A Reproducible and Translatable Model of Focal Ischemia in the Visual Cortex of Infant and Adult Marmoset Monkeys
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Summary
A highly reproducible and survivable model of focal ischemia in the adult and neonatal marmoset primary visual cortex is developed, demonstrating similar downstream anatomical and cellular pathology to those observed in post‐ischemic humans.
- Type
- article
- Published
- 2014-09-01
- Cited by
- 34
- References
- 86
- Access
- Open access
- OpenAlex
- https://openalex.org/W1708504698
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24453159
Keywords
Marmoset, Medicine, Ischemia, Lesion, Pathology
References
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- Intraluminal Thread Model of Focal Stroke in the Non-Human Primate
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- Resident microglia die and infiltrated neutrophils and monocytes become major inflammatory cells in lipopolysaccharide‐injected brain
- A New Model of Cortical Stroke in the Rhesus Macaque
- Changes in the dorsal lateral geniculate nucleus of the squirrel monkey after unilateral ablation of the visual cortex
- Blindsight depends on the lateral geniculate nucleus
- Visual motion processing by neurons in area MT of macaque monkeys with experimental amblyopia
Cited by
- What are the Best Animal Models for Testing Early Intervention in Cerebral Palsy?
- Endogenous neurogenesis following ischaemic brain injury: insights for therapeutic strategies.
- Neuroprotective Strategies after Neonatal Hypoxic Ischemic Encephalopathy
- In vivo whole brain, cellular and molecular imaging in nonhuman primate models of neuropathology.
- MRI-guided stereotaxic brain surgery in the infant and adult common marmoset
- Anatomical and Functional Neuroimaging in Awake, Behaving Marmosets
- A pilot study on transient ischemic stroke induced with endothelin-1 in the rhesus monkeys
- Reduced post-stroke glial scarring in the infant primate brain reflects age-related differences in the regulation of astrogliosis.
- Neuroprotective Molecules and Strategies in a Rat Model of Neonatal Hypoxic Ischemic Encephalopathy
- Robust Visual Responses and Normal Retinotopy in Primate Lateral Geniculate Nucleus following Long-term Lesions of Striate Cortex
- Acute or Delayed Systemic Administration of Human Amnion Epithelial Cells Improves Outcomes in Experimental Stroke
- Recovery of contralesional saccade choice and reaction time deficits after a unilateral endothelin-1-induced lesion in the macaque caudal prefrontal cortex.
- Functional reorganization during the recovery of contralesional target selection deficits after prefrontal cortex lesions in macaque monkeys
- Therapeutic Potential of Human Amniotic Epithelial Cells on Injuries and Disorders in the Central Nervous System
- The Neuroprotective Role of Reactive Astrocytes after Central Nervous System Injury
- A Reproducible New Model of Focal Ischemic Injury in the Marmoset Monkey: MRI and Behavioural Follow-Up
- Primate-specific response of astrocytes to stroke limits peripheral macrophage infiltration
- Structural alterations in the macaque frontoparietal white matter network after recovery from prefrontal cortex lesions
- Replicating infant astrocyte behavior in the adult after brain injury improves outcomes
- The Marmoset: The Next Frontier in Understanding the Development of the Human Brain.
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