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781.
The radical polymerizations of N-isopropylacrylamide (NIPAAm) in chloroform at low temperatures in the presence of pyridine N-oxide (PNO) derivatives were investigated. It was found that the methylation at meta-positions of PNO improved the isotactic specificity induced by PNO, whereas the methylation at ortho-positions prevented the induction of the isotactic specificity. NMR analysis revealed that NIPAAm and PNO derivatives formed predominantly 2:1 complex through a hydrogen-bonding interaction. Furthermore, the induction of the isotactic specificity was attributed to the conformationally limited propagating radicals. Based on these findings, the mechanism of the isotactic-specific radical polymerization was discussed.  相似文献   
782.
ABSTRACT: Our previous study demonstrated that, because of its substrate specificity, protein hydrolysates by protease D3, which is originated from soybean, exhibited the prominent property of being less bitter than other enzymatic hydrolysates. In the 1st experiment in this series, angiotensin I-converting enzyme (ACE) inhibitory peptides from soy protein hydrolysate by D3 were identified by the establishment of a novel and effective peptide identification method. The amino acid sequences of candidate ACE inhibitory peptides were determined by electrospray ionization mass/mass spectrometry (MS/MS) analysis after rough purification of the samples with gel filtration chromatography and reverse-phase chromatography. Some of the candidate peptides had amino acid sequences that showed homology with those of the reported ACE inhibitory peptides. Then, 8 types of novel candidate peptides were synthesized according to a solid-phase method, and their ACE inhibitory activity was confirmed as the IC50 value. The most potent inhibitor was NWGPLV (IC50= 21 μ M ). In the 2nd experiment, the antihypertensive activity of protein hydrolysates by D3 was investigated in spontaneously hypertensive model rats (SHRs). The dose-dependent antihypertensive effect of soy protein hydrolysate was confirmed, and systolic blood pressure was significantly reduced after the oral administration of doses exceeding 100 mg/kg. Casein hydrolysate was found to have the most potent effects on suppressing blood pressure as well as ACE inhibitory activity among the various food protein hydrolysates studied because of the primary structure of casein. These results indicate that hydrolysates by D3 could be a useful food ingredient because it has the physiological function (antihypertensive activity).  相似文献   
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784.
Abstract: A method for characterizing the pose (position and orientation) of large objects using multiple identification (ID) devices, such as radio‐frequency identification (RFID) devices, is proposed. Simultaneous management of construction materials and their data using ID devices for construction automation has been proposed. In this management scheme, workers or robots (1) acquire the ID of a device using an ID reader, (2) obtain construction material data using the ID, and (3) use the data to perform various tasks. In this scheme, the object pose is crucial because it can be changed by robots and workers who do not possess an ID reader or have not measured the pose previously. The proposed method uses the geometric relationship between the ID device attached to the object and the ID reader, and is based on the relationship between the relative displacements of multiple ID devices. The position and direction of each ID device and ID reader are measured with respect to the object and reference coordinate frames, respectively. Experimental results proved the feasibility of our proposed method.  相似文献   
785.
This paper focuses on the problem of time series forecasting using the Gaussian process models. The Gaussian process model is a nonparametric model and the output of the model has Gaussian distribution with mean and variance. The multiple Gaussian process models as every step ahead predictors are used for time series forecasting in accordance with the direct approach. The separable least‐squares approach that combines the genetic algorithm with the linear least‐squares method is applied to train these Gaussian process models. Simulation results are shown to illustrate the effectiveness of the proposed direct forecasting method. © 2011 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.  相似文献   
786.
787.
788.
Adhesion force analysis using atomic force microscopy clearly revealed for the first time the mechanism underlying the specific binding between a titanium surface and ferritin possessing the sequence of Ti-binding peptide in its N-terminal domain. Our results proved that the specific binding is due to double electrostatic bonds between charged residue and surface groups of the substrate. Furthermore, it is also demonstrated that the accretion of surfactant reduces nonspecific interactions, dramatically enhancing the selectivity and specificity of Ti-binding peptide.  相似文献   
789.
Iron-ion irradiations were carried out for 0.09wt%Cu A533B steel specimens at 290°C to investigate effects of dose rate change during irradiation; the irradiations consisted of the base irradiation (with an unchanged dose rate) and an additional one with changed dose rates from 1 to 50 times that of the base one. Nano-indentation hardness measurements showed that the increase in hardness was higher for lower dose rate of the base irradiation. A similar trend was identified during the additional irradiation. Transmission electron microscope (TEM) and three-dimensional atom probe (3DAP) analyses were carried out for the quantitative characterization of defect features. Mn/Ni/Si/Cu-enriched clusters and dislocation loops were observed in all specimens. The increase in hardness mainly depended on the formation of the solute atom clusters. The square root of the volume fraction of the solute atom clusters provided a good correlation with the increase in hardness. The effects of dose rate and dose rate change during irradiation were explained by the formation of solute atom clusters.  相似文献   
790.
With the rapid decline of fossil fuels, various types of biofuel cells (BFCs) are being developed as an alternative energy source. BFCs based on multi-enzyme cascade reactions are utilized to extract more electrons from substrates. Thus, more power density is obtained from a single molucule of substrate. In the present study, a bioanode that could extract six electrons from a single molecule of L-proline via a three-enzyme cascade reaction was developed and investigated for its possible use in BFCs. These enzymes were immobilized on the electrode to ensure highly efficient electron transfer. Then, oriented immobilization of enzymes was achieved using two types of self-assembled monolayers (SAMs). In addition, a microfluidic system was incorporated to achieve efficient electron transfer. The microfluidic system, in which the electrodes were arranged in a tooth-shaped comb, allowed for substrates to be supplied continuously to the cascade, which resulted in smooth electron transfer. Finally, we developed a high-performance bioanode which resulted in the accumulation of higher current density compared to that of a gold disc electrode (205.8 μA cm−2: approximately 187 times higher). This presents an opportunity for using the bioanode to develop high-performance BFCs in the future.  相似文献   
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