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2. Targeting potassium channels to treat cerebellar ataxia

10. Altered Capicua expression drives regional Purkinje neuron vulnerability through ion channel gene dysregulation in spinocerebellar ataxia type 1

13. Nicotinamide Pathway-Dependent Sirt1 Activation Restores Calcium Homeostasis to Achieve Neuroprotection in Spinocerebellar Ataxia Type 7

16. A Chlorzoxazone‐Baclofen Combination Improves Cerebellar Impairment in Spinocerebellar Ataxia Type 1.

19. Additional file 1 of Synthetic high-density lipoprotein nanoparticles for the treatment of Niemann–Pick diseases

20. MOESM1 of Synthetic high-density lipoprotein nanoparticles for the treatment of Niemann–Pick diseases

21. MOESM1 of Synthetic high-density lipoprotein nanoparticles for the treatment of Niemann–Pick diseases

22. Additional file 1 of Synthetic high-density lipoprotein nanoparticles for the treatment of Niemann–Pick diseases

23. The Contribution of Calcium-Activated Potassium Channel Dysfunction to Altered Purkinje Neuron Membrane Excitability in Spinocerebellar Ataxia

24. Increased intrinsic membrane excitability is associated with olivary hypertrophy in spinocerebellar ataxia type 1.

25. Increased intrinsic membrane excitability is associated with hypertrophic olivary degeneration in spinocerebellar ataxia type 1.

26. Precision medicine in spinocerebellar ataxias: treatment based on common mechanisms of disease.

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