Artículos de revistas sobre el tema "Stroke, mice, recovery, biomarker"
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Cecchini, Gloria, Alessandro Scaglione, Anna Letizia Allegra Mascaro, Curzio Checcucci, Emilia Conti, Ihusan Adam, Duccio Fanelli, Roberto Livi, Francesco Saverio Pavone y Thomas Kreuz. "Cortical propagation tracks functional recovery after stroke". PLOS Computational Biology 17, n.º 5 (17 de mayo de 2021): e1008963. http://dx.doi.org/10.1371/journal.pcbi.1008963.
Texto completoZaidi, Syed Kashif, Md Nasrul Hoda, Shams Tabrez y Mohammad Imran Khan. "Pharmacological Inhibition of Class III Alcohol Dehydrogenase 5: Turning Remote Ischemic Conditioning Effective in a Diabetic Stroke Model". Antioxidants 11, n.º 10 (18 de octubre de 2022): 2051. http://dx.doi.org/10.3390/antiox11102051.
Texto completoZhao, Haiping, Guangwen Li, Sijia Zhang, Fangfang Li, Rongliang Wang, Zhen Tao, Qingfeng Ma et al. "Inhibition of histone deacetylase 3 by MiR-494 alleviates neuronal loss and improves neurological recovery in experimental stroke". Journal of Cerebral Blood Flow & Metabolism 39, n.º 12 (11 de septiembre de 2019): 2392–405. http://dx.doi.org/10.1177/0271678x19875201.
Texto completoLeon, Lisa R., David A. DuBose y Clifford W. Mason. "Heat stress induces a biphasic thermoregulatory response in mice". American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 288, n.º 1 (enero de 2005): R197—R204. http://dx.doi.org/10.1152/ajpregu.00046.2004.
Texto completoGarcia, Christian K., Gerard P. Robinson, Bryce J. Gambino, Michael T. Rua, Orlando Laitano y Thomas L. Clanton. "The impact of castration on physiological responses to exertional heat stroke in mice". PLOS ONE 17, n.º 10 (13 de octubre de 2022): e0275715. http://dx.doi.org/10.1371/journal.pone.0275715.
Texto completoRodriguez-Grande, Beatriz, Matimba Swana, Loan Nguyen, Pavlos Englezou, Samaneh Maysami, Stuart M. Allan, Nancy J. Rothwell, Cecilia Garlanda, Adam Denes y Emmanuel Pinteaux. "The Acute-Phase Protein PTX3 is an Essential Mediator of Glial Scar Formation and Resolution of Brain Edema after Ischemic Injury". Journal of Cerebral Blood Flow & Metabolism 34, n.º 3 (18 de diciembre de 2013): 480–88. http://dx.doi.org/10.1038/jcbfm.2013.224.
Texto completoGrosman, Benyamin, Osman S. Shaik, Bryan G. Helwig, Lisa R. Leon y Francis J. Doyle. "A physiological systems approach to modeling and resetting of mouse thermoregulation under heat stress". Journal of Applied Physiology 111, n.º 3 (septiembre de 2011): 938–45. http://dx.doi.org/10.1152/japplphysiol.00519.2010.
Texto completoVaibhav, Kumar, Molly Braun, Mohammad Badruzzaman Khan, Sumbul Fatima, Nancy Saad, Adarsh Shankar, Zenab T. Khan et al. "Remote ischemic post-conditioning promotes hematoma resolution via AMPK-dependent immune regulation". Journal of Experimental Medicine 215, n.º 10 (6 de septiembre de 2018): 2636–54. http://dx.doi.org/10.1084/jem.20171905.
Texto completoLee, Jungsoo, Heegoo Kim, Jinuk Kim, Won Hyuk Chang y Yun-Hee Kim. "Multimodal Imaging Biomarker-Based Model Using Stratification Strategies for Predicting Upper Extremity Motor Recovery in Severe Stroke Patients". Neurorehabilitation and Neural Repair 36, n.º 3 (31 de diciembre de 2021): 217–26. http://dx.doi.org/10.1177/15459683211070278.
Texto completoMalkki, Hemi. "Gut microbiota influence stroke recovery in mice". Nature Reviews Neurology 12, n.º 5 (15 de abril de 2016): 252. http://dx.doi.org/10.1038/nrneurol.2016.52.
Texto completoO’Sullivan, Michael J., Xuqian Li, Dana Galligan y Sarah T. Pendlebury. "Cognitive Recovery After Stroke: Memory". Stroke 54, n.º 1 (enero de 2023): 44–54. http://dx.doi.org/10.1161/strokeaha.122.041497.
Texto completoKemlin, C., E. Moulton, J. C. Lamy y C. Rosso. "Resting motor threshold is a biomarker for motor stroke recovery". Annals of Physical and Rehabilitation Medicine 61 (julio de 2018): e26. http://dx.doi.org/10.1016/j.rehab.2018.05.057.
Texto completoVernooij, Meike W. "Remote Brain Iron Accumulation: A Useful Biomarker for Stroke Recovery?" Radiology 291, n.º 2 (mayo de 2019): 449–50. http://dx.doi.org/10.1148/radiol.2019190336.
Texto completoXu, Xiaoyun, Bethany Bass, William M. McKillop, Janina Mailloux, Tony Liu, Nicole M. Geremia, Todd Hryciw y Arthur Brown. "Sox9 knockout mice have improved recovery following stroke". Experimental Neurology 303 (mayo de 2018): 59–71. http://dx.doi.org/10.1016/j.expneurol.2018.02.001.
Texto completoManwani, Bharti, Fudong Liu, Yan Xu, Rebecca Persky, Jun Li y Louise D. McCullough. "Functional recovery in aging mice after experimental stroke". Brain, Behavior, and Immunity 25, n.º 8 (noviembre de 2011): 1689–700. http://dx.doi.org/10.1016/j.bbi.2011.06.015.
Texto completoAbdullahi, Auwal, Steven Truijen y Wim Saeys. "Neurobiology of Recovery of Motor Function after Stroke: The Central Nervous System Biomarker Effects of Constraint-Induced Movement Therapy". Neural Plasticity 2020 (15 de junio de 2020): 1–12. http://dx.doi.org/10.1155/2020/9484298.
Texto completoSimpkins, Alexis N., Miroslaw Janowski, Helieh S. Oz, Jill Roberts, Gregory Bix, Sylvain Doré y Ann M. Stowe. "Biomarker Application for Precision Medicine in Stroke". Translational Stroke Research 11, n.º 4 (18 de diciembre de 2019): 615–27. http://dx.doi.org/10.1007/s12975-019-00762-3.
Texto completoBoyd, Lara A., Kathryn S. Hayward, Nick S. Ward, Cathy M. Stinear, Charlotte Rosso, Rebecca J. Fisher, Alexandre R. Carter et al. "Biomarkers of stroke recovery: Consensus-based core recommendations from the Stroke Recovery and Rehabilitation Roundtable". International Journal of Stroke 12, n.º 5 (julio de 2017): 480–93. http://dx.doi.org/10.1177/1747493017714176.
Texto completoBoyd, Lara A., Kathryn S. Hayward, Nick S. Ward, