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1. Validation of RNA Extraction Methods and Suitable Reference Genes for Gene Expression Studies in Developing Fetal Human Inner Ear Tissue.

2. Validation of RNA Extraction Methods and Suitable Reference Genes for Gene Expression Studies in Developing Fetal Human Inner Ear Tissue

3. Characterization of a possible founder synonymous variant in TECTA in multiple individuals with autosomal recessive hearing loss.

4. The TECTA mutation R1890C is identified as one of the causes of genetic hearing loss: a case report

5. Identification of a Novel Frameshift Mutation in the TECTA Gene in an Iranian Family With Autosomal Nonsyndromic Hearing Loss

6. Identification of a Novel Frameshift Mutation in the TECTA Gene in an Iranian Family With Autosomal Nonsyndromic Hearing Loss.

7. Reevaluating the splice-altering variant in TECTA as a cause of nonsyndromic hearing loss DFNA8/12 by functional analysis of RNA.

8. Prevalence of TECTA mutation in patients with mid-frequency sensorineural hearing loss

9. Microvilli regulate the release modes of alpha-tectorin to organize the domain-specific matrix architecture of the tectorial membrane.

10. Comprehensive molecular-genetic analysis of mid-frequency sensorineural hearing loss

11. Hearing Impairment with Monoallelic GJB2 Variants

13. Next-Generation Sequencing Identifies Pathogenic Variants in HGF, POU3F4, TECTA, and MYO7A in Consanguineous Pakistani Deaf Families

14. MET currents and otoacoustic emissions from mice with a detached tectorial membrane indicate the extracellular matrix regulates Ca 2+ near stereocilia

15. TECTA遺伝子変異により発症した非症候群性難聴家系における聴力像の検討

17. A novel TECTA mutation causes ARNSHL.

18. Genetic assessment of the variation and distribution of the species of Salinator (Panpulmonata: Amphibolidae) in south-eastern Australia

19. Spectrum and frequencies of non <scp> GJB2 </scp> gene mutations in Czech patients with early non‐syndromic hearing loss detected by gene panel NGS and whole‐exome sequencing

20. Whole exome sequencing identified mutations causing hearing loss in five consanguineous Pakistani families

21. Clinical Utility of Next-generation Sequencing in the Aetiological Diagnosis of Sensorineural Hearing Loss in a Childhood Hearing Loss Unit

22. Sesamum indicum L. Oil and Sesamin Induce Auditory-Protective Effects Through Changes in Hearing Loss-Related Gene Expression

23. Diagnostic Yield of Targeted Hearing Loss Gene Panel Sequencing in a Large German Cohort With a Balanced Age Distribution from a Single Diagnostic Center: An Eight-year Study

24. Spontaneous otoacoustic emissions are biomarkers for mice with tectorial membrane defects

25. Age-related degradation of tectorial membrane dynamics with loss of CEACAM16

26. Identification of a Novel Frameshift Mutation in the TECTA Gene in an Iranian Family With Autosomal Nonsyndromic Hearing Loss

27. Novel TECTA Mutations Identified in Stable Sensorineural Hearing Loss and Their Clinical Implications.

28. A genome-wide meta-analysis uncovers six sequence variants conferring risk of vertigo

29. Comparing spontaneous and stimulus frequency otoacoustic emissions in mice with tectorial membrane defects

30. Despite a lack of otoacoustic emission, word recognition is not seriously influenced in a TECTA DFNA8/12 family.

31. Identification of novel variants in Iranian consanguineous pedigrees with nonsyndromic hearing loss by next‐generation sequencing

32. Expanding the Genetic Landscape of Usher-Like Phenotypes

33. Cerebellum size is positively correlated with geographic distribution range in anurans

35. Reflejos y multiplicidad: los empooling de Peter Smithson

36. Reflejos y multiplicidad: los empooling de Peter Smithson

37. Identification and functional characterization of novel compound heterozygotic mutations in the TECTA gene

38. Genetic causes of nonsyndromic hearing loss in Iran in comparison with other populations.

39. Mid-frequency DFNA8/12 hearing loss caused by a synonymous TECTA mutation that affects an exonic splice enhancer.

40. A novel TECTA mutation confirms the recognizable phenotype among autosomal recessive hearing impairment families

41. Audioprofiling identifies TECTA and GJB2-related deafness segregating in a single extended pedigree.

42. Audiological Evaluation of Affected Members from a Dutch DFNA8/12 ( TECTA) Family.

43. Prevalence of TECTA mutation in patients with mid-frequency sensorineural hearing loss

44. A Novel TECTA Mutation in a Dutch DFNA8/12 Family Confirms Genotype–Phenotype Correlation.

45. A Genotype-Phenotype Correlation with Gender-Effect for Hearing Impairment Caused by TECTA Mutations.

46. A comparative analysis of genetic hearing loss phenotypes in European/American and Japanese populations

47. The Prevalence and Clinical Characteristics of TECTA-Associated Autosomal Dominant Hearing Loss

48. Genotyp-Phänotyp-Korrelation bei Schwerhörigkeit: Genetische Varianten im peripheren Hörsystem und die Hörleistung mit Cochlea-Implantat

49. Systematic Review of Hearing Loss Genes in the African American Population

50. Spontaneous otoacoustic emissions in TectaY1870C/+ mice reflect changes in cochlear amplification and how it is controlled by the tectorial membrane

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