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21.
Gonçalves SI de Munck JC Verbunt JP Bijma F Heethaar RM Lopes da Silva F 《IEEE transactions on bio-medical engineering》2003,50(6):754-767
In vivo measurements of equivalent resistivities of skull (rho(skull)) and brain (rho(brain)) are performed for six subjects using an electric impedance tomography (EIT)-based method and realistic models for the head. The classical boundary element method (BEM) formulation for EIT is very time consuming. However, the application of the Sherman-Morrison formula reduces the computation time by a factor of 5. Using an optimal point distribution in the BEM model to optimize its accuracy, decreasing systematic errors of numerical origin, is important because cost functions are shallow. Results demonstrate that rho(skull)/rho(brain) is more likely to be within 20 and 50 rather than equal to the commonly accepted value of 80. The variation in rho(brain)(average = 301 omega x cm, SD = 13%) and rho(skull)(average = 12230 omega x cm, SD = 18%) is decreased by half, when compared with the results using the sphere model, showing that the correction for geometry errors is essential to obtain realistic estimations. However, a factor of 2.4 may still exist between values of rho(skull)/rho(brain) corresponding to different subjects. Earlier results show the necessity of calibrating rho(brain) and rho(skull) by measuring them in vivo for each subject, in order to decrease errors associated with the electroencephalogram inverse problem. We show that the proposed method is suited to this goal. 相似文献
22.
S. I. Rembeza N. N. Kosheleva E. S. Rembeza T. V. Svistova E. Yu. Plotnikova E. Suvaci E. Özel G. Tuncolu C. Açiksari 《Semiconductors》2014,48(8):1118-1122
The study is concerned with high-purity SnO2 and ZnO powders produced from salt solutions of corresponding metals by low-temperature hydrothermal synthesis. Fragments of SnO2 and ZnO ceramic targets formed as 1 × 8 cm bars are fabricated by dry pressing. The bars are used to form composite targets for ion-beam sputtering and the fabrication of compositionally different (SnO2) x (ZnO)1 ? x (x = 1–0.5) films appropriate for the production of gas sensors or transparent electronic devices. The optical and electrical parameters of the films with different compositions are studied. 相似文献
23.
Corinne Berland Jean-François Bercher Olivier Venard 《Analog Integrated Circuits and Signal Processing》2010,65(1):151-156
Linear amplification with Nonlinear Component (LINC) transmitter architecture is an efficient solution for high efficiency
amplification of signals. Nonetheless, this solution suffers both from gain impairment and delay mismatch between the two
signal paths. Indeed, a mismatch in propagation time between the paths degrades the quality of the transmit signal but also
disrupts the convergence of the gain correction algorithm resulting in a degradation of its performance. In this paper, we
present an adaptive algorithm based on a gradient descent formulation for the identification and correction of these delays.
We also demonstrate its effectiveness when applied prior to the gain adjustment procedure. The identification approach is
preferred here, to ensure monitoring facilities. 相似文献
24.
Daniel Coillot François O. Méar Renaud Podor Lionel Montagne 《Advanced functional materials》2010,20(24):4371-4374
A new process that enables glassy materials to self‐repair from mechanical damage is presented in this paper. Contrary to intrinsic self‐healing, which involves overheating to enable crack healing by glass softening, this process is based on an extrinsic effect produced by vanadium boride (VB) particles dispersed within the glass matrix. Self‐repair is obtained through the oxidation of VB particles, and thus without the need to increase the operating temperature. The VB healing agent is selected for its capacity to oxidize at a lower temperature than the softening point of the glass. Thermogravimetric analyses indeed show that VB oxidation is rapid and occurs below the glass transition temperature. Solid‐state nuclear magnetic resonance spectroscopy indicates that VB is oxidized into V2O5 and B2O3, which enable the local formation of glass. The autonomic self‐healing effect is demonstrated by an in situ experiment visualized using an environmental scanning electron microscope. It is shown that a crack could be healed by the VB oxidation products. 相似文献
25.
