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81.
Ghislaine Le Prince Pia Delaere Christiane Fages Thierry Lefrançois Monique Touret Marcelle Salanon Marcienne Tardy 《Neurochemical research》1995,20(7):859-862
Glutamine synthetase (GS), a metabolic marker of the mature astrocyte, was investigated in the temporal neocortex of postmortem brain samples of 8 cases, either not demented or affected by senile dementia of the Alzheimer type. A negative correlation between the GS protein level and the density of both classical A4 deposits and senile plaques was evidenced. Such a correlation for GS underlies a dysfunction of the astroglial metabolism and particularly of the glutamate and ammonia neutralization. Since GS is sensitive to oxidative lesioning, the changes in GS level that were observed, occurring at the posttranslational stage, might reflect oxidative damage and have severe consequences on the pathological cascade of events. 相似文献
82.
The ecology of ruffe,Gymnocephalus cernuus (Pisces: Percidae) introduced to Mildevatn,western Norway 总被引:2,自引:0,他引:2
Steinar Kålås 《Environmental Biology of Fishes》1995,42(3):219-232
Synopsis Diet, habitat use, diel and seasonal activity and a number of population parameters were studied on ruffe,Gymnocephalus cernuus, introduced to Mildevatn, western Norway. This lake is sited outside the natural range of the ruffe and has a lower fish
diversity and a different fish species composition than within its native range. From June through September the ruffe was
planktivorous and mainly caught at 4 to 6 m depth in the benthic zone. At other times of year ruffe was feeding on zoobenthos
and caught deeper in the benthic zone. Ruffe was mainly day active. Zooplankton feeding during summer is the clearest difference
compared to ruffe populations living within its natural range. Presence of large zooplankton organisms available for ruffe
is suggested as the main reason for the difference found in food choice. The availability of large zooplankton is probably
due to community structure caused by a predator and lack of interspecific competition for zooplankton in the deeper parts
of the lake. Piscivorous brown trout.Salmo trutta, restrict the habitat of threespined stickleback,Gasterosteus aculeatus, to the zone of littoral vegetation, allowing high densities of larger zooplankton species likeBythotrephes longimanus to be present in the lake. Brown trout is present only in the upper light and well oxygenated parts of the lake, leaving
a refuge for the ruffe, where they can feed on the rich zooplankton community. 相似文献
83.
Petricciani JC 《Cytotechnology》1995,18(1-2):9-13
In the 1950s, only primary cell cultures were acceptable for the production of human biological products. This position was challenged in the late 1960s by human diploid cells (HDCs), and again in the 1980s by continuous cell lines (CCLs). The history of the HDC controversy is reviewed and lessons from that era that are relevant to the use of CCLs are pointed out. It became apparent in the early days of recombinant DNA technology in the 1980s that CCLs were needed for the development of some products. CCL acceptability therefore became more urgent, and several attempts were made to reach a consensus on regulatory issues. In 1986, the World Health Organization convened a Study Group to review the safety issues related to products derived from CCLs. The Study Group made a clear recommendation to pursue CCLs in product development because of the demonstrated capability of modern manufacturing processes to cope with contaminants. Issues such as acceptable levels of cellular DNA in products and the relationship of purity to safety are discussed in the context of the need for regulatory authorities, industry, and the general biomedical community to cooperate in addressing problems in a rational scientific manner. 相似文献
84.
Selection of habitat to avoid predation may affect the diet of young-of-year (YOY) lake trout (Salvelinus namaycush). YOY lake trout may use inshore habitat to avoid predation; this habitat may be sub-optimal for growth. To test this, YOY
lake trout were penned in nearshore and offshore pelagic areas of two arctic lakes. Toolik Lake had a lake trout population,
the other lake, S6, did not. YOY lake trout in Toolik Lake lost weight, but those offshore lost less weight. The YOY lake
trout in Lake S6 gained weight and those offshore gained more weight.
The primary diet item of the YOY lake trout in both lakes during this experiment was the zooplankter Diaptomis probilofensis; it was also one of the most abundant species. However, its density inshore in Lake S6 was similar to inshore and offshore
densities in Toolik Lake. The increased availability of alternative zooplankton prey in Lake S6 may account for the growth
differential of YOY lake trout in Lake S6 relative to Toolik Lake.
Bioenergetic modeling of YOY lake trout suggests that growth similar to that in the offshore of Lake S6 would be necessary
for successful recruitment. If the reduced zooplankton availability in Toolik Lake leads to the reduced growth of YOY in the
inshore and offshore pelagic areas, then these fish will be more susceptable to winter predation/starvation. For YOY lake
trout to survive in Toolik Lake they most likely shift to feeding on benthic prey before the end of their first summer.
Dept. of Chemical Engineering 相似文献
85.
Nonparametric tests of the Markov model for survival data 总被引:1,自引:0,他引:1
86.
Estimating predation risk in zooplankton communities: the importance of vertical overlap 总被引:1,自引:1,他引:0
In order to estimate predation risk in nature, two basic components of predation need to be quantified: prey vulnerability, and density risk. Prey vulnerability can be estimated from clearance rates obtained from enclosure experiments with and without predators. Density risk is a function of predator density, and the spatial and temporal overlap of the predator and prey populations. In the current study we examine the importance of the vertical component of overlap in making accurate estimates of predation risk from the invertebrate predator Mesocyclops edax on rotifer versus crustacean prey. The results indicate that assumptions of uniform predator and prey densities cause a significant underestimation of predation risk for many crustacean prey due to the coincident vertical migration of these prey with the predator. The assumption of uniformity is more reasonable for estimating predation risk for most rotifer prey. 相似文献
87.
88.
Retrospective studies and failure time models 总被引:12,自引:0,他引:12
89.
Linear rank tests with right censored data 总被引:6,自引:0,他引:6
90.
《Cell》2022,185(23):4409-4427.e18