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We are therefore confident that the suggested under-estimate in the observed HIV prevalence rate is valid, and our mortality-based procedure provides a reasonable method of adjustment of the observed HIV prevalence rates.
Based on the results, we feel that this quantitative procedure provides a good basis for expert discussions leading in the next step to identification of possible actions.
Applying the proposed method to various exemplary datasets including very low frequency EEG recordings, epileptic seizure recordings, MEG data and Evoked Response data showed that this compensating procedure provides a flat spectral base onto which event related peaks can be clearly observed.
The estimation procedure provides a posterior probability distribution that integrates prior estimates based on the knowledge of the process, and the likelihood of occurrence based on historical data.
The described procedure provides an SM fiber based PS-OCT system which has similar properties as previously reported bulk and PM-fiber based systems that also use a circular polarization state at the sample [ 18, 36– 36].
To our delight, the stepwise procedure provided a satisfactory result.
This work aims at an accurate reference solution, providing a basis for the comparison with Monte Carlo based procedures for the first passage problem of non-linear systems.
The ARFIMA/ARMA procedure provides two complementary criteria.
The methodology is based on the well known Gram-Schmidt orthonormalization procedure, which provides a 3D orthogonal expansion of the beamspace domain of the antenna.
Due to the possible occurrence of different failure modes, the procedure provides results on the base of the weakest mechanism that takes place.
The multitasking environment in the algorithm rests on a master slave model based parallelization of the optimization procedure, which provides an ideal platform for attaining optimal solutions in a timely manner without losing accuracy in computations.
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