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170 results on '"Occipital horn syndrome"'

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1. Case Report: A male newborn with occipital horn syndrome [version 2; peer review: 1 approved, 1 approved with reservations]

2. Case Report: A male newborn with occipital horn syndrome [version 2; peer review: 2 approved]

3. Identifying and characterising novel genomic variants and disease mechanisms in patients with rare and novel diseases

4. Case Report: A male newborn with occipital horn syndrome [version 1; peer review: awaiting peer review]

5. ATP7A‐related copper transport disorders: A systematic review and definition of the clinical subtypes.

6. Orthopaedic interventions in occipital horn syndrome: a rare case of mutation in ATP7A gene

7. Case Report: A male newborn with occipital horn syndrome.

9. Orthopaedic interventions in occipital horn syndrome: a rare case of mutation in ATP7A gene.

10. Copper Toxicity Associated With an ATP7A-Related Complex Phenotype.

11. Occipital Horn Syndrome as a Result of Splice Site Mutations in ATP7A. No Activity of ATP7A Splice Variants Missing Exon 10 or Exon 15

13. Occipital Horn Syndrome as a Result of Splice Site Mutations in ATP7A. No Activity of ATP7A Splice Variants Missing Exon 10 or Exon 15.

14. Deep intronic variant causes aberrant splicing of ATP7A in a family with a variable occipital horn syndrome phenotype.

16. ATP7A Clinical Genetics Resource – A comprehensive clinically annotated database and resource for genetic variants in ATP7A gene

17. Report of a novel ATP7A mutation causing distal motor neuropathy

18. Bladder Diverticula Caused by Occipital Horn Syndrome: A Case Report

19. The M1311V variant of ATP7A is associated with impaired trafficking and copper homeostasis in models of motor neuron disease

20. Copper Toxicity Associated With an ATP7A-Related Complex Phenotype

21. Translational research investigations on ATP7A: an important human copper ATPase.

22. ATP7A mutation with occipital horns and distal motor neuropathy: A continuum

23. Occipital Horn Syndrome as a Result of Splice Site Mutations in

24. A novel nonsense ATP7A pathogenic variant in a family exhibiting a variable occipital horn syndrome phenotype

25. Role of the P-Type ATPases, ATP7A and ATP7B in brain copper homeostasis.

26. An Overview and Update of ATP7A Mutations Leading to Menkes Disease and Occipital Horn Syndrome.

28. Twenty-five novel mutations including duplications in the ATP7A gene.

29. Pathology, clinical features and treatments of congenital copper metabolic disorders – Focus on neurologic aspects

30. Molecular diagnosis of Menkes disease: Genotype–phenotype correlation

31. Defining the Clinical, Molecular and Ultrastructural Characteristics in Occipital Horn Syndrome: Two New Cases and Review of the Literature

32. Classification and differential diagnosis of Wilson's disease

33. Menkes Disease and Other Disorders Related to ATP7A

34. Bladder Diverticula Caused by Occipital Horn Syndrome

35. Menkes disease: what a multidisciplinary approach can do

36. Clinical manifestations and treatment of Menkes disease and its variants.

37. Menkes syndrome and animal models.

38. Wilson disease and related copper disorders

39. Copper Metabolism, <scp>ATP7A</scp> and <scp>M</scp> enkes Disease

40. Diverticulose vésicale liée à un syndrome de la corne occipitale

41. Whole-genome sequencing identifies a novel ABCB7 gene mutation for X-linked congenital cerebellar ataxia in a large family of Mongolian ancestry

42. Direct interactions of adaptor protein complexes 1 and 2 with the copper transporter ATP7A mediate its anterograde and retrograde trafficking

43. ATP7A mutation with occipital horns and distal motor neuropathy: A continuum.

44. Interaction between the AAA ATPase p97/VCP and a concealed UBX domain in the copper transporter ATP7A is associated with motor neuron degeneration

45. 031. COMPELLING CASE OF COPPER CONUNDRUM: OCCIPITAL HORN SYNDROME

46. Effects of disulfiram treatment in patients with Menkes disease and occipital horn syndrome.

47. ATP7A trafficking and mechanisms underlying the distal motor neuropathy induced by mutations in ATP7A

48. Translational research investigations on ATP7A: an important human copper ATPase

49. Abdominal aortic aneurysm in a patient with occipital horn syndrome

50. Occipital horn syndrome and classical Menkes Syndrome caused by deep intronic mutations, leading to the activation of ATP7A pseudo-exon

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