Mouse Genetics Core-Hearing loss is the most frequent sensory defect in humans. Congenital, perinatal or early onset hearing loss occurs at approximately 7 out of 1000 neonates in the United States. In approximately half of the children born with severe hearing impairment, a genetic contribution is suspected. The powerful molecular and genetic techniques available in mouse combined with the functional similarities between mouse and human audition make mouse a useful model system for studying deafness. In order to support users of mouse models for genes affecting the auditory system function, we will provide technical support in the form of expert husbandry (receiving, setting up crosses, weaning, fostering, background transfers, etc), genotyping, and notification/delivery of requested mice to the users. Per diem charges for mouse care will be the responsibility of the user, provided that they have a funded project that includes support for mouse care. In order to encourage innovative and new collaborative projects, we will provide per diem support for pilot/new studies that are not currently funded for mouse work. To monitor usage and provide equitable access, we will review, periodically, animals to be maintained by the Core. This core will provide a critical function for a variety of users. Efficiency of mouse care will be greatly increased by having centralized, expert mouse husbandry and genotyping. This will allow users not proficient in mouse care to use the vast number of identified gene knockout mice and defined spontaneous mutants to further their research. Experienced mouse users will benefit from the familiarity of the Core personnel with mouse behavior and care, allowing increased health and higher fecundity among their strains. All users will benefit by knowing about the strains, techniques, and projects being pursued by other users of the core.

Agency
National Institute of Health (NIH)
Institute
National Institute on Deafness and Other Communication Disorders (NIDCD)
Type
Center Core Grants (P30)
Project #
5P30DC004661-03
Application #
6649941
Study Section
Special Emphasis Panel (ZDC1)
Project Start
2002-09-01
Project End
2003-08-31
Budget Start
Budget End
Support Year
3
Fiscal Year
2002
Total Cost
Indirect Cost
Name
University of Washington
Department
Type
DUNS #
135646524
City
Seattle
State
WA
Country
United States
Zip Code
98195
Stone, Jennifer S; Wisner, Serena R; Bucks, Stephanie A et al. (2018) Characterization of Adult Vestibular Organs in 11 CreER Mouse Lines. J Assoc Res Otolaryngol 19:381-399
Daliri, Ayoub; Max, Ludo (2018) Stuttering adults' lack of pre-speech auditory modulation normalizes when speaking with delayed auditory feedback. Cortex 99:55-68
Lewis, Rebecca M; Keller, Jesse J; Wan, Liangcai et al. (2018) Bone morphogenetic protein 4 antagonizes hair cell regeneration in the avian auditory epithelium. Hear Res 364:1-11
Maruthy, Santosh; Feng, Yongqiang; Max, Ludo (2018) Spectral Coefficient Analyses of Word-Initial Stop Consonant Productions Suggest Similar Anticipatory Coarticulation for Stuttering and Nonstuttering Adults. Lang Speech 61:31-42
Lau, Bonnie K; Lalonde, Kaylah; Oster, Monika-Maria et al. (2017) Infant pitch perception: Missing fundamental melody discrimination. J Acoust Soc Am 141:65
Minich, Rebecca R; Li, Jin; Tempel, Bruce L (2017) Early growth response protein 1 regulates promoter activity of ?-plasma membrane calcium ATPase 2, a major calcium pump in the brain and auditory system. BMC Mol Biol 18:14
Warchol, Mark E; Stone, Jennifer; Barton, Matthew et al. (2017) ADAM10 and ?-secretase regulate sensory regeneration in the avian vestibular organs. Dev Biol 428:39-51
Cabrera, Laurianne; Werner, Lynne (2017) Infants' and Adults' Use of Temporal Cues in Consonant Discrimination. Ear Hear 38:497-506
Wu, Yu-Hsiang; Dumanch, Kelsey; Stangl, Elizabeth et al. (2017) Is the Device-Oriented Subjective Outcome (DOSO) Independent of Personality? J Am Acad Audiol 28:932-940
Bucks, Stephanie A; Cox, Brandon C; Vlosich, Brittany A et al. (2017) Supporting cells remove and replace sensory receptor hair cells in a balance organ of adult mice. Elife 6:

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