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  • RESEARCH 4 BUSINESS 2016, Ljubljana, 5 and 6 of May 2016

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    M. 211–229, british Journal of Pharmacology 107. Noble, F., and Cox, B. 1064–1051, journal of Neuroscience 20.

    (1995). Differential desensitization of mu- and delta- opioid receptors in selected neural pathways following chronic morphine treatment. A microdialysis study.

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    Sensory axons in cranial nerves synapse in sensory cranial nerve nuclei, how to get viagra from canada for example. Knowledge of the columnar organization helps explain the functional organization of the cranial nerves and nuclei because the location of the column provides important information about function. Which mediates somatic sensation from the face and head, the chapter then examines the trigeminal system. Topics introduced in Chapter 5, this how to get viagra from canada chapter examines the general organization of the cranial nerves and the columnar organization of the cranial nerve nuclei.

    Similarly, sensory axons in spinal nerves synapse on neurons of the dorsal horn of the spinal cord and the dorsal column nuclei. The motor cranial nerve nuclei, like the motor nuclei of the ventral horn, contain the motor neurons whose axons project to the periphery.

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    The topographic relationship between the receptor sheet and the central nervous system is similar to that of the somatic sensory and visual systems, where the how to get viagra from canada subcortical nuclei and cortical areas have a somatotopic or retinotopic organization. In each of these cases, the topographic organization of the central representations is determined by the spatial organization of the peripheral receptive sheet. This differential frequency sensitivity of how to get viagra from canada hair cells along the length of the cochlea is the basis of the tonotopic organization of the auditory receptive sheet. As discussed below, from the base of the cochlea to the apex, the frequency to which a hair cell is maximally sensitive changes systematically from high frequencies to low frequencies. Many of the components of the auditory system are tonotopically organized.