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71.
Aikaterini-Evangelia Mylona Andreas Bimpilas Dimitrios Tsimogiannis Vassiliki Oreopoulou 《Food science and biotechnology》2013,22(6):1515-1522
Mavrokountoura, a clone of the Mandilaria grape cultivar, was studied for the first time. The morphological characteristics and composition of berries were determined, as well as total phenols and tannins in skins, flesh, and seeds. The skin anthocyanins were identified using HPLC-MS/MS and quantified using HPLC-DAD. Two main anthocyanins were identified as malvidin-3-O-glucoside and malvidin-3-O-(6″-p-coumaroyl)-glucoside. One minor anthocyanin was identified as malvidin-3-O-(6″-acetyl)-glucoside. Glycosides of delphinidin, petunidin, and peonidin were detected in traces. Young Mavrokountoura wine was also studied. Extraction of total phenols from the grape to the young wine amounted to 32%, composing mainly non-tannic phenols. The individual anthocyanin components exhibited different extractability values from the skin to wine, ranging between 10–94%. 相似文献
72.
73.
Quality changes of cuttlefish stored under various atmosphere modifications and vacuum packaging 下载免费PDF全文
74.
Water Resources Management - Adaptation aims at increasing the resilience of natural and human systems to current and future impacts of climate change. The main objective of the current research is... 相似文献
75.
Nikolaos Kroupis Nikolaos Zervas Minas Dasygenis Konstantinos Tatas Antonios Argyriou Dimitrios Soudris Antonios Thanailakis 《The Journal of VLSI Signal Processing》2006,44(1-2):153-171
The continuous increase of the computational power of programmable processors has established them as an attractive design
alternative, for implementation of the most computationally intensive applications, like video compression. To enforce this
trend, designers implementing applications on programmable platforms have to be provided with reliable and in-depth data and
instruction analysis that will allow for the early selection of the most appropriate application for a given set of specifications.
To address this need, we introduce a new methodology for early and accurate estimation of the number of instructions required
for the execution of an application, together with the number of data memory transfers on a programmable processor. The high-level
estimation is achieved by a series of mathematical formulas; these describe not only the arithmetic operations of an application,
but also its control and addressing operations, if it is executed on a programmable core. The comparative study, which is
done using three popular processors (ARM, MIPS, and Pentium), shows the high efficiency and accuracy of the methodology proposed,
in terms of the number of executed (micro-)instructions (i.e. performance) and the number of data memory transfers (i.e. memory
power consumption). Using the proposed methodology we estimated an average deviation of 23% in our estimated figures compared
with the measurements taken from the real execution on the CPUs.
This work was supported by the project PENED ’99 ED501 funded by GSRT of the Greek Ministry of Development, and the project
PRENED ’99 KE 874 funded by the Research Committee of the Democritus University of Thrace. This work was partially sponsored
by a scholarship from the Public Benefit Foundation of Alexander S. Onassis (Minas Dasygenis).
Nikolaos Kroupis was born in Trikala in 1976. He receiver the engineering degree and Ms.C. degree in Department of Electrical and Computer
Engineering from Democritous University of Thrace, Greece, in 2000 and 2002, respectively. Since 2002 he has been a Ph.D.
student at the Laboratory of Electrical and Electronic Materials Technology. His research interests are in software/hardware
co-design of embedded system for signal processing applications.
Nikos D. Zervas received a Diploma in Electrical & Computer Engineering from University of Patras, Greece in 1997. He received the Ph.D.
degree in the Department of Electrical and Computer Engineering of the same University in 2004. His research interests are
in the area of high-level, power optimization techniques and methodologies for multimedia and telecommunication applications.
He has received an award from IEEE Computer Society in the context of Low-Power Design Contest of 2000 IEEE Computer Elements
Mesa Workshop. Mr. Zervas is a member of the IEEE, ACM and of the Technical Chamber of Greece.
Minas Dasygenis was born in Thessaloniki in 1976. He received his Diploma in Electrical and Computer Engineering in 1999, from the Democritus
University of Thrace, Greece, and for his diploma Thesis he was honored by The Technical Chamber of Greece and Ericsson Hellas.
In 2005, he received his PhD Degree from the Democritus University of Thrace. His research interests include low-power VLSI
design of arithmetic circuits, residue number system, embedded architectures, DSPs, hardware/ software codesign and IT security.
He has published more than 20 papers in international journals and conferences and he has been a principal researcher in three
European research projects.
Konstantinos Tatas received his degree in Electrical and Computer Engineering from the Democritus University of Thrace, Greece in 1999. He received
his Ph.D. in the VLSI Design and Testing Center in the same University by June 2005. He has been employed as an RTL designer
in INTRACOM SA, Greece between 2000 and 2003. His research interests include low-power VLSI design of DSP and multimedia systems,
computer arithmetic, IP core design and design for reuse.
Antonios Argyriou received the degree in Electrical and Computer engineering from the Democritous University of Thrace, Greece, in 2001, and
the M.S. and Ph.D. degrees in Electrical and Computer engineering from the Georgia Institute of Technology, Atlanta, in 2003
and 2005, respectively. His primary research interests include wireless networks, mobile computing and multimedia communications.
He is a member of the IEEE and ACM.
Dimitrios Soudris received his Diploma in Electrical Engineering from the University of Patras, Greece, in 1987. He received the Ph.D. Degree
in Electrical Engineering, from the University of Patras in 1992. He is currently working as Ass. Professor in Dept. of Electrical
and Computer Engineering, Democritus University of Thrace, Greece. His research interests include low power design, parallel
architectures, embedded systems design, and VLSI signal processing. He has published more than 140 papers in international
journals and conferences. He was leader and principal investigator in numerous research projects funded from the Greek Government
and Industry as well as the European Commission (ESPRIT II-III-IV and 5th and 6th IST). He has served as General Chair and
Program Chair for the International Workshop on Power and Timing Modelling, Optimisation, and Simulation (PATMOS). He received
an award from INTEL and IBM for the project results of LPGD #25256 (ESPRIT IV). He is a member of the IEEE, the VLSI Systems
and Applications Technical Committee of IEEE CAS and the ACM.
