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131.
We have developed a fetal movement monitoring system based on small displacement measurement of internal tissues. When ultrasonic pulses are transmitted to the fetus, the reflected ultrasonic waves which have a Doppler frequency shift due to the fetal movements are detected by using an ultrasonic pulsed Doppler technique. In this paper, we propose a displacement measurement method for internal tissues which is based on the Doppler signal digital detection technique. In the method, the received ultrasonic RF signals are sampled with a sampling frequency of four times higher than the centre frequency of the ultrasonic waves; the Doppler frequency shift signals are derived using digital signal processing. From the detected signals, the internal displacements are estimated using the arc-tangent method. The basic algorithm of the detection method has already been used in the area of blood flow sensing, however, we apply the algorithm to the displacement measurement of internal tissues. The comparison between the proposed method and the conventional method is presented. The fetal movement quantitative monitoring system based on the method which has been constructed is shown. 相似文献
132.
Toughness enhancement of cellulose nanocomposites by alkali treatment of the reinforcing cellulose nanofibers 总被引:1,自引:0,他引:1
Nanocomposites were produced with NaOH aqueous solution-treated microfibrillated cellulose (MFC) and phenolic resin, and the
mechanical properties were compared with their microcomposite counterparts based on pulp fiber. Tensile tests showed that
strong alkali-treated MFC nanocomposites with resin content around 20 wt.% achieved strain at fracture values two times higher
than those of untreated MFC nanocomposites and five times higher than those of untreated pulp microcomposites. The improvement
in work of fracture of alkali-treated MFC nanocomposites was attributed to the ductility of the nanofibers caused by transformations
in the amorphous regions along the cellulose microfibrils. 相似文献
133.
134.
Hiroshi Muramatsu Norio Chiba Tatsuaki Ataka Shinichiro Iwabuchi Naoki Nagatani Eiichi Tamiya Masamichi Fujihira 《Optical Review》1996,3(6):470-474
We have developed a system of scanning near-field optical/atomic force microscopy (SNOM/AFM) for fluorescence imaging and spectroscopy of biomaterials in air and liquid. SNOM/AFM uses a bent optical fiber simultaneously as a dynamic force AFM cantilever and a SNOM probe. Optical resolution of SNOM images shows about 50 nm in an illumination mode for a standard sample of a patterned chromium layer of 20 nm thickness on a quartz glass plate. The SNOM/AFM system contains a photon counting system and polychrometer/ICCD (intensified charge coupled device) system for observation of the fluorescence image and spectrograph of micro areas, respectively. The gene coding to green fluorescence protein (GFP) was cloned in recombinantEscherichia coli (E. coli). Topography, fluorescence image and spectrograph of recombinantE. coli by SNOM/AFM showed a difference in fluorescence in individualE. coli. Fluorescence activity of GFP can thus be used as a convenient indicator of transformation. SNOM/AFM is also applicable to observe immobilizedE. coli on a glass plate in water with a liquid chamber and may allow the viewing of observation of floating organisms. 相似文献
135.
Infrared spectral changes of lithographic printing plates were measuredin-situ by PAS and RAS. The advantages of PAS over RAS were discussed for the spectral measurements of organic coatings on roughened metal surface. 相似文献
136.
137.
Norio Kaneko Hiroaki Takahashi Keniti Higasi 《Journal of Physics and Chemistry of Solids》1977,38(8):849-853
The polarized Raman spectra below 300 cm?1 and the far infrared spectra from 400 to 30 cm?1 of triglycine selenate were measured at various low temperatures. It was found that the Raman doublet at 44 and 38 cm-1 observed in the paraelectric phase (space group C22h) was reduced to a singlet at 38 cm?1 in the ferroelectric phase (space group C22). This spectral anomaly in the paraelectric phase appears to be due to the splitting of the translational mode of glycine I along the crystallographic b axis, the splitting being caused by the tunneling of glycine I across the barrier between the two potential minima which are located symmetrically on either side of the crystallographic ac plane (i.e. at and . New Raman bands which appear below the Curie temperature are also discussed. 相似文献
138.
139.
Maeda H Yamamoto K Nomura Y Kohno I Hafsi L Ueda N Yoshida S Fukuda M Fukuyasu Y Yamauchi Y Itoh N 《Journal of the American Chemical Society》2005,127(1):68-69
Fluorometric detection of O2-* is performed based on desulfonylation of 3 to the corresponding fluoresceins 4 through nucleophilic substitution, and this fluorescing process is quite specific toward O2-* over H2O2, t-BuOOH, NaOCl, 1O2, HO*, NO*, and ONOO-. Furthermore, effects of glutathione, cytochrome P450 reductase/NADPH, and diaphorase/NADH are relatively small on the fluorescing process of probe 3 with X = Y = F, which is useful to detect O2-* released from neutrophils stimulated by phorbol myristate acetate with satisfactory sensitivity. 相似文献
140.