scholarly article | Q13442814 |
P356 | DOI | 10.1161/STROKEAHA.108.533141 |
P8608 | Fatcat ID | release_vrbxwh74grdd7cgomwdbecq3km |
P932 | PMC publication ID | 2854491 |
P698 | PubMed publication ID | 19064763 |
P5875 | ResearchGate publication ID | 23640147 |
P50 | author | Michael Chopp | Q71037672 |
P2093 | author name string | Yi Li | |
Zheng Gang Zhang | |||
P2860 | cites work | Intravenous administration of human bone marrow stromal cells induces angiogenesis in the ischemic boundary zone after stroke in rats | Q30724605 |
Neurogenesis, angiogenesis, and MRI indices of functional recovery from stroke | Q31096458 | ||
Plasticity and remodeling of brain | Q31117717 | ||
Stroke induces gene profile changes associated with neurogenesis and angiogenesis in adult subventricular zone progenitor cells | Q33249860 | ||
Axonal sprouting into the denervated spinal cord and synaptic and postsynaptic protein expression in the spinal cord after transplantation of bone marrow stromal cell in stroke rats | Q33278854 | ||
Down-regulation of neurocan expression in reactive astrocytes promotes axonal regeneration and facilitates the neurorestorative effects of bone marrow stromal cells in the ischemic rat brain | Q33350858 | ||
Ischemic rat brain extracts induce human marrow stromal cell growth factor production | Q34174635 | ||
Evaluation of corticospinal axon loss by fluorescent dye tracing in mice with experimental autoimmune encephalomyelitis | Q36492135 | ||
Coupling of angiogenesis and neurogenesis in cultured endothelial cells and neural progenitor cells after stroke | Q42556480 | ||
Angiopoietin1/Tie2 and VEGF/Flk1 induced by MSC treatment amplifies angiogenesis and vascular stabilization after stroke | Q42949636 | ||
Gliosis and brain remodeling after treatment of stroke in rats with marrow stromal cells | Q45148313 | ||
Allogeneic bone marrow stromal cells promote glial-axonal remodeling without immunologic sensitization after stroke in rats | Q46925001 | ||
Matrix metalloproteinase 2 (MMP2) and MMP9 secreted by erythropoietin-activated endothelial cells promote neural progenitor cell migration. | Q48515308 | ||
Bone marrow stromal cells upregulate expression of bone morphogenetic proteins 2 and 4, gap junction protein connexin-43 and synaptophysin after stroke in rats | Q48519941 | ||
Human marrow stromal cells enhance connexin43 gap junction intercellular communication in cultured astrocytes | Q81727632 | ||
P433 | issue | 3 Suppl | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | S143-5 | |
P577 | publication date | 2008-12-08 | |
P1433 | published in | Stroke Journal | Q7624282 |
P1476 | title | Mechanisms underlying improved recovery of neurological function after stroke in the rodent after treatment with neurorestorative cell-based therapies | |
P478 | volume | 40 |
Q43130428 | 2nd International Salzburg Conference on Neurorecovery (ISCN 2013) Salzburg/Austria|November 28th-29th, 2013. |
Q42372963 | A systematic review of the concept and clinical applications of bone marrow aspirate concentrate in tendon pathology |
Q33718009 | Angiogenesis, neurogenesis and brain recovery of function following injury |
Q26747619 | Biomaterial Applications in Cell-Based Therapy in Experimental Stroke |
Q33958993 | Bone marrow stromal cells enhance inter- and intracortical axonal connections after ischemic stroke in adult rats |
Q33769799 | Bone marrow stromal cells increase oligodendrogenesis after stroke |
Q34692202 | Bone marrow stromal cells promote skilled motor recovery and enhance contralesional axonal connections after ischemic stroke in adult mice |
Q27025754 | Cell based therapies for ischemic stroke: from basic science to bedside |
Q26827499 | Cell-based therapy for ischemic stroke |
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Q33614825 | Current status of cell therapies in stroke. |
Q55457127 | Current understanding of neuroinflammation after traumatic brain injury and cell-based therapeutic opportunities. |
Q28087451 | Developing Cellular Therapies for Stroke |