Antonios Thanailakis was born in Greece on August 5, 1940. He received B.Sc. degrees in physics and electrical engineering from the University
of Thessaloniki, Greece, 1964 and 1968, respectively, and the Msc. and Ph.D. Degrees in electrical engineering and electronics
from UMIST, Manchester, U.K. in 1968 and 1971, respectively. He has been a Professor of Microelectronics in Dept. of Electrical
and Computer Eng., Democritus Univ. of Thrace, Xanthi, Greece, since 1977. He has been active in electronic device and VLSI
system design research since 1968. His current research activities include microelectronic devices and VLSI systems design.
He has published a great number of scientific and technical papers, as well as five textbooks. He was leader for carrying
out research and development projects funded by Greece, EU, or other organizations on various topics of Microlectronics and
VLSI Systems Design (e.g. NATO, ESPRIT, ACTS, STRIDE). 相似文献
76.
Assessment of a modification to the Brinell method for determining solid wood hardness 总被引:1,自引:0,他引:1
Charalampos Lykidis Miltiadis Nikolakakos Evaggelos Sakellariou Dimitrios Birbilis 《Materials and Structures》2016,49(3):961-967
Purpose of this study was to assess a modification to the hardness determination method in order to mitigate the effect of visual measurements on the consistency of Brinell method and accuracy of the results. The amendment has been previously proposed by other researchers and refers to the automated determination of indentation diameter and relies on the ability of modern testing machines to accurately measure indentation depth, through which the calculation of indentation diameter is possible. From the results of this study it was shown that the hardness values acquired by the proposed modification presented statistically significant difference compared to those acquired using the visual method described in EN1534 (Wood and parquet flooring—determination of resistance to indentation (Brinell)—test method, 2000). Moreover, compared to the standard methodology, the application of the proposed amendment led to hardness values which are better correlated to density as well as Janka hardness for the six different solid wood species tested. Furthermore, the proposed modification resulted to hardness values which seem to be less affected by the presence of varnish coatings. 相似文献
77.
We present a new synthetic approach leading to the formation of polypyrrole architectures in submicron level and to silver/polypyrrole nanocomposites via an interfacial polymerization in a water/chloroform interface. The oxidizing agent was either Ag(I) or Fe(III). In the first case, silver nanoparticles resulted. The mean diameter of the polypyrrole structures is in the range of 200-300 nm according to the addition or not of various surfactants. The progress of the reaction was studied by UV-visible spectroscopy, which also revealed the formation of a polaron band during the growth of the oligomers. The crystal structure of the polymers was examined by X ray diffractometry and all samples appeared to be amorphous, while the samples were further characterized by thermogravimetric analysis and FT-IR spectroscopy. 相似文献
78.
Panagiotis Sarantis Alexandros Bokas Adriana Papadimitropoulou Evangelos Koustas Stamatios Theocharis Pavlos Papakotoulas Dimitrios Schizas Alexandros Papalampros Evangelos Felekouras Athanasios G. Papavassiliou Michalis V. Karamouzis 《International journal of molecular sciences》2021,22(13)
Pancreatic Cancer (PC) is recognized as a highly thrombogenic tumor; thus, low-molecular-weight heparin (LMWH) such as tinzaparin is routinely used for PC patients. On the basis of combinatorial therapy approaches to treat highly malignant and refractory cancers such as PC, we hypothesized that tinzaparin can augment the effectiveness of traditional chemotherapeutic drugs and induce efficient antitumor activity. PANC-1 and MIAPaCa-2 were incubated alone or in combination with tinzaparin, nab-paclitaxel and gemcitabine. In vivo evaluation of these compounds was performed in a NOD/SCID mouse using a model injected with PANC-1. Tinzaparin enhances the anti-tumor effects of nab-paclitaxel and gemcitabine in mtKRAS PC cell lines via apoptosis in in vitro experiments. The triple combination power acts through the induction of apoptosis, reduction of the proliferative potential and angiogenesis; hence, contributing to a decrease in tumor volume observed in vivo. The triple regimen provided an extra 24.3% tumor reduction compared to the double combination (gemcitabine plus nab-paclitaxel). Combinatorial strategies can create novel therapeutic approaches for the treatment of patients with PC, achieving a better clinical outcome and prolonged survival. Further prospective randomized research is needed and the investigation of various concentrations of tinzaparin above 150 UI/Kg, would potentially provide a valuable synergistic effect to the conventional therapeutic compounds. 相似文献
79.
80.
Experimental protein structures provide spatial information at the atomic level. A further dimension, time, is supplemented by molecular dynamics. Since the pioneering work on the 58-residue inhibitor of bovine pancreatic trypsin in the group of Martin Karplus in the seventies, molecular dynamics simulations have shown that the intrinsic flexibility of proteins is essential for their function. Here, we review simulation studies of bromodomains. These protein modules are involved in the recognition of acetylated lysine side chains, a post-translational modification frequently observed in histone tails. The molecular dynamics simulations have unmasked: (i) the large plasticity of the loops lining the acetyl-lysine binding site (coupled to its self-occlusion), and (ii) multiple binding modes of acetyl-lysine. These simulation results suggest that recognition of histone tails by bromodomains is modulated by their intrinsic flexibility, and further corroborate the utility of molecular dynamics in understanding (macro)molecular recognition. 相似文献