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1561 References Cited U.S. PATENT DOCUMENTS 4,195,355 3/1980 Rohrer ................................ 365/145 4,232,094 11/1980 Rhodes et al. ...................... 427/551 4,701,592 10/1987 Cheung .......................... 219A21.77 4,772,985 9/1988 Yasumoto et al. .................. 361/321 4,865,923 9/1989 Ralston et al. ...................... 427/552 5,027,253 6/1991 buffer et al. ............
printing supported by . Visit Chiesi at Stand D.30 TUESDAY, SEPTEMBER 27TH 2011 tion of corticosteroids and cold bronchial hyperresponsiveness (CBH) in patients with bronchial asthma (BA). Aim: To define the role of target-cells sensitivity to corticosteroids in cold bronchial hyperresponsiveness development in BA. Methods: 44 patients with BA were recruited. The mean level of asthma control wa...
We estimated genetic parameters for various phases of body and testicular growth until 550 days of age in Nelore cattle, using Bayesian inference, including correlation values and error estimates. Weight and scrotal records of 54,182 Nelore animals originating from 18 farms participating in the Brazilian Nelore Breeding Program (PMGRN) were included. The following traits were measured: we...
Aberrant expression of microRNAs plays vital roles in tumor development and progression. As transcription factors (TFs) are the critical components of signaling cascades, specific targeting effects of microRNAs to specific TFs may determine the role of microRNAs in different cancers. In this study, we identified Nuclear Factor I/B (NFIB) as one of the targets of miR-365 which was previously ver...
The Authors have studied the capacity to photoreact with native DNA and r-RNA using six coumarins and four 4',5'-dihydro-furo-coumarins. Six of these substances have shown a definite photoreactivity both with DNA and r-RNA, even if in a very much lower extent in respect to that of skin-photosensitizing furocoumarins. The low capacity to photoreact with nucleic acids of these substances is discu...
The most up-to-date version of this collection of homework exercises can always be found at 1. Find the general solution to the following ordinary differential equation. dy dx = (y − 1)(x − 2)(y + 3) (x − 1)(y − 2)(x + 3) 2. Find the general solution to the following ordinary differential equation. x 3 e 2x 2 +3y 2 dx − y 3 e −x 2 −2y 2 dy = 0 3. Find the general solution to the following ordin...
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