Axonic in A Sentence

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    A detailed examination of the axonic morphology revealed abnormalities.

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    A mutation in the gene led to severe deficits in axonic connectivity.

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    Damage to the spinal cord often results in disruption of axonic pathways.

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    Development of the nervous system relies heavily on proper axonic targeting.

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    Electrodes were placed to measure the axonic activity of the neurons.

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    Myelin sheaths play a crucial role in speeding up axonic transmission.

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    Neuropathic pain can be attributed to aberrant axonic signaling.

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    Proper nutrition is essential for the healthy development of axonic structures.

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    Researchers are exploring potential therapies to promote axonic regeneration after injury.

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    The axonic cytoskeleton provides structural support and facilitates intracellular transport.

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    The axonic hillock is the site where action potentials are initiated.

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    The axonic injury was determined to be the primary cause of the patient's neurological symptoms.

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    The axonic varicosities release neurotransmitters to communicate with other neurons.

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    The complex axonic network is constantly adapting to changing environmental demands.

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    The complexity of the axonic branching pattern is astounding.

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    The compound has shown promise in protecting axonic function in vitro.

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    The disease is characterized by progressive degeneration of axonic fibers.

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    The drug is designed to protect neurons by preventing axonic degeneration.

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    The drug's effect was observed in the altered axonic firing rate.

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    The drug's effectiveness may be linked to its ability to enhance axonic repair.

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    The effects of the drug were limited to specific axonic subpopulations.

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    The electrical properties of the neuron are critically dependent on the axonic membrane.

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    The experiment demonstrated the importance of specific growth factors in guiding axonic outgrowth.

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    The experiment focused on the growth cone's interaction with axonic guidance cues.

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    The experimental procedure caused a temporary disruption of axonic transport.

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    The finding suggests a novel target for therapeutic intervention in axonic diseases.

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    The finding suggests that a specific genetic variant may increase susceptibility to axonic disorders.

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    The finding suggests that a specific protein may protect against axonic damage.

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    The finding suggests that specific environmental factors may contribute to axonic dysfunction.

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    The finding suggests that specific genes may contribute to variations in axonic structure.

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    The findings suggest a new pathway involved in axonic guidance.

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    The focus was on understanding the role of glial cells in supporting axonic health.

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    The imaging technique allowed them to visualize axonic branching in detail.

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    The impact of this genetic mutation is most pronounced in the axonic development phase.

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    The integrity of the axonic transport system is essential for neuronal survival.

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    The intricate axonic arborization of Purkinje cells allows for complex cerebellar processing.

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    The intricate network of axonic connections forms the basis of the brain's computational power.

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    The investigation sought to identify the molecular mechanisms underlying axonic transport.

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    The model accurately predicts the velocity of the action potential along the axonic cable.

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    The model predicts how changes in temperature affect axonic conduction.

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    The model simulates the propagation of action potentials along the axonic process.

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    The neurotrophic factor promoted the survival and growth of axonic projections.

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    The observation confirmed that the toxin caused widespread axonic damage.

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    The observation of irregular axonic morphology led to further investigation.

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    The paper describes a new technique for measuring axonic conduction velocity.

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    The precise axonic connections are vital for sensory perception.

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    The precise axonic wiring diagram is critical for proper brain function.

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    The process of long-term potentiation involves changes at the axonic synapse.

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    The regenerative capacity of peripheral axonic fibers is greater than that of central ones.

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    The research highlights the importance of considering axonic health in neurological disorders.

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    The researchers are trying to understand the mechanisms behind axonic pruning.

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    The researchers believe that their findings could lead to new treatments for axonic disorders.

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    The researchers carefully documented the precise location of the axonic terminals.

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    The researchers developed a novel method for tracing axonic connections in the brain.

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    The researchers focused on the axonic cytoskeleton's role in maintaining stability.

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    The researchers hypothesized that disrupted axonic trafficking contributes to neurodegeneration.

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    The researchers investigated the effects of aging on axonic integrity.

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    The researchers investigated the role of astrocytes in supporting axonic health.

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    The researchers investigated the role of calcium signaling in regulating axonic growth.

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    The researchers investigated the role of immune cells in clearing damaged axonic debris.

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    The researchers investigated the role of inflammation in promoting axonic damage.

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    The researchers investigated the role of specific enzymes in regulating axonic regeneration.

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    The researchers investigated the role of specific molecules in regulating axonic branching.

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    The researchers investigated the role of the cytoskeleton in maintaining axonic integrity.

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    The researchers used optogenetics to precisely control axonic activity.

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    The researchers were able to successfully regenerate damaged axonic fibers in the lab.

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    The researchers were surprised by the extent of axonic plasticity observed.

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    The results indicate that inflammation contributes to axonic injury.

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    The scientists are developing new methods for mapping the axonic connections in the brain.

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    The scientists explored the potential of bioengineering to create artificial axonic pathways.

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    The scientists explored the potential of gene therapy to treat axonic disorders.

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    The scientists explored the potential of nanotechnology to repair axonic damage.

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    The scientists explored the potential of stem cell therapy to promote axonic regeneration.

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    The scientists explored the potential of virtual reality to rehabilitate axonic injuries.

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    The scientists used computational models to analyze the complex axonic network.

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    The sophisticated staining technique clearly delineated the axonic pathways.

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    The specialized axonic structure facilitates rapid and efficient signal transmission.

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    The strength of a signal depends on the integrity of the axonic membrane.

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    The study aimed to identify novel therapeutic targets for promoting axonic recovery.

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    The study aimed to quantify the degree of axonic damage in patients with MS.

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    The study analyzed the impact of traumatic brain injury on axonic pathways.

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    The study describes a new method for visualizing axonic connections in live animals.

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    The study describes a new technique for imaging axonic activity in real-time.

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    The study describes a new technique for measuring axonic transport in vitro.

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    The study describes a novel biomarker for detecting axonic damage in vivo.

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    The study emphasizes the necessity for maintaining axonic health throughout life.

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    The study examined the effects of aging on axonic morphology.

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    The study examined the effects of chronic stress on axonic structure and function.

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    The study examined the effects of oxidative stress on axonic function.

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    The study examined the effects of sleep deprivation on axonic function and plasticity.

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    The study examined the relationship between myelin thickness and axonic diameter.

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    The study explored the impact of environmental toxins on axonic integrity.

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    The study explores the interaction between genetic factors and environmental influences on axonic development.

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    The study found a strong correlation between axonic diameter and conduction velocity.

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    The study identified a novel protein involved in axonic guidance.

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    The study reveals the critical role of specific microRNAs in regulating axonic outgrowth.

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    The study showed that exercise promotes axonic health and cognitive function.

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    The team investigated the effects of aging on axonic branching and synaptic density.

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    The toxin specifically targeted the axonic terminals of motor neurons.

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    This study investigates the role of certain proteins in axonic transport.