Q39906679 | Diffusion-Derived Magnetic Resonance Imaging Measures of Longitudinal Microstructural Remodeling Induced by Marrow Stromal Cell Therapy after Traumatic Brain Injury |
Q33718998 | Early Protective Effect of Bone Marrow Mononuclear Cells Against Ischemic White Matter Damage Through Augmentation of Cerebral Blood Flow |
Q34559129 | Efficacy of single and multiple injections of human umbilical tissue-derived cells following experimental stroke in rats |
Q36372136 | Evolving paradigms for repair of tissues by adult stem/progenitor cells (MSCs). |
Q33908964 | Human neural stem cell grafts modify microglial response and enhance axonal sprouting in neonatal hypoxic-ischemic brain injury. |
Q55025816 | Hyperlipidemia in Stroke Pathobiology and Therapy: Insights and Perspectives. |
Q34392864 | Impact of age on the efficacy of bone marrow mononuclear cell transplantation in experimental stroke |
Q27022196 | In vivo imaging of endogenous neural stem cells in the adult brain |
Q33530141 | Increasing tPA activity in astrocytes induced by multipotent mesenchymal stromal cells facilitate neurite outgrowth after stroke in the mouse |
Q38246263 | Influence of the extracellular matrix on endogenous and transplanted stem cells after brain damage |
Q36755730 | Infusion of autologous adipose tissue derived neuronal differentiated mesenchymal stem cells and hematopoietic stem cells in post-traumatic paraplegia offers a viable therapeutic approach |
Q45436443 | Intravenous administration of human umbilical tissue-derived cells improves neurological function in aged rats after embolic stroke |
Q26853147 | Is sleep essential for neural plasticity in humans, and how does it affect motor and cognitive recovery? |
Q39114617 | Lessons from a mouse model characterizing features of vascular cognitive impairment with white matter changes |
Q36222296 | Mesenchymal Stromal Cells Promote Axonal Outgrowth Alone and Synergistically with Astrocytes via tPA |
Q48389920 | Minocycline treatment and bone marrow mononuclear cell transplantation after endothelin-1 induced striatal ischemia. |
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Q42775909 | Neuroprotective and neurorestorative effects of thymosin β4 treatment following experimental traumatic brain injury |
Q34468811 | Neurorehabilitation: motor recovery after stroke as an example |
Q33813333 | Neurorestorative therapy for stroke |
Q37814534 | Neurorestorative treatments for traumatic brain injury |
Q43073016 | Noninvasive imaging of endogenous neural stem cell mobilization in vivo using positron emission tomography. |
Q35727350 | Osteopontin mediates survival, proliferation and migration of neural stem cells through the chemokine receptor CXCR4. |
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Q64912644 | Recovery of fine motor performance after ischemic damage to motor cortex is facilitated by cell therapy in the rhesus monkey. |
Q41907383 | Sleep disturbance impairs stroke recovery in the rat. |
Q33705210 | Stem cell mediation of functional recovery after stroke in the rat |
Q38019968 | Stem cells in stroke treatment: the promise and the challenges. |
Q45916414 | Subchronic alpha-linolenic acid treatment enhances brain plasticity and exerts an antidepressant effect: a versatile potential therapy for stroke. |
Q39649041 | The Neural Cell Adhesion Molecule-Derived (NCAM)-Peptide FG Loop (FGL) Mobilizes Endogenous Neural Stem Cells and Promotes Endogenous Regenerative Capacity after Stroke |
Q37025630 | The rise of cell therapy trials for stroke: review of published and registered studies |
Q50663389 | The synthetic NCAM mimetic peptide FGL mobilizes neural stem cells in vitro and in vivo. |
Q51163493 | The use of mesenchymal stem cells in bladder augmentation. |
Q50232281 | Thymosin β4 for the treatment of acute stroke in aged rats |
Q39611150 | Transcranial Direct Current Stimulation Modulates Neurogenesis and Microglia Activation in the Mouse Brain |
Q48175406 | Transplanted late outgrowth endothelial progenitor cells as cell therapy product for stroke |
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