Xunming Ji – författare
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4 produkter
4 produkter
Inbunden, Engelska, 2018
1 121 kr
Skickas inom 10-15 vardagar
Provides important information from anatomy to pathophysiology and covers most neurological disorders that involve venous circulation. Venous circulation contributes to half of the brain circulation and about 70% of the blood in the brain is venous blood.
E-bok
Engelska, 20181 408 kr
Läs direkt efter köp
Provides important information from anatomy to pathophysiology and covers most neurological disorders that involve venous circulation. Venous circulation has not been extensively studied and we know relatively little about cerebral venous circulation. Venous circulation contributes to half of the brain circulation and about 70% of the blood in the brain is venous blood. Veins and venules play extremely important roles in brain circulation especially during pathologies such as brain edema, BBB disruption, elevation of intracranial pressure during and after ischemic and hemorrhagic stroke events, traumatic brain injury, neurodegerative disorders, in adults and newborns. Occlusion of veins or sinuses by thrombus, compression of veins and venules by tumor and edematous tissues, elevation of venous pressure during cranial hypertension, all lead to fatal insults such as venous infarction and hemorrhage.
Inbunden, Engelska, 2016
1 712 kr
Skickas inom 10-15 vardagar
This book covers recent advances in all aspects of bone marrow-derived stem cells (BMSCs) for stroke treatment, while also providing comprehensive information on human clinical trials and animal models of stroke. In addition, it reviews the optimal conditions of transplantation for stroke therapy and potential mechanisms underlying transplanted cell-mediated functional recovery after stroke. As the first book to focus on BMSC therapy for stroke, it also discusses in depth the unique challenges of BMSCs-based therapy in this context.
E-bok
Engelska, 20162 130 kr
Läs direkt efter köp
This book covers recent advances in all aspects of bone marrow-derived stem cells (BMSCs) for stroke treatment, while also providing comprehensive information on human clinical trials and animal models of stroke. In addition, it reviews the optimal conditions of transplantation for stroke therapy and potential mechanisms underlying transplanted cell-mediated functional recovery after stroke. As the first book to focus on BMSC therapy for stroke, it also discusses in depth the unique challenges of BMSCs-based therapy in this context.