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  • 1
    ISSN: 1432-1106
    Keywords: Enkephalin projection ; Bed nucleus of stria terminalis ; Central amygdaloid nucleus ; Immunocytochemistry ; Double-staining method
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary The destruction of th central amygdaloid nucleus (Ce), which contains a large group of neurons with leucine-enkephalin (L-ENK)-like immunoreactivity (L-ENKI), resulted in a marked ipsilateral reduction of these fibers in the bed nucleus of the stria terminalis (BST) suggesting that L-ENKI neurons in the Ce project ipsilaterally to the BST. This was supported by the finding that injection of biotin-wheat germ agglutinin into the BST labeled many neurons in the Ce. Simultaneous staining with antiserum showed that some of these neurons are L-ENKI. The L-ENKI fibers from the Ce reach the BST via two pathways; one from the ventral amygdalofugal pathway (VA), which terminate in the ventral subdivision of the BST pars lateralis (BSTL), and the other from the stria terminalis (ST), which terminates in the lateral subdivision of the BSTL, because (1) accumulation of L-ENKI structures appeared in the axons of these two systems on the amygdaloid side, (2) transection or destruction of the ST alone caused only a slight reduction of ENKI fibers in the lateral subdivision of the BSTL ipsilaterally and (3) transection or destruction of VA alone markedly reduced the number of L-ENKI fibers in the ventral subdivision of the ipsilateral BSTL. Thus, the VA L-ENKI fiber system is the major source of L-ENKI fibers in the ventral subdivision, while the ST L-ENKI fiber system is a minor source of the L-ENKI fibers in the lateral subdivision. The presence of an intrinsic L-ENKI system in the BST which may innervate the lateral subdivision was also suggested.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1434-601X
    Keywords: 25.70.Lm
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract Kinetic energy spectra and angular distributions of projectile-like products in an16O-induced reaction on197Au were measured by counter method at projectile energies of 8.8 MeV/u and 6.6 MeV/u. The mechanism of nucleon transfer reaction was discussed in terms of distinct groups of the products from quasi-elastic transfer (QET) and of those from deep inelastic transfer (DIT). Observations indicated that QET takes place along a trajectory near the Coulomb trajectory. Damped components of the projectile-like products observed were concluded to be produced in a very short interaction time. Cross sections of these products were reproduced by the sum rule model better than by the diffusion model, and their total kinetic energies can be explained well by a recoil formula by Siemens et al. with an assumption of a short-time interaction.
    Type of Medium: Electronic Resource
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