By Jones W.B. (ed.), Thorn W.J. (ed.), Waadeland H. (ed.)
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Additional resources for Analytic Theory of Continued Fractions, Leon, Norway 1981: Proceedings
The selection criteria can be modified according to the requirements or specific tasks. For instance, if computational time is not a critical issue, genetic algorithms can be also used at the Stage I. This can further improve stability of the hybrid algorithms as genetic algorithms normally determine the area of the global minimum with higher probability compared to other known optimization strategies. 5 CONCLUSION An approach is proposed for the development and optimisation of hybrid fitting algorithms for efficient processing of impedance data.
3). 5 mA at 85 kHz. In total, the study lasted 5 hours and 30 minutes. 4 RESULTS To evaluate the signal quality of the swine model, the morphology of the signal had to be analyzed. 8 Hz < f < 10 Hz). Since the ventilation caused a non-sinusoidal modulation of the impedance signal, only one heartbeat after inspiration has been analyzed. An example is shown in fig. 4. Figure 3. Pig with electrode positions. 5 Time [s] Figure 4. Measured impedance and ICG with B- and X-point. 03 Ω). Nevertheless, all important characteristic points can be extracted.
Those models are all limited to larger arteries and only approach arteries as small as 1 mm diameter. Arteries narrower than that have not been addressed in fully dynamic vascular system models. Smaller arteries, arterioles and capillaries are rarely modeled with dynamics— especially dynamics that include blood volume change that would translates to changes in tissue electric properties. 4 μm and go down to capillary level. The multi-frequency electric bioimpedance signal due to blood pulsation in the tissue is simulated after the dynamics in the modeling of the dynamic microscale arterial network.