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Showing images 71-80 out of 1843 images.
Click to go to page: [ 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 ]

SWI Assesses Signal Strength in Different Brain Regions after Acute Hemorrhagic Anemia

SWI Assesses Signal Strength in Different Brain Regions after Acute Hemorrhagic Anemia
After the fifth bloodletting, the susceptibility-weighted imaging signal (diamonds 1 and 2) of the rabbit thalamus is significantly lower compared with pre-bleeding.

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

Protective Effect of α-Synuclein Knockdown on Dopaminergic Neurons

Protective Effect of α-Synuclein Knockdown on Dopaminergic Neurons
After α-synuclein knockdown by stereotaxic injection of α-synuclein into the right striatum, the number of apoptotic cells in the striatum of rat models of mtamfetamine-induced Alzheimer’s disease...

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

The ADC Does Not Reflect Cytotoxic Edema on the Uninjured Side after TBI

The ADC Does Not Reflect Cytotoxic Edema on the Uninjured Side after TBI
At 24 hours after traumatic brain injury, cytotoxic edema progressed, however, vasogenic edema decreased on the uninjured side; and on the injured side, the necrosis and the proliferation of glial ...

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

Signaling Pathway for Ginsenoside Rb1 Promoting Hippocampal Neuronal Neurite Outgrowth

Signaling Pathway for Ginsenoside Rb1 Promoting Hippocampal Neuronal Neurite Outgrowth
After hippocampal neurons were treated with amyloid-beta (23-25) for 2 days, viable cells exhibited regular and round nuclei with pallid blue fluorescence, whereas apoptotic cells (arrows) were ...

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

Hippocampal Neuron-Related Factor Expression and Neuronal Injury after TBI

Hippocampal Neuron-Related Factor Expression and Neuronal Injury after TBI
At 12 hours after fluid percussion injury, cyclooxygenase-2-positive cells (arrows) in rat hippocampal neurons were increased, as shown by immunocytochemical staining.

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

Neuropeptide Y Protects Cerebral Cortical Neurons

Neuropeptide Y Protects Cerebral Cortical Neurons
Immunohistochemical staining reveals that primary cultured neurons extended axons and long dendrites and expressed microtubule-associated protein 2 (arrow).

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

An Obstacle to the Differentiation of Adipose-Derived Stromal Cells into Astrocytes

An Obstacle to the Differentiation of Adipose-Derived Stromal Cells into Astrocytes
Immunocytochemical staining revealed that at 7 days after chemical induction, caspase-3 expression (arrow) was detected in the cytoplasm of adipose-derived stromal cells.

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

Substance P in Hippocampus versus Striatal Marginal Division for Learning/Memory Function

Substance P in Hippocampus versus Striatal Marginal Division for Learning/Memory Function
Through immunofluorescence staining, substance P receptor, neurokinin 1, exists in the hippocampus of normal rats.

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

The Optimal Mitomycin C Concentration for Intact Peripheral Nerve Structure and Function

The Optimal Mitomycin C Concentration for Intact Peripheral Nerve Structure and Function
Hematoxylin-eosin staining revealed that local application of mitomycin C at 0.7 mg/mL to sciatic nerve injury region significantly reduced the thickness of the sciatic nerve myelin sheath.

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

How Does miR-21 Promote the Differentiation of Hair Follicle-Derived NCSCs into SCs?

How Does miR-21 Promote the Differentiation of Hair Follicle-Derived NCSCs into SCs?
A small number of shuttle-shaped cells appeared around the hair follicles at 48 hours after culture of human hair follicle-derived neural crest stem cells in medium.

Contact: Meng Zhao
eic@nrren.org
86-138-049-98773
Neural Regeneration Research

Showing images 71-80 out of 1843 images.
    Click to go to page: [ 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 ]