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  • 1
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    Polymers for Advanced Technologies 3 (1992), S. 345-350 
    ISSN: 1042-7147
    Keywords: Transplantation ; Immunosuppression ; Controlled release drugs ; Steroids ; Cyclosporine ; Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Systemic immunosuppression frequently results in severe side effects. To evaluate a method of limiting the adverse effects of immunosuppression, we implanted controlled release matrices containing cyclosporine-A (Cy) embedded (0.2 or 1 mg/kg/day released), steroid embedded (2%, 0.2% and 0.02% dexamethasone, Dex) or both (Cy 0.2 mg and Dex 0.2%) locally around the transplanted heart at the time of rat heterotopic (neck) heart transplants. Controls received empty (non-drug) matrix implants. To elucidate a local effect, additional groups received Cy (0.2 mg) or Dex (0.2%) matrix implanted in a subdermal distal leg pouch at the time of heart transplant, without a local neck implant. Rejection was determined by the lack of transplanted heart contractions. Recipient animals received no other form of immunosuppression.The Cy (0.2 mg) animals had whole-blood Cy levels monitored for 6 weeks following transplantation. Cy levels peaked at 7-10 days after transplant (119 ± 26 ng/ml) and decayed to 〈50 ng/ml by day 42. At no time did whole-blood Cy levels reach clinically significant levels. Additional animals had whole-blood, heart and kidney Cy levels measured at day 6 post-transplant. Both doses of local Cy demonstrated good survival benefit and were well absorbed locally, resulting in high Cy levels in heart tissue (〉9,000 ng/mg). Furthermore, while low-dose Cy (0.2 mg) demonstrated significant survival benefit, these animals had clinically negligible blood Cy levels on day 6 (〈100 ng/ml) and very low kidney Cy levels. Interestingly, the lowest dose of Dex demonstrated no survival benefit, while the mid- and high-Dex doses demonstrated good survival benefit: however, the high-Dex dose had poor wound healing. Cy and Dex combination did not increase efficacy, perhaps due to release problems from physicochemical interactions.Local immunosuppression with a controlled release matrix resulted in a significant survival advantage and was effective in delaying rejection. This approach may prove advantageous clinically, in extending transplantation and lessening immunosuppression side effects.
    Additional Material: 4 Ill.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2009-05-19
    Description: Five Microtops II sun photometers were studied in detail at the NASA Goddard Space Flight Center (GSFC) to determine their performance in measuring aerosol optical thickness (AOT or Tau(sub alphalambda) and precipitable column water vapor (W). Each derives Tau(sub alphalambda) from measured signals at four wavelengths lambda (340, 440, 675, and 870 nm), and W from the 936 nm signal measurements. Accuracy of Tau(sub alphalambda) and W determination depends on the reliability of the relevant channel calibration coefficient (V(sub 0)). Relative calibration by transfer of parameters from a more accurate sun photometer (such as the Mauna-Loa-calibrated AERONET master sun photometer at GSFC) is more reliable than Langley calibration performed at GSFC. It was found that the factory-determined value of the instrument constant for the 936 nm filter (k= 0.7847) used in the Microtops' internal algorithm is unrealistic, causing large errors in V(sub 0(936)), Tau(sub alpha936), and W. Thus, when applied for transfer calibration at GSFC, whereas the random variation of V(aub 0) at 340 to 870 nm is quite small, with coefficients of variation (CV) in the range of 0 to 2.4%, at 936 nm the CV goes up to 19%. Also, the systematic temporal variation of V(sub 0) at 340 to 870 nm is very slow, while at 936 nm it is large and exhibits a very high dependence on W. The algorithm also computes Tau(sub alpha936) as 0.91Tau(sub alpha870), which is highly simplistic. Therefore, it is recommended to determine Tau(sub alpha936) by logarithmic extrapolation from Tau(sub alpha675) and Tau(sub alpha 870. From the operational standpoint of the Microtops, apart from errors that may result from unperceived cloud contamination, the main sources of error include inaccurate pointing to the Sun, neglecting to clean the front quartz window, and neglecting to calibrate correctly. If these three issues are adequately taken care of, the Microtops can be quite accurate and stable, with root mean square (rms) differences between corresponding retrievals from clean calibrated Microtops and the AERONET sun photometer being about +/-0.02 at 340 nm, decreasing down to about +/-0.01 at 870 nm.
    Keywords: Instrumentation and Photography
    Format: text
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  • 3
    Publication Date: 2019-07-13
    Description: MODIS-DT Collection 6 - Aqua/Terra level 2, 3; entire record processed - "Trending" issues reduced - Still a 15% or 0.02 Terra vs Aqua offset. - Terra/Aqua convergence improved with C6+, but bias remains. - Other calibration efforts yield mixed results. VIIRS-DT in development - VIIRS is similar, yet different then MODIS - With 50% wider swath, VIIRS has daily coverage - Ensures algorithm consistency with MODIS. - Currently: 20% NPP vs Aqua offset over ocean. - Only small bias (%) over land (2012-2016) - Can VIIRS/MODIS create aerosol CDR? Calibration for MODIS - VIIRS continues to fundamentally important. It's not just Terra, or just Aqua, or just NPP-VIIRS, I really want to push synergistic calibration.
    Keywords: Instrumentation and Photography
    Type: GSFC-E-DAA-TN34142 , 2016 MODIS/VIIRS Science Team Meeting; Jun 06, 2016 - Jun 10, 2016; Silver Spring, MD; United States
    Format: application/pdf
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