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By single process models, in which recognition is assumed to be based on a global measure of memory strength, the results suggest that narrowed attention during encoding and recognition is associated with high recognition confidence.
In contrast, by single process models in which recognition is assumed to be based on a global measure of memory strength, the results suggest that the effects of emotion on recognition memory can be observed even when emotion does not have a pronounced effect on overall memory strength.
Besides the extent of niche overlap, competitor recognition is assumed to play a significant role in the evolution of heterospecific aggression [ 1, 2].
In fact, the understanding of whether the visual word recognition is assumed only on the basis of letters or with other pertinent sources such as global visual pattern, is an important and recurrent question concerning alphabetic languages [ 25].
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In HMM-based speech recognition it is assumed that the observed sequence of speech feature vectors is generated by a hidden Markov model.
Together with findings of an involvement of the PFC during false recognitions it is assumed that true memories contain more perceptual and sensory information, whereas false memories contain more information about cognitive processes (e.g., [ 11]).
In the probabilistic pattern recognition framework, it is assumed that there is an unknown probability distribution p that underlies any relationship in the available data, D, where the data points belonging to D are drawn from a product space X×Y where X represents input patterns/objects and Y represents the class space.
In HMM/GMM based speech recognition [20], it is assumed that the sequence of observed speech vectors corresponding to each word is generated by a Hidden Markov model as shown in Figure 3. Here, a ij and b o) means the transition probabilities and output probabilities respectively.
The pairing of the anticodon sequence of tRNASer/GCU to the codon AGA may be possible under special conditions; whereas the recognition of the AGG codon is assumed to be more complicated [ 15, 42].
In the case of indirect interactions, recognition between R and Avr proteins is assumed to be activated by either so-called "guardees" or "decoys" (van der Hoorn and Kamoun 2008).
Such results readily accord with the model of spared familiarity-based recognition in patients with fornix damage if it is assumed that animals are solely or predominantly reliant on familiarity to solve most recognition problems (see Gaffan et al., 1984).
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CEO of Professional Science Editing for Scientists @ prosciediting.com