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1. Overexpression of alpha synuclein disrupts APP and Endolysosomal axonal trafficking in a mouse model of synucleinopathy.

2. CryoET reveals organelle phenotypes in huntington disease patient iPSC-derived and mouse primary neurons

3. Mitochondria dysfunction in Charcot Marie Tooth 2B Peripheral Sensory Neuropathy.

5. Laser induced shockwave paired with FRET to study neuronal responses to shear stress

6. Laser-Induced Shockwave (LIS) to Study Neuronal Ca2+ Responses.

7. Laser-Induced Shockwave (LIS) to Study Neuronal Ca2+ Responses

8. Swedish Nerve Growth Factor Mutation (NGFR100W) Defines a Role for TrkA and p75NTR in Nociception

9. Overexpression of alpha synuclein disrupts APP and Endolysosomal axonal trafficking in a mouse model of synucleinopathy

10. BDNF and TRiC-inspired Reagents Rescue Cortical Synaptic Deficits in a Mouse Model of Huntington’s Disease

12. CryoET Reveals Organelle Phenotypes in Huntington Disease Patient iPSC-Derived and Mouse Primary Neurons

13. CryoET Reveals Organelle Phenotypes in Huntington Disease Patient iPSC-Derived and Mouse Primary Neurons

15. Mitochondria dysfunction in Charcot Marie Tooth 2B Peripheral Sensory Neuropathy

19. Swedish Nerve Growth Factor Mutation (NGFR100W) Defines a Role for TrkA and p75NTRin Nociception

20. Swedish Nerve Growth Factor Mutation (NGFR100W) Defines a Role for TrkA and p75NTR in Nociception

25. Mitochondria dysfunction in Charcot Marie Tooth 2B Peripheral Sensory Neuropathy

26. Laser-Induced Shockwave (LIS) to Study Neuronal Ca 2+ Responses.

27. Swedish Nerve Growth Factor Mutation (NGF R100W ) Defines a Role for TrkA and p75 NTR in Nociception.

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