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41.
Delingette H Billet F Wong KC Sermesant M Rhode K Ginks M Rinaldi CA Razavi R Ayache N 《IEEE transactions on bio-medical engineering》2012,59(1):20-24
Personalization is a key aspect of biophysical models in order to impact clinical practice. In this paper, we propose a personalization method of electromechanical models of the heart from cine-MR images based on the adjoint method. After estimation of electrophysiological parameters, the cardiac motion is estimated based on a proactive electromechanical model. Then cardiac contractilities on two or three regions are estimated by minimizing the discrepancy between measured and simulation motion. Evaluation of the method on three patients with infarcted or dilated myocardium is provided. 相似文献
43.
Nicholas D. Lane Mu Lin Mashfiqui Mohammod Xiaochao Yang Hong Lu Giuseppe Cardone Shahid Ali Afsaneh Doryab Ethan Berke Andrew T. Campbell Tanzeem Choudhury 《Mobile Networks and Applications》2014,19(3):345-359
Smartphone sensing and persuasive feedback design is enabling a new generation of wellbeing apps capable of automatically monitoring multiple aspects of physical and mental health. In this article, we present BeWell+ the next generation of the BeWell smartphone wellbeing app, which monitors user behavior along three health dimensions, namely sleep, physical activity, and social interaction. BeWell promotes improved behavioral patterns via feedback rendered as an ambient display on the smartphone’s wallpaper. With BeWell+, we introduce new mechanisms to address key limitations of the original BeWell app; specifically, (1) community adaptive wellbeing feedback, which generalizes to diverse user communities (e.g., elderly, children) by promoting better behavior yet remains realistic to the user’s lifestyle; and, (2) wellbeing adaptive energy allocation, which prioritizes monitoring fidelity and feedback responsiveness on specific health dimensions (e.g., sleep) where the user needs additional help. We evaluate BeWell+ with a 27 person, 19 day field trial. Our findings show that not only can BeWell+ operate successfully on consumer smartphones; but also users understand feedback and respond by taking steps towards leading healthier lifestyles. 相似文献
44.
Nicholas Cravotta 《电子设计技术》2006,13(12):86-86,88,90
JTRS正致力于将可互换SDR(软件无线电)带入军用领域。但SDR对商业应用是否也是足够好的选择呢?SDR(软件无线电)并不是一种新技术。过去业界就已经尝试实现SDR,但都没有达到目标。最近激发起对SDR兴趣的是创新性软硬件技术的出现,这些技术能够以市场可承受的价格提供足够的灵活性、性能和功率效率。例如,宽带变换器现在可以工作在宽频率范围内,根据一种特定的位分辨率处理接收到的波形,而高频处理器可以直接与信号工作,从而省掉IF(中频)级,并降低成本。 相似文献
45.
R. J. Nicholas Y. Shimamoto Y. Imanaka N. Miura N. J. Mason P. J. Walker 《Solid-state electronics》1996,40(1-8):181-184
The effective mass has been studied in a series of semiconducting and semimetallic InAs/GaSb superlattices as a function of superlattice period and band gap. The mass is found to be determined almost entirely by the superlattice period, and is relatively insensitive to both the ratio of the InAs to GaSb thickness, and the structure of the interface layer, which was grown as both a monolayer of InSb and GaAs. Using pulsed magnetic fields of up to 180 T it was possible to observe spin-split cyclotron resonance at room temperature for all samples studied. On cooling the spin-splitting was found to be temperature dependent. This is attributed to the importance of electron-electron interactions which couple the two spin transitions as observed recently in high purity GaAs/GaAlAs heterojunctions at low temperatures. 相似文献
46.
H. H. Cheng R. J. Nicholas M. J. Lawless D. E. Ashenford B. Lunn 《Solid-state electronics》1996,40(1-8):69-74
We report measurements of magneto-reflectivity in ZnTe/Zn1−xMnxTe superlattices in magnetic fields up to 45 Tesla. From an analysis of the Zeeman splitting, we investigate the change of band alignment with field and the band offset ratio. A crossing of the 1 s exciton transitions from the ZnTe buffer layer and the 1 s heavy hole σ+ exciton of the superlattice is observed, providing unambiguous evidence of a band alignment change from type I to type II. The excitonic energy levels for both type I and type II band structure are calculated using a variational method. This model fits the experimental data very well at high field for both σ+ and σ− transitions. A conduction band offset ratio of ΔEc/ΔEs=0.72±0.04 is deduced. 相似文献
47.
Yasunori Okano Nicholas Audet Sadik Dost Yasuhiro Hayakawa Masashi Kumagawa 《International Journal of Numerical Modelling》1998,11(6):289-298
Oscillatory flow present in the melt during InSb single crystal growth using an RF-heating Czochralski method has been numerically investigated by means of the finite difference method using the HSMAC algorithm. The thermal boundary conditions required for the numerical simulation model were obtained experimentally by measuring the temperature profile along the crucible of a Czochralski system by means of thermocouples mounted in the crucible. Results of numerical simulations showed that the use of a third-order upwind discretization scheme was necessary to catch the oscillatory behaviour of the fluid flow in the melt. It was shown that this oscillatory behaviour strongly depends on the crystal rotation rate. Indeed, the oscillation period increases when the crystal rotation rate is above a critical rotation rate. In order to avoid such oscillations, crystal rotation rates lower than this critical value of crystal rotation rate must be selected for the growth of high quality crystals free of striations. © 1998 John Wiley & Sons, Ltd. 相似文献
48.
Nicholas Gagnon 《电信科学》2008,24(4):124-125
在无源光网络(PON)上激活服务后,电话、高速互联网和视频信号从中心局(CO)的光线路终端(OLT)发送到用户不同位置的光网络终端(ONT).这种情况下,如果有一个ONT出现故障,并且不能与OLT同步重启,PON的这一支路会进入非激活状态,并将暂停此支路相关用户的服务,这时必须找技术人员来进行故障诊断并重新启动服务.而一旦出现在非激活位置,技术人员必须测量光功率级别,以确定其是否足以使ONT与OLT同步. 相似文献
49.
50.
Influence of Bulky Organo‐Ammonium Halide Additive Choice on the Flexibility and Efficiency of Perovskite Light‐Emitting Devices 下载免费PDF全文
Lianfeng Zhao Nicholas Rolston Kyung Min Lee Xunhua Zhao Marcos A. Reyes‐Martinez Nhu L. Tran Yao‐Wen Yeh Nan Yao Gregory D. Scholes Yueh‐Lin Loo Annabella Selloni Reinhold H. Dauskardt Barry P. Rand 《Advanced functional materials》2018,28(31)
Perovskite light‐emitting diodes (LEDs) require small grain sizes to spatially confine charge carriers for efficient radiative recombination. As grain size decreases, passivation of surface defects becomes increasingly important. Additionally, polycrystalline perovskite films are highly brittle and mechanically fragile, limiting their practical applications in flexible electronics. In this work, the introduction of properly chosen bulky organo‐ammonium halide additives is shown to be able to improve both optoelectronic and mechanical properties of perovskites, yielding highly efficient, robust, and flexible perovskite LEDs with external quantum efficiency of up to 13% and no degradation after bending for 10 000 cycles at a radius of 2 mm. Furthermore, insight of the improvements regarding molecular structure, size, and polarity at the atomic level is obtained with first‐principles calculations, and design principles are provided to overcome trade‐offs between optoelectronic and mechanical properties, thus increasing the scope for future highly efficient, robust, and flexible perovskite electronic device development. 相似文献