus, respectively.Conclusion Acetylcholinesterase histochemistry can serve as useful marker for delineating the thalamic nuclei and their sbudivisions. The different distribution of acetylcholinesterase histochemistry implies the activity of thalamic nuclei may be modulated by cholinergic systems.
作者 刘健 张巧俊
出处 《Academic Journal of Xi'an Jiaotong University》 2001年第2期101-106,共6页 西安交通大学学报(英文版)
关键词 mediodorsal nucleus ventral thalamic nuclei ACETYLCHOLINESTERASE HISTOCHEMISTRY THALAMUS MONKEY mediodorsal nucleus ventral thalamic nuclei acetylcholinesterase histochemistry thalamus monkey
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  • 1[1]Bradel JPA, Hirsch EC, Hersh LB, et al. Compartmental ordering of cholinergic innervation in the mediodorsal nucleus of the thalamus in human brain[J]. Brain Res,1990,515(2):117-125.
  • 2[2]Cavada C, Company T, Hemandez-Gonzalez A, et al. Acetylcholinesterase histochemistry in the macaque thalamus reveals territories selectively connected to frontal, parietal and temporal association cortices[J]. J Chemical Neuroanat,1995,8(2):245-257.
  • 3[3]Rico B, Cavada C. A population of cholinergic neurons is present in the macaque monkey thalamus[J]. Eur J Neurosci,1998,10(5):2346-2352.
  • 4[4]Olivier A, Parent A, Poirier LJ. Identification of the thalamic nuclei on the basis of their cholinesterase content in the monkey[J]. J Anat,1970,106(1):37-50.
  • 5[5]Barbas H, Henion THH, Dermon CR. Diverse thalamic projections to the prefrontal cortex in the rhesus monkey[J]. J Comp Neurol,1991,313(1):65-94.
  • 6[6]Heckers S, Geula C, Mesulam MM. Cholinergic innervation of the human thalamus: dual origin and differential nuclear distribution[J]. J Comp Neurol,1992,325(1):68-82.
  • 7[7]Steriade M, Parent A, Pare D, et al. Cholinergic and non-cholinergic neurons of cat basal forebrain project to reticular and mediodorsal thalamic nuclei[J]. Brain Res,1987,408(2):372-376.
  • 8[8]Schwartz ML, Mrzljak L. Cholinergic innervation of the mediodorsal thalamic nucleus in the monkey: ultrastructural evidence supportive of functional diversity[J]. J Comp Neruol,1993,327(1):48-62.
  • 9[9]Matelli M, Luppino G. Thalamic input to mesial and supperior area 6 in the macaque monkey[J]. J Comp Neurol,1996,372(1):59-87.

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