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41.
The evolution of photosynthesis 总被引:11,自引:0,他引:11
J M Olson 《Science (New York, N.Y.)》1970,168(930):438-446
42.
Brain grafts reduce motor abnormalities produced by destruction of nigrostriatal dopamine system 总被引:27,自引:0,他引:27
M J Perlow W J Freed B J Hoffer A Seiger L Olson R J Wyatt 《Science (New York, N.Y.)》1979,204(4393):643-647
In order to determine if brain tissue grafts can provide functional input to recipient central nervous system tissue, fetal rat dopamine-containg neurons were implanted adjacent to the caudate nucleus of adult recipients whose endogenous dopaminergic input had been destroyed. The grafts showed good survival and axonal outgrowth. Motor abnormalities, which had been induced by the destruction of the endogenous dopaminergic input to the caudate, were significantly reduced after grafting of the fetal brain tissue. These data suggest that such implants may be potentially useful in reversing deficits after circumscribed destruction of brain tissue. 相似文献
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44.
The gastric pathogen Helicobacter pylori is known to be able to use molecular hydrogen as a respiratory substrate when grown in the laboratory. We found that hydrogen is available in the gastric mucosa of mice and that its use greatly increased the stomach colonization by H. pylori. Hydrogenase activity in H. pylori is constitutive but increased fivefold upon incubation with hydrogen. Hydrogen concentrations measured in the stomachs of live mice were found to be 10 to 50 times as high as the H. pylori affinity for hydrogen. A hydrogenase mutant strain is much less efficient in its colonization of mice. Therefore, hydrogen present in animals as a consequence of normal colonic flora is an energy-yielding substrate that can facilitate the maintenance of a pathogenic bacterium. 相似文献
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Olson AR 《Science (New York, N.Y.)》1922,56(1443):231
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Olson EN 《Science (New York, N.Y.)》2001,291(5512):2327-2328
49.
Brace CL Hershkovitz P Hailman JP Kennington GS Olson WS 《Science (New York, N.Y.)》1966,153(3734):362-364
50.
Olson L 《Science (New York, N.Y.)》2000,290(5492):721-724
The degeneration of dopamine neurons in the nigrostriatal pathway of the brain results in the debilitating motor deficits of Parkinson's disease. In a Perspective, Olson discusses a new study (Kordower et al.) demonstrating that injection of a lentiviral vector containing the gene encoding GDNF (a trophic factor for dopamine neurons) into the nigrostriatal pathway of monkeys with PD prevents neuronal loss and reverses some of the motor deficits of this disease. 相似文献