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Institution

The Hertz Corporation

About: The Hertz Corporation is a based out in . It is known for research contribution in the topics: Population & Soil water. The organization has 9562 authors who have published 11044 publications receiving 447929 citations. The organization is also known as: Hertz Rental Car & Hertz Rent-a-Car.


Papers
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Journal ArticleDOI
TL;DR: The use of MEEKC for the determination of complex mixtures such as multi-ingredient formulations and drug-related impurities was successfully demonstrated and should be considered as an extremely useful option in pharmaceutical analysis.

126 citations

Journal ArticleDOI
TL;DR: The potent antiemetic action of GR38032F should be of clinical value in reducing the nausea and vomiting associated with radiotherapy or chemotherapy of cancer.

126 citations

Journal ArticleDOI
TL;DR: It is shown that negative selection and anti-CD3-induced apoptosis are significantly impaired in DR3-null mice and a nonredundant in vivo role for this TNF receptor family member in the removal of self-reactive T cells in the thymus is revealed.
Abstract: DR3 (Ws1, Apo3, LARD, TRAMP, TNFSFR12) is a member of the death domain-containing tumor necrosis factor receptor (TNFR) superfamily, members of which mediate a variety of developmental events including the regulation of cell proliferation, differentiation, and apoptosis. We have investigated the in vivo role(s) of DR3 by generating mice congenitally deficient in the expression of the DR3 gene. We show that negative selection and anti-CD3-induced apoptosis are significantly impaired in DR3-null mice. In contrast, both superantigen-induced negative selection and positive selection are normal. The pre-T-cell receptor-mediated checkpoint, which is dependent on TNFR signaling, is also unaffected in DR3-deficient mice. These data reveal a nonredundant in vivo role for this TNF receptor family member in the removal of self-reactive T cells in the thymus.

126 citations

Journal ArticleDOI
TL;DR: The degradation rates of five triazole fungicides were measured in laboratory tests with two soils over 720 days, with analysis of soil extracts by high-pressure liquid chromatography.
Abstract: Triazole fungicides are now widely used commercially and several are known to be persistent in soil. The degradation rates of five such fungicides were measured in laboratory tests with two soils over 720 days, with analysis of soil extracts by high-pressure liquid chromatography. Behaviour in a sandy loam and a clay loam were similar, and incubation of the compounds either singly or in admixture did not influence loss rates except for those of flutriafol which were lower in the latter. Triadimefon was quite rapidly reduced to triadimenol, though traces of the former were always found, indicating a possible redox equilibrium. Flutriafol, epoxiconazole and triadimenol (derived from triadimefon) were very persistent, breakdown following first-order kinetics with half-lives greater than two years at 10 degrees C and 80% field capacity. Propiconazole was moderately persistent, with a half-life of about 200 days under these conditions. Degradation rates increased about 3-fold as the temperature was increased from 5 to 18 degrees C, though decreasing soil moisture to 60% field capacity only slightly slowed degradation. The rate constants obtained are used in a companion paper describing field studies on these two soils to compare laboratory-measured degradation rates with losses in the field following commercial sprays. (C) 1999 Society of Chemical Industry.

125 citations

Journal ArticleDOI
TL;DR: It is suggested that either apolipoprotein E is of no importance in the maintenance of synaptic integrity and in processes of CNS plasticity and repair, or more likely, alternative (apolipo)proteins may compensate for the loss of Apolipopprotein E in the knockout animals.

125 citations


Authors

Showing all 9562 results

NameH-indexPapersCitations
Pete Smith1562464138819
J. H. Hough11790489697
Christine H. Foyer11649061381
Steve P. McGrath11548346326
Nial R. Tanvir11287753784
Fang-Jie Zhao10737239328
Martin R Turner9850334965
Peter R. Shewry9784540265
Helen E. Heslop9752336292
Stephen E. Harris9542146780
Brian C. J. Moore9371138036
Ken E. Giller9255536374
Kingston H. G. Mills9231329630
Alex B. McBratney9255234770
David M. Glover9230124620
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20222
202145
202046
201939
201855
201757