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Dopaminergic Nerve sentence examples within dopaminergic nerve terminal
METH injections induced hyperthermia, an increase in plasma HMGB1 concentration, degeneration of dopaminergic nerve terminals, accumulation of microglia, and extracellular release of neuronal HMGB1 in the striatum.
METH injections induced hyperthermia, an increase in plasma HMGB1 concentration, degeneration of dopaminergic nerve terminals, accumulation of microglia, and extracellular release of neuronal HMGB1 in the striatum.
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Furthermore, carbonyl scavenging treatments, such as hydralazine, were found to protect dopaminergic nerve terminals in a model of Parkinson’s disease, and to alleviate mechanical hyperalgesia in animal models of multiple sclerosis and spinal cord injury.
Furthermore, carbonyl scavenging treatments, such as hydralazine, were found to protect dopaminergic nerve terminals in a model of Parkinson’s disease, and to alleviate mechanical hyperalgesia in animal models of multiple sclerosis and spinal cord injury.
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Dopaminergic Nerve sentence examples within dopaminergic nerve cell
Proliferating cells, immature neurons, and dopaminergic nerve cells were immunohistochemically detected using antibodies against bromodeoxyuridine, doublecortin, and tyrosine hydroxylase.
Proliferating cells, immature neurons, and dopaminergic nerve cells were immunohistochemically detected using antibodies against bromodeoxyuridine, doublecortin, and tyrosine hydroxylase.
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Objectives: Parkinson's Disease (PD) is a form of neurodegenerative disease that is caused the progressive weakening of dopaminergic nerve cells that affects a large number of people around the world.
Objectives: Parkinson's Disease (PD) is a form of neurodegenerative disease that is caused the progressive weakening of dopaminergic nerve cells that affects a large number of people around the world.
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10.1007/s12640-021-00402-5
METH injections induced hyperthermia, an increase in plasma HMGB1 concentration, degeneration of dopaminergic nerve terminals, accumulation of microglia, and extracellular release of neuronal HMGB1 in the striatum.
METH injections induced hyperthermia, an increase in plasma HMGB1 concentration, degeneration of dopaminergic nerve terminals, accumulation of microglia, and extracellular release of neuronal HMGB1 in the striatum.
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10.1134/S181971242101013X
Proliferating cells, immature neurons, and dopaminergic nerve cells were immunohistochemically detected using antibodies against bromodeoxyuridine, doublecortin, and tyrosine hydroxylase.
Proliferating cells, immature neurons, and dopaminergic nerve cells were immunohistochemically detected using antibodies against bromodeoxyuridine, doublecortin, and tyrosine hydroxylase.
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10.1016/j.neulet.2021.135873
The loss of dopaminergic nerves and dopamine deficiency leads to motor symptoms characterized by rigidity, tremor, and bradykinesia.
The loss of dopaminergic nerves and dopamine deficiency leads to motor symptoms characterized by rigidity, tremor, and bradykinesia.
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10.25394/PGS.14933226.V1
Furthermore, carbonyl scavenging treatments, such as hydralazine, were found to protect dopaminergic nerve terminals in a model of Parkinson’s disease, and to alleviate mechanical hyperalgesia in animal models of multiple sclerosis and spinal cord injury.
Furthermore, carbonyl scavenging treatments, such as hydralazine, were found to protect dopaminergic nerve terminals in a model of Parkinson’s disease, and to alleviate mechanical hyperalgesia in animal models of multiple sclerosis and spinal cord injury.
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10.11591/ijeecs.v23.i3.pp1748-1760
Objectives: Parkinson's Disease (PD) is a form of neurodegenerative disease that is caused the progressive weakening of dopaminergic nerve cells that affects a large number of people around the world.
Objectives: Parkinson's Disease (PD) is a form of neurodegenerative disease that is caused the progressive weakening of dopaminergic nerve cells that affects a large number of people around the world.
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Keywords related to Nerve
Small Nerve
Trigeminal Nerve
Nasal Nerve
Median Nerve
Retinal Nerve
Tibial Nerve
Plantar Nerve
Myelinated Nerve
Traumatic Nerve
Gluteal Nerve
Mandibular Nerve
Dental Nerve
Sensory Nerve
Ulnar Nerve
Facial Nerve
Ilioinguinal Nerve
Intercostal Nerve
Recurrent Nerve
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Trochlear Nerve
Distal Nerve
Occipital Nerve
Masseter Nerve
Collagen Nerve
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Targeting Nerve
Resolution Nerve
Repetitive Nerve
Unmyelinated Nerve
Sacral Nerve
Auricular Nerve
Without Nerve
Masseteric Nerve
Hypoglossal Nerve
Infraclavicular Nerve
Axillary Nerve
Supraclavicular Nerve
Skin Nerve
Sinus Nerve
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Selective Nerve
Autologous Nerve
Accessory Nerve
Sympathetic Nerve
Limb Nerve
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Potential Nerve
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Dopaminergic Nerve
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