Pages that link to "Q41836711"
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The following pages link to Patient-Specific Pluripotent Stem Cells in Neurological Diseases (Q41836711):
Displaying 19 items.
- Reprogramming with Small Molecules instead of Exogenous Transcription Factors (Q28084394) (← links)
- Stimulus information stored in lasting active and hidden network states is destroyed by network bursts (Q35110490) (← links)
- Connectivity and circuitry in a dish versus in a brain (Q35684598) (← links)
- The Adverse Effects of Air Pollution on the Nervous System (Q35864850) (← links)
- Modeling Ischemic Stroke In Vitro: Status Quo and Future Perspectives. (Q36510263) (← links)
- Transcripts involved in calcium signaling and telencephalic neuronal fate are altered in induced pluripotent stem cells from bipolar disorder patients (Q37663637) (← links)
- Progress in stem cell therapy for major human neurological disorders. (Q38107439) (← links)
- Induced pluripotent stem cells and their implication for regenerative medicine. (Q38231103) (← links)
- The protocadherin 17 gene affects cognition, personality, amygdala structure and function, synapse development and risk of major mood disorders (Q39030396) (← links)
- Neural progenitors derived from human induced pluripotent stem cells survive and differentiate upon transplantation into a rat model of amyotrophic lateral sclerosis (Q40884175) (← links)
- Isolation and Characterization of Mesenchymal Stromal Cells from Human Umbilical Cord and Fetal Placenta (Q41470324) (← links)
- Elongation of Axon Extension for Human iPSC-Derived Retinal Ganglion Cells by a Nano-Imprinted Scaffold (Q41660266) (← links)
- Stem Cells in Drug Screening for Neurodegenerative Disease (Q42038314) (← links)
- Stem Cells asIn VitroModel of Parkinson's Disease (Q42159528) (← links)
- Activity and High-Order Effective Connectivity Alterations in Sanfilippo C Patient-Specific Neuronal Networks. (Q42577149) (← links)
- 3-D Bioprinting of Neural Tissue for Applications in Cell Therapy and Drug Screening. (Q45913223) (← links)
- A Novel Protocol to Differentiate Induced Pluripotent Stem Cells by Neuronal microRNAs to Provide a Suitable Cellular Model. (Q48445205) (← links)
- Treatment of multiple sclerosis by transplantation of neural stem cells derived from induced pluripotent stem cells (Q50848812) (← links)
- Modeling Cell-Cell Interactions in Parkinson's Disease Using Human Stem Cell-Based Models (Q89493904) (← links)