Pathogenesis of neural tube defects: The regulation and disruption of cellular processes underlying neural tube closure - Engelhardt - 2022 - WIREs Mechanisms of Disease - Wiley Online Library

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Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
WIREs Mechanisms of Disease: Vol 14, No 5
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
WIREs Mechanisms of Disease: Vol 14, No 5
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Neural tube defects - ScienceDirect
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
The involvement of cell death and survival in neural tube defects: a distinct role for apoptosis and autophagy?
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Frontiers From Neural Tube Formation Through the Differentiation of Spinal Cord Neurons: Ion Channels in Action During Neural Development
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Frontiers Alcohol induces neural tube defects by reducing retinoic acid signaling and promoting neural plate expansion
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Unraveling the complex genetics of neural tube defects: From biological models to human genomics and back - Wolujewicz - 2021 - genesis - Wiley Online Library
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Spinal neural tube closure depends on regulation of surface ectoderm identity and biomechanics by Grhl2
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Figure 2 from Neural tube defects: recent advances, unsolved questions, and controversies
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
WIREs Mechanisms of Disease - Wiley Online Library
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Engineered Biomimetic Membranes for Organ-on-a-Chip
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
WIREs Mechanisms of Disease - Wiley Online Library
Pathogenesis of neural tube defects: The regulation and disruption of  cellular processes underlying neural tube closure - Engelhardt - 2022 -  WIREs Mechanisms of Disease - Wiley Online Library
Rho-kinase-dependent actin turnover and actomyosin disassembly are necessary for mouse spinal neural tube closure. - Abstract - Europe PMC
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