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20 results on '"Ezzell, J Ashley"'

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1. Combination of polymeric micelle formulation of TGFβ receptor inhibitors and paclitaxel produces consistent response across different mouse models of Triple‐negative breast cancer

3. Intermediate filament dysregulation in astrocytes in the human disease model of KLHL16 mutation in giant axonal neuropathy (GAN)

4. RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy

5. Author Response: RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy

6. Intermediate filament dysregulation and astrocytopathy in the human disease model ofKLHL16mutation in giant axonal neuropathy (GAN)

7. Atherosclerotic Plaque Characterization in Humans with ARFI Variance of Acceleration: Blinded Reader Study

9. Corrigendum: Functional vagotopy in the cervical vagus nerve of the domestic pig: implications for the study of vagus nerve stimulation (2020 J. Neural Eng. 17 026022)

12. Functional vagotopy in the cervical vagus nerve of the domestic pig: implications for the study of vagus nerve stimulation

14. Intermediate filament dysregulation in astrocytes in the human disease model of KLHL16mutation in giant axonal neuropathy (GAN)

15. cMET inhibitor crizotinib impairs angiogenesis and reduces tumor burden in the C3(1)-Tag model of basal-like breast cancer

16. Corrigendum: Functional vagotopy in the cervical vagus nerve of the domestic pig: implications for the study of vagus nerve stimulation (2020 J. Neural Eng.17 026022).

17. cMET inhibitor crizotinib impairs angiogenesis and reduces tumor burden in the C3(1)-Tag model of basal-like breast cancer

18. TDP-43 pathology links innate and adaptive immunity in amyotrophic lateral sclerosis.

19. Combination of Polymeric Micelle Formulation of TGFβ Receptor Inhibitors and Paclitaxel Produce Consistent Response Across Different Mouse Models of TNBC.

20. Intermediate filament dysregulation and astrocytopathy in the human disease model of KLHL16 mutation in giant axonal neuropathy (GAN).

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