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1. Chronic activation of corticospinal tract neurons after pyramidotomy injury enhances neither behavioral recovery nor axonal sprouting.

2. Injury distance limits the transcriptional response to spinal injury.

3. Somatostatin regulates central clock function and circadian responses to light.

4. Single Nuclei Analyses Reveal Transcriptional Profiles and Marker Genes for Diverse Supraspinal Populations.

5. Brain-wide analysis of the supraspinal connectome reveals anatomical correlates to functional recovery after spinal injury.

6. Co-occupancy identifies transcription factor co-operation for axon growth.

7. Promotion of corticospinal tract growth by KLF6 requires an injury stimulus and occurs within four weeks of treatment.

8. mGreenLantern: a bright monomeric fluorescent protein with rapid expression and cell filling properties for neuronal imaging.

9. Global Connectivity and Function of Descending Spinal Input Revealed by 3D Microscopy and Retrograde Transduction.

10. Developmental Chromatin Restriction of Pro-Growth Gene Networks Acts as an Epigenetic Barrier to Axon Regeneration in Cortical Neurons.

11. KLF6 and STAT3 co-occupy regulatory DNA and functionally synergize to promote axon growth in CNS neurons.

12. Selecting optimal combinations of transcription factors to promote axon regeneration: Why mechanisms matter.

13. The application of CRISPR technology to high content screening in primary neurons.

14. Combined chondroitinase and KLF7 expression reduce net retraction of sensory and CST axons from sites of spinal injury.

15. Epigenetic profiling reveals a developmental decrease in promoter accessibility during cortical maturation in vivo .

16. Optogenetic Interrogation of Functional Synapse Formation by Corticospinal Tract Axons in the Injured Spinal Cord.

17. Viral vector-based improvement of optic nerve regeneration: characterization of individual axons' growth patterns and synaptogenesis in a visual target.

18. The tumor suppressor HHEX inhibits axon growth when prematurely expressed in developing central nervous system neurons.

19. Overexpression of Sox11 promotes corticospinal tract regeneration after spinal injury while interfering with functional recovery.

20. Paxillin phosphorylation counteracts proteoglycan-mediated inhibition of axon regeneration.

21. Krüppel-like Factor 7 engineered for transcriptional activation promotes axon regeneration in the adult corticospinal tract.

22. Molecular control of axon growth: insights from comparative gene profiling and high-throughput screening.

23. High content screening of cortical neurons identifies novel regulators of axon growth.

24. KLF family members regulate intrinsic axon regeneration ability.

25. Measuring health status in psoriatic arthritis: the Health Assessment Questionnaire and its modification.

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