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Utilizing hemodynamic delay and dispersion to detect fMRI signal change without auditory interference: the behavior interleaved gradients technique.
The control of electroencephalographic alpha rhythms through auditory feedback and the associated mental activity.
It has three features: frontal staircase detection through auditory feedback, backward obstacle-avoidance assistance through auditory feedback, and lateral ramp-edge detection through haptic feedback.
In general, the user could be informed through auditory and tactile sense.
Once initiated, each of the tasks was completed through auditory plus vocal system interactions.
Using a separate earpiece with an attached microphone that extends across the face, the user would directly communicate with the device and is guided through auditory feedback.
In auditory cortex, cross-classification did not succeed, indicating that activity patterns induced by feedforward auditory stimulation are coded differently than those induced by feedback through auditory imagery.
Feedback for correct/incorrect responses was given through auditory signals of high and low pitch respectively.
This work paves the way for fMRI studies of a broad selection of auditory paradigms without interference from unwanted noise.
Thus we focused on the learning of temporal relations between auditory stimuli without interference by input from another modality such as vision.
High larval densities led to reduced growth and retarded development through interference, not through exploitative competition.
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