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Kinocilium

  • Vocabulario De Morfoloxía, Anatomía E Citoloxía Veterinaria

    Vocabulario De Morfoloxía, Anatomía E Citoloxía Veterinaria

  • Nomina Histologica Veterinaria, First Edition

    Nomina Histologica Veterinaria, First Edition

  • Stereocilia Mediate Transduction in Vertebrate Hair Cells (Auditory System/Cilium/Vestibular System) A

    Stereocilia Mediate Transduction in Vertebrate Hair Cells (Auditory System/Cilium/Vestibular System) A

  • Physiology of the Inner Ear Balance

    Physiology of the Inner Ear Balance

  • The Nervous System: General and Special Senses

    The Nervous System: General and Special Senses

  • A Hair Bundle Proteomics Approach to Discovering Actin Regulatory Proteins in Inner Ear Stereocilia

    A Hair Bundle Proteomics Approach to Discovering Actin Regulatory Proteins in Inner Ear Stereocilia

  • Índice De Denominacións Españolas

    Índice De Denominacións Españolas

  • Inner Ear and Muscle Developmental Defects in Smpx-Deficient Zebrafish

    Inner Ear and Muscle Developmental Defects in Smpx-Deficient Zebrafish

  • CHAPTER 3: the BODY SENSES Introduction the Somatosensory System

    CHAPTER 3: the BODY SENSES Introduction the Somatosensory System

  • Vestibular Sense.Pptx

    Vestibular Sense.Pptx

  • Solitary Hair Cells Are Distributed Throughout the Extramacular Epithelium in the Bullfrog’S Saccule

    Solitary Hair Cells Are Distributed Throughout the Extramacular Epithelium in the Bullfrog’S Saccule

  • Biomechanics of Hair Cell Kinocilia: Experimental Measurement Of

    Biomechanics of Hair Cell Kinocilia: Experimental Measurement Of

  • Regulation of PCDH15 Function in Mechanosensory Hair Cells by Alternative Splicing of the Cytoplasmic Domain Stuart W

    Regulation of PCDH15 Function in Mechanosensory Hair Cells by Alternative Splicing of the Cytoplasmic Domain Stuart W

  • Cilia-Driven Fluid Flow As an Epigenetic Cue for Otolith Biomineralization On

    Cilia-Driven Fluid Flow As an Epigenetic Cue for Otolith Biomineralization On

  • The Physiology of the Senses Lecture 10 - Balance

    The Physiology of the Senses Lecture 10 - Balance

  • Ick Ciliary Kinase Is Essential for Planar Cell Polarity Formation in Inner Ear Hair Cells and Hearing Function

    Ick Ciliary Kinase Is Essential for Planar Cell Polarity Formation in Inner Ear Hair Cells and Hearing Function

  • The Ultrastructure of the Sensory Hairs And

    The Ultrastructure of the Sensory Hairs And

  • Basal Bodies, Kinocilia and Planar Cell Polarity

    Basal Bodies, Kinocilia and Planar Cell Polarity

Top View
  • Nomina Histologica Veterinaria
  • DIAGNOSTIC VESTIBULAR POCKET GUIDE Evaluation of Dizziness, Vertigo, and Imbalance
  • Striola Magica. a Functional Explanation of Otolith Geometry Mariella Dimiccoli, Benoît Girard, Alain Berthoz, Daniel Bennequin
  • Physiological and Morphological Assessment of the Saccule in Guinea Pigs After Noise Exposure
  • A Molecular Blueprint at the Apical Surface Establishes Planar Asymmetry in Cochlear Hair Cells
  • Vestibular Function and Anatomy
  • Vestibular Sys. Lect
  • 6. the Results Are Interpreted in Terms of a Dual Action of Ca2+
  • In-Situ Visualization of Sound-Induced Otolith Motion Using Hard X-Ray
  • Calcium-Binding Sites on Sensory Processes in Vertebrate Hair Cells (Mechanoreceptor/Sensory Cilia/Sensory Transduction/Lateral Line/Inner Ear) DAVID T
  • The Peripheral Nervous System Links the Brain to the “Real”
  • How the Ear Hears
  • Kif3a Regulates Planar Polarization of Auditory Hair Cells Through Both Ciliary and Non-Ciliary Mechanisms Conor W
  • Survival of Bundleless Hair Cells and Subsequent Bundle Replacement in the Bullfrog’S Saccule
  • Nomina Histologica Veterinaria
  • The Inner Ear Macular Sensory Epithelia of the Daubenton's
  • Integrating the Biophysical and Molecular Mechanisms of Auditory Hair Cell Mechanotransduction
  • Par3 Is Essential for the Establishment of Planar Cell Polarity of Inner Ear Hair Cells


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