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1. Otolith tethering in the zebrafish otic vesicle requires Otogelin and α-Tectorin.

2. Semicircular canal morphogenesis in the zebrafish inner ear requires the function of gpr126 (lauscher), an adhesion class G protein-coupled receptor gene.

3. The role of hair cells, cilia and ciliary motility in otolith formation in the zebrafish otic vesicle.

4. Fgf and Hh signalling act on a symmetrical pre-pattern to specify anterior and posterior identity in the zebrafish otic placode and vesicle.

5. Repression of Hedgehog signalling is required for the acquisition of dorsolateral cell fates in the zebrafish otic vesicle.

6. Nkcc1 (Slc12a2) is required for the regulation of endolymph volume in the otic vesicle and swim bladder volume in the zebrafish larva.

7. The developing lamprey ear closely resembles the zebrafish otic vesicle: otx1 expression can account for all major patterning differences.

8. Hedgehog signalling is required for correct anteroposterior patterning of the zebrafish otic vesicle.

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