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Investigation of nonlinear temperature distribution in biological tissues by using bioheat transfer equation of Pennes’ type 被引量:3
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作者 ahmed lakhssassi Emmanuel Kengne Hicham Semmaoui 《Natural Science》 2010年第3期131-138,共8页
In this paper, a two level finite difference scheme of Crank-Nicholson type is constructed and used to numerically investigate nonlinear temperature distribution in biological tissues described by bioheat transfer equ... In this paper, a two level finite difference scheme of Crank-Nicholson type is constructed and used to numerically investigate nonlinear temperature distribution in biological tissues described by bioheat transfer equation of Pennes’ type. For the equation under consideration, the thermal conductivity is either depth-dependent or tem-perature-dependent, while blood perfusion is temperature-dependent. In both cases of depth- dependent and temperature-dependent thermal conductivity, it is shown that blood perfusion decreases the temperature of the living tissue. Our numerical simulations show that neither the localization nor the magnitude of peak tempera-ture is affected by surface temperature;however, the width of peak temperature increases with surface temperature. 展开更多
关键词 Bioheat TRANSFER EQUATION of Pennes TYPE Pennes’ Bioheat TRANSFER EQUATION Modified Crank-Nicholson Method TWO-LEVEL FINITE DIFFERENCE Scheme
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Temperature Distributions for Regional Hypothermia Based on Nonlinear Bioheat Equation of Pennes Type: Dermis and Subcutaneous Tissues 被引量:2
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作者 Emmanuel Kengne ahmed lakhssassi Rémi Vaillancourt 《Applied Mathematics》 2012年第3期217-224,共8页
We have used a nonlinear one-dimensional heat transfer model based on temperature-dependent blood perfusion to predict temperature distribution in dermis and subcutaneous tissues subjected to point heating sources. By... We have used a nonlinear one-dimensional heat transfer model based on temperature-dependent blood perfusion to predict temperature distribution in dermis and subcutaneous tissues subjected to point heating sources. By using Jacobi elliptic functions, we have first found the analytic solution corresponding to the steady-state temperature distribution in the tissue. With the obtained analytic steady-state temperature, the effects of the thermal conductivity, the blood perfusion, the metabolic heat generation, and the coefficient of heat transfer on the temperature distribution in living tissues are numerically analyzed. Our results show that the derived analytic steady-state temperature is useful to easily and accurately study the thermal behavior of the biological system, and can be extended to such applications as parameter measurement, temperature field reconstruction and clinical treatment. 展开更多
关键词 REGIONAL HYPOTHERMIA DERMIS and SUBCUTANEOUS Tissues JACOBI Elliptic Functions TEMPERATURE-DEPENDENT Blood Perfusion
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Extended Generalized Riccati Equation Mapping for Thermal Traveling-Wave Distribution in Biological Tissues through a Bio-Heat Transfer Model with Linear/Quadratic Temperature-Dependent Blood Perfusion 被引量:1
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作者 Emmanuel Kengne Fathi Ben Hamouda ahmed lakhssassi 《Applied Mathematics》 2013年第10期1471-1484,共14页
Analytical thermal traveling-wave distribution in biological tissues through a bio-heat transfer (BHT) model with linear/quadratic temperature-dependent blood perfusion is discussed in this paper. Using the extended g... Analytical thermal traveling-wave distribution in biological tissues through a bio-heat transfer (BHT) model with linear/quadratic temperature-dependent blood perfusion is discussed in this paper. Using the extended generalized Riccati equation mapping method, we find analytical traveling wave solutions of the considered BHT equation. All the travelling wave solutions obtained have been used to explicitly investigate the effect of linear and quadratic coefficients of temperature dependence on temperature distribution in tissues. We found that the parameter of the nonlinear superposition formula for Riccati can be used to control the temperature of living tissues. Our results prove that the extended generalized Riccati equation mapping method is a powerful tool for investigating thermal traveling-wave distribution in biological tissues. 展开更多
关键词 Bio-Heat Transfer Pennes Bio-Heat Model TEMPERATURE-DEPENDENT Blood Perfusion Thermal Therapy EXTENDED GENERALIZED Riccati Equation MAPPING Method
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A Mathematical Model to Solve Bio-Heat Transfer Problems through a Bio-Heat Transfer Equation with Quadratic Temperature-Dependent Blood Perfusion under a Constant Spatial Heating on Skin Surface 被引量:1
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作者 Emmanuel Kengne Idir Mellal +1 位作者 Mariem Ben Hamouda ahmed lakhssassi 《Journal of Biomedical Science and Engineering》 2014年第9期721-730,共10页
