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3. YBCO nanobridges: simplified fabrication process by using a Ti hard mask

10. X-linked primary ciliary dyskinesia due to mutations in the cytoplasmic axonemal dynein assembly factor PIH1D3.

11. DNAH3: characterisation of the full length gene and mutation search in patients with Primary Ciliary Dyskinesia

13. Systematic gene identification based on the genomic sequence of human chromosome 21

16. DNAI1 mutations explain only 2% of primary ciliary dyskinesia

20. A point mutation in the 5' splice site of the dystrophin gene first intron responsible for X-linked dilated cardiomyopathy

32. Association between multiple sclerosis prevalence and environmental and genetic factors in Latin America and the Caribbean: An ecological study

36. Mutations in the DNAH11 (axonemal heavy chain dynein type 11) gene cause one form of situs inversus totalis and most likely primary ciliary dyskinesia

37. DNAH3: Characterization of the sequence and mutation search in patients with Primary Ciliary Dyskinesia

38. Primary ciliary dyskinesia: a consensus statement on diagnostic and treatment approaches in children

39. Axonemal beta heavy chain dynein DNAH9: cDNA sequence, genomic structure, and investigation of its role in primary ciliary dyskinesia

40. Primary ciliary dyskinesia: a genome-wide linkage analysis reveals extensive locus heterogeneity

41. A point mutation in the 5' splice site of the dystrophin gene first intron responsible for X-linked dilated cardiomyopathy

42. Primary ciliary dyskinesia: a genome-wide linkage analysis reveals extensive locus heterogeneity

47. Towards establishing MS prevalence in Latin America and the Caribbean.

49. DNAH5 mutations are a common cause of primary ciliary dyskinesia with outer dynein arm defects.

50. No deleterious mutations in the FOXJ1 (alias HFH-4) gene in patients with Primary Ciliary Dyskinesia (PCD).

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