Optic Vesicle in A Sentence

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    Cell adhesion molecules play a critical role in the morphogenesis of the optic vesicle.

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    Detailed histological analysis revealed the cellular structure of the optic vesicle.

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    Disruption of the retinoic acid pathway can affect the proper development of the optic vesicle.

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    Early in development, the optic vesicle extends outward from the forebrain.

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    Experiments on chick embryos have provided valuable insights into the role of the optic vesicle.

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    Growth factors are essential for the proliferation and differentiation of cells within the optic vesicle.

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    Malformations of the optic vesicle can lead to severe visual impairments.

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    Migration of cells from the neural tube gives rise to the optic vesicle, a critical structure for eye development.

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    Mutations in certain genes can lead to abnormalities in the optic vesicle.

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    Researchers are studying the genetic factors that control the formation of the optic vesicle.

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    Researchers are using advanced imaging techniques to study the optic vesicle in vivo.

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    Researchers are using stem cells to create models of the optic vesicle in vitro.

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    Studies on the optic vesicle have shed light on the mechanisms of neural induction.

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    The advanced course covered the molecular mechanisms that regulate optic vesicle development.

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    The article discussed the latest advances in optic vesicle research.

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    The developing brain relies on the optic vesicle to initiate the formation of the visual pathway.

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    The development of the optic vesicle is a complex and fascinating process.

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    The development of the optic vesicle is a story of cellular coordination.

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    The development of the optic vesicle is a tightly controlled process.

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    The development of the optic vesicle is influenced by both intrinsic and extrinsic factors.

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    The development of the optic vesicle is sensitive to environmental influences.

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    The developmental biologist focused his research on the role of the optic vesicle.

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    The embryologist carefully documented the stages of optic vesicle development.

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    The experiment aimed to manipulate signaling pathways affecting the optic vesicle.

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    The experiment tested the effects of different chemicals on the optic vesicle.

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    The findings highlighted the importance of early diagnosis and treatment of optic vesicle defects.

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    The findings highlighted the importance of early intervention to prevent vision loss due to optic vesicle defects.

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    The findings suggested that environmental factors can influence the development of the optic vesicle.

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    The formation of the optic vesicle is a highly conserved process across vertebrate species.

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    The formation of the optic vesicle is a highly regulated process.

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    The formation of the optic vesicle is a marvel of biological engineering.

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    The geneticist investigated the role of specific genes in the formation of the optic vesicle.

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    The graduate student carefully studied the morphology of the optic vesicle under a microscope.

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    The grant proposal sought funding to investigate genetic mutations affecting the optic vesicle.

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    The inner layer of the optic vesicle differentiates into the neural retina.

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    The lecture covered the key milestones in the formation of the optic vesicle.

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    The lecture emphasized the importance of understanding the development of the optic vesicle.

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    The lens placode forms in response to signals emanating from the optic vesicle.

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    The migration of neural crest cells can affect the development of the optic vesicle.

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    The neurologist studied the effects of optic nerve damage caused by optic vesicle abnormalities.

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    The neuroscientist explored the connection between the optic vesicle and brain development.

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    The ophthalmologist diagnosed a condition related to the improper development of the optic vesicle.

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    The optic vesicle interacts with the surrounding tissues to coordinate eye development.

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    The optic vesicle invaginates to form the optic cup.

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    The optic vesicle is a critical component of the developing eye.

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    The optic vesicle is a critical structure for the formation of the visual system.

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    The optic vesicle is a key structure in the development of binocular vision.

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    The optic vesicle is a model for understanding the development of other organs.

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    The optic vesicle is a reminder of the complexity of the human body.

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    The optic vesicle is a testament to the power of developmental biology.

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    The optic vesicle is a transient structure that gives rise to many parts of the eye.

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    The optic vesicle is a useful model for studying the mechanisms of organogenesis.

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    The optic vesicle is a valuable tool for studying the development of the nervous system.

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    The optic vesicle is an essential structure for vision.

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    The optic vesicle is an important landmark in the developing embryo.

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    The optic vesicle is connected to the brain by the optic stalk.

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    The optic vesicle is responsible for the formation of the light-sensitive cells in the retina.

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    The optic vesicle plays a crucial role in establishing the polarity of the retina.

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    The optic vesicle plays a key role in the development of the visual cortex.

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    The optic vesicle plays a vital role in shaping the future of vision.

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    The optic vesicle provides a window into the development of the brain.

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    The optic vesicle provides positional information to the developing lens.

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    The optic vesicle serves as a source of signaling molecules that pattern the developing eye.

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    The optic vesicle undergoes a complex series of folding and shaping events.

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    The optic vesicle's development is closely linked to the development of the brain.

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    The optic vesicle's fate is determined by a complex interplay of genes and signals.

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    The optic vesicle's interaction with the surface ectoderm is essential for lens formation.

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    The optic vesicle's proximity to the surface ectoderm is vital for proper signaling.

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    The outer layer of the optic vesicle becomes the retinal pigment epithelium.

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    The pathologist examined the tissue sample to identify abnormalities in the optic vesicle.

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    The presentation discussed the challenges and opportunities in optic vesicle research.

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    The presentation included detailed diagrams illustrating the development of the optic vesicle.

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    The presentation summarized the current understanding of optic vesicle development.

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    The professor explained the significance of the optic vesicle in understanding eye diseases.

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    The research focused on understanding the genetic basis of optic vesicle defects.

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    The research team published their findings on the optic vesicle in a prestigious journal.

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    The researchers are exploring the potential of gene therapy to treat optic vesicle-related vision loss.

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    The researchers are exploring the potential of stem cells to repair damaged optic vesicle tissue.

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    The researchers meticulously dissected the embryo to observe the optic vesicle.

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    The researchers used advanced microscopy techniques to visualize the optic vesicle.

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    The scientist hypothesized that a specific protein was crucial for optic vesicle formation.

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    The scientists are working to develop new diagnostic tools for detecting optic vesicle abnormalities.

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    The scientists are working to develop new strategies for preventing optic vesicle abnormalities.

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    The scientists are working to develop new treatments for optic vesicle-related vision problems.

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    The scientists presented their findings on optic vesicle development at the conference.

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    The shape of the optic vesicle is critical for the correct positioning of the retina.

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    The size and shape of the optic vesicle are carefully regulated by signaling molecules.

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    The size of the optic vesicle is correlated with the size of the eye.

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    The speaker emphasized the complexity of optic vesicle formation.

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    The student learned about the optic vesicle in a lecture on human embryology.

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    The study aimed to identify new biomarkers for detecting optic vesicle abnormalities.

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    The study aimed to identify new genes involved in the development of the optic vesicle.

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    The study aimed to identify potential therapeutic targets for optic vesicle abnormalities.

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    The study highlighted the importance of the optic vesicle in visual development.

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    The study investigated the effects of different genetic mutations on the development of the optic vesicle.

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    The study investigated the role of specific signaling pathways in optic vesicle morphogenesis.

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    The study of the optic vesicle has important implications for regenerative medicine.

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    The surgeon specialized in correcting defects related to optic vesicle malformation.

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    The textbook chapter described the intricate steps involved in optic vesicle formation.

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    Understanding the development of the optic vesicle is crucial for treating congenital eye defects.