We consider the one-dimensional bio-heat transfer equation with quadratic temperature-dependent blood perfusion, which governs the temperature distribution inside biological tissues. Using an extended mapping method w... We consider the one-dimensional bio-heat transfer equation with quadratic temperature-dependent blood perfusion, which governs the temperature distribution inside biological tissues. Using an extended mapping method with symbolic computation, we obtain the exact analytical thermal traveling wave solution, which describes the non-uniform temperature distribution inside the bodies. The found exact solution is used to investigate the temperature distribution in the tissues. It is found that the surrounding medium with higher temperature does not necessarily imply that the tissue will quickly (after a short duration of heating process) reach the desired temperature. It is also found that increased perfusion causes a decline in local temperature. 展开更多
关键词 Bio-Heat Transfer PROBLEMS Pennes Bio-Heat Model TEMPERATURE-DEPENDENT Blood PERFUSION Thermal Therapy Extended Mapping Method
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Modifed pennes' equation modelling bio-heat transfer in living tissues: analytical and numerical analysis 被引量:1
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作者 ahmed lakhssassi Emmanuel Kengne Hicham Semmaoui 《Natural Science》 2010年第12期1375-1385,共11页
Based on modified version of the Pennes' bio-heat transfer equation, a simplified one- dimensional bio-heat transfer model of the living tissues in the steady state has been applied on whole body heat transfer stu... Based on modified version of the Pennes' bio-heat transfer equation, a simplified one- dimensional bio-heat transfer model of the living tissues in the steady state has been applied on whole body heat transfer studies, and by using the Weierstrass' elliptic function, its corresponding analytic periodic and non-periodic solutions have been derived in this paper. Using the obtained analytic solutions, the effects of the thermal diffusivity, the temperature-inde- pendent perfusion component, and the temperature-dependent perfusion component in living tissues are analyzed numerically. The results show that the derived analytic solution is useful to easily and accurately study the thermal behavior of the biological system, and can be extended to applications such as parameter measurement, temperature field reconstruction and clinical treatment. 展开更多
关键词 Bio-Heat Transfer EQUATION Pennes' Modified EQUATION Weierstrass' FUNCTIONS JACOBI ELLIPTIC FUNCTIONS
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A spatiotemporal signal processing technique for wafer-scale IC thermomechanical stress monitoring by an infrared camera
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作者 Michel Saydé ahmed lakhssassi +1 位作者 Emmanuel Kengne Roman Palenichka 《Journal of Biosciences and Medicines》 2013年第2期1-5,共5页
In this paper, we describe a new silicon-die thermal monitoring approach using spatiotemporal signal processing technique for Wafer-Scale IC thermome- chanical stress monitoring. It is proposed in the context of a waf... In this paper, we describe a new silicon-die thermal monitoring approach using spatiotemporal signal processing technique for Wafer-Scale IC thermome- chanical stress monitoring. It is proposed in the context of a wafer-scale-based (WaferICTM) rapid prototyping platform for electronic systems. This technique will be embedded into the structure of the WaferIC, and will be used as a preventive measure to protect the wafer from possible damages that can be caused by excessive thermomechanical stress. The paper also presents spatial and spatiotemporal algorithms and the experimental results from an IR images collection campaign conducted using an IR camera. 展开更多
关键词 THERMAL Monitoring Ring Oscillator (RO) Spatial SPATIOTEMPORAL THERMO-MECHANICAL Stress Temperature Sensor THERMAL Analysis WaferIC Wafer-Scale System
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Low Complexity Transceiver Design for FBMC-OQAM System for Future Generation Wireless Communication
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作者 Belkacem Mecheri Larbi Talbi +1 位作者 ahmed lakhssassi Mokhtaria Mesri 《Journal of Electrical Engineering》 2020年第1期21-26,共6页
This paper proposes a new structure for the FBMC-OQAM(filter bank multicarrier with offset quadrature amplitude modulation)system aiming to reduce computational complexity which is one of the main technical challenges... This paper proposes a new structure for the FBMC-OQAM(filter bank multicarrier with offset quadrature amplitude modulation)system aiming to reduce computational complexity which is one of the main technical challenges faced and tackled by many baseband signal research groups.The new structure depends on the application of the filter bank in the frequency domain instead of the time domain.As a result,this structure provides a low computational complexity compared to the original structure,where only IFFT(Inverse Fast Fourier Transforms)blocks and simple multiplication and addition operations are needed.Simulation results were performed by analyzing the number of multiplication and addition operations,in addition to studying the performance of the FBMC-OQAM system of the new structure by simulating the BER(bit error rate)in terms of SNR(signal-to-noise ratio). 展开更多
关键词 FBMC-OQAM IFFT BER SNR
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