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1.
第十六届国际非线性声学会议(InternationalSymposium on Nonlinear Acoustics,简称16thISNA)于2002年8月19日至23日在俄罗斯首都莫斯科市举行。来自全世界28个国家和地区约300人参加了会议,其中俄罗斯160人,美国32人,法国16人,日本11人,德国9人,英国7人,瑞典7人,….等等;中国代表有3人,他们是南京大学龚秀芬教授和王耀俊教授,江西吉安师范学院李化茂教授。ISNA是由国际非线性声学学术委员会主办的国际学术会议,每3年举行一次,自1968年以来已举办了16次,在声学和非线性声学领域具有很大的影响。本届会议由俄罗斯的莫斯科大学组织和承办。会议 相似文献
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Finite element modeling of acoustic scattering from an encapsulated microbubble near rigid boundary 下载免费PDF全文
This article proposes a finite element model (FEM) for
predicting the acoustic scattering from an encapsulated microbubble
near rigid boundary. The validity of the model is first examined by
comparing the acoustic nonlinear response of a free microbubble with
that obtained by the Church model. Then this model is used to
investigate the effect of the rigid boundary on acoustic scattering
signals from microbubble. The results indicate that the resonance
frequency decreases while the oscillation amplitude increases as the
microbubble approaches the rigid boundary. In addition, the
fundamental component of the acoustic scattering signal is enhanced
compared with that of the free microbubble. 相似文献
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The acoustic wave propagation from a two-dimensional subwavelength slit surrounded by metal plates decorated with Helmholtz resonators(HRs) is investigated both numerically and experimentally in this work. Owing to the presence of HRs, the effective impedance of metal surface boundary can be manipulated. By optimizing the distribution of HRs,the asymmetric effective impedance boundary will be obtained, which contributes to generating tunable acoustic radiation pattern such as directional acoustic beaming. These dipole-like radiation patterns have high radiation efficiency, no fingerprint of sidelobes, and a wide tunable range of the radiation pattern directivity angle which can be steered by the spatial displacements of HRs. 相似文献
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Ultrasound transducer is one of the important devices in medical ultrasonic imaging system. Usually the piezoelectric materials, such as PZT or PVDF, are to be used in an ultrasound transducer. The transducer made of PZT has high sensitivity while the bandwidth 相似文献
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Estimation of temperature elevation generated by ultrasonic irradiation in biological tissues using the thermal wave method 下载免费PDF全文
In most previous models,simulation of the temperature generation in tissue is based on the Pennes bio-heat transfer equation,which implies an instantaneous thermal energy deposition in the medium.Due to the long thermal relaxation time τ(20 s-30 s) in biological tissues,the actual temperature elevation during clinical treatments could be different from the value predicted by the Pennes bioheat equation.The thermal wave model of bio-heat transfer(TWMBT) defines a thermal relaxation time to describe the tissue heating from ultrasound exposure.In this paper,COMSOL Multiphysics 3.5a,a finite element method software package,is used to simulate the temperature response in tissues based on Pennes and TWMBT equations.We further discuss different factors in the bio-heat transfer model on the influence of the temperature rising and it is found that the temperature response in tissue under ultrasound exposure is a rising process with a declining rate.The thermal relaxation time inhibits the temperature elevation at the beginning of ultrasonic heating.Besides,thermal relaxation in TWMBT leads to lower temperature estimation than that based on Pennes equation during the same period of time.The blood flow carrying heat dominates most to the decline of temperature rising rate and the influence increases with temperature rising.On the contrary,heat diffusion,which can be described by thermal conductivity,has little effect on the temperature rising. 相似文献
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Study of the temperature rise induced by a focusing transducer with a wide aperture angle on biological tissue containing ribs 下载免费PDF全文
We used the spheroidal beam equation to calculate the sound field created by focusing a transducer with a wide aperture angle to obtain the heat deposition, and then we used the Pennes bioheat equation to calculate the temperature field in biological tissue with ribs and to ascertain the effects of rib parameters on the temperature field. The results show that the location and the gap width between the ribs have a great influence on the axial and radial temperature rise of multilayer biological tissue. With a decreasing gap width, the location of the maximum temperature rise moves forward; as the ribs are closer to the transducer surface, the sound energy that passes through the gap between the ribs at the focus decreases,the maximum temperature rise decreases, and the location of the maximum temperature rise moves forward with the ribs. 相似文献