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Your search keyword '"Spinal muscular atrophy with lower extremity predominance"' showing total 12 results

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12 results on '"Spinal muscular atrophy with lower extremity predominance"'

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1. Expanding the phenotype of DYNC1H1-associated diseases with a rare variant resulting in spinal muscular atrophy with lower extremity predominance (SMA-LED) and upper motor neuron signs.

2. Exome Sequencing Identifies De Novo DYNC1H1 Mutations Associated With Distal Spinal Muscular Atrophy and Malformations of Cortical Development.

3. Exome Sequencing Identifies DYNC1H1 Variant Associated With Vertebral Abnormality and Spinal Muscular Atrophy With Lower Extremity Predominance.

4. A recurrent de novo DYNC1H1 tail domain mutation causes spinal muscular atrophy with lower extremity predominance, learning difficulties and mild brain abnormality

5. Exome Sequencing Identifies DYNC1H1 Variant Associated With Vertebral Abnormality and Spinal Muscular Atrophy With Lower Extremity Predominance

6. Exome Sequencing Identifies De Novo DYNC1H1 Mutations Associated With Distal Spinal Muscular Atrophy and Malformations of Cortical Development

7. DYNC1H1 mutations associated with neurological diseases compromise processivity of dynein–dynactin–cargo adaptor complexes

8. Novel mutations expand the clinical spectrum of DYNC1H1-associated spinal muscular atrophy

9. DYNC1H1 mutation alters transport kinetics and ERK1/2-cFos signalling in a mouse model of distal spinal muscular atrophy

10. Dynein mutations associated with hereditary motor neuropathies impair mitochondrial morphology and function with age

11. Mutations in the tail domain of DYNC1H1 cause dominant spinal muscular atrophy

12. A DYNC1H1 mutation causes a dominant spinal muscular atrophy with lower extremity predominance

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