James W. Lamb Mathew C. Carter François Mattiocco 《Journal of Infrared, Millimeter and Terahertz Waves》2001,22(5):679-685
A series of grooved dielectric quarter-wave plates was made for radio astronomical Zeeman splitting observations at millimeter wavelengths. To meet the stringent requirements on reflection and polarization purity, a design method was formulated based on optimization of multiple reflections. The method solves the problem of achieving low reflections for both polarization components while attaining high purity of circular polarization. Several plates have been manufactured, tested, and used successfully for astronomical observations. 相似文献
26.
27.
Uğur Güdükbay Serkan Bayraktar Çetin Koca Bülent Özgüç 《Signal, Image and Video Processing》2014,8(3):415-422
We present a particle-based method to simulate and visualize the interaction of knitwear with fluids. The knitwear is modeled using spring-mass systems and the fluid is modeled using the smoothed particle hydrodynamics method. Two-way coupling is achieved by considering surface tension, capillary, and interparticle forces between the fluid and knitwear. The simulation of fluid and knitwear particles is performed on the graphics processing unit. Photorealistic rendering of knitwear and fluid is achieved by using a hardware-accelerated rasterization-based rendering technique. Our method is able to simulate and visualize the macro- and microstructure of free-form knitwear and reflective and refractive characteristics of the fluid surface. 相似文献
28.
Rousseau F Hellier P Letteboer MM Niessen WJ Barillot C 《IEEE transactions on medical imaging》2006,25(11):1492-1501
In this paper, three different calibration methods for three-dimensional (3-D) freehand ultrasound (US) are evaluated. Calibration is the process of estimating the rigid transformation from US image coordinates to the coordinate system of the tracking sensor mounted onto the probe. Calibration accuracy has an important impact on quantitative studies. Geometrical precision can also be crucial in many interventions and surgery. The proposed evaluation framework relies on a single point phantom and a 3-D US phantom which mimics the US characteristics of human liver. Four quality measures are used: 3-D point localization criterion, distance and volume measurements, and shape based criterion. Results show that during the acquisition procedure, volumetric measurements and shapes of the reconstructed object depend on probe motion used, particularly fan motions for which errors are larger. It is also shown that accurate calibration is essential to obtain reliable quantitative information. 相似文献
29.
Jean-Fran?ois Bousquet Geoffrey G. Messier Sebastian Magierowski 《Wireless Personal Communications》2011,56(4):779-789
Wireless local area networks (WLAN??s) based on the 802.11 standards are ubiquitous. However, the popularity of WLAN??s has made interference between WLAN users an issue. Spatial division multiple access (SDMA) is one way to orthogonalize these users and reduce interference. The contribution of this paper is to use real antenna array prototypes to determine the best array design for implementing indoor SDMA. Two SDMA antenna array prototypes are constructed and used to collect propagation measurements in an indoor environment. The propagation data is then incorporated into an SDMA orthogonal frequency division multiplexing (OFDM) analysis. This approach is able to very accurately predict how the two array designs will influence SDMA-OFDM performance in the indoor environment where the measurements are collected. The results indicate that the compact sectorized antenna array prototype performs better than the linear array prototype for in-room communication and that the reverse is true for inter-room communication. 相似文献
30.
P.-D. Mauroux A. Virazel A. Bosio L. Dilillo P. Girard S. Pravossoudovitch B. Godard G. Festes L. Vachez 《Journal of Electronic Testing》2012,28(2):215-228
The embedded Flash (eFlash) technology can be subject to defects creating functional faults. In this paper, we first generalize
the electrical model of the ATMEL TSTAC™ eFlash memory technology proposed in [10]. The model is composed of two layers: a functional layer representing the Floating Gate (FG) and a programming layer able
to determine the channel voltage level controlling the Fowler-Nordheim tunneling effect. The proposed model is validated by
means of simulations and comparisons with ATMEL silicon data. Then, we present a complete analysis of actual resistive defects
(open and short) that may affect the ATMEL TSTAC™ eFlash array by considering the proposed model on a hypothetical 4 × 4 array.
This analysis highlights the interest of the proposed model to provide a realistic set of fault models that has to be tested,
thus enhancing existing solutions for TSTAC™ eFlash testing. 相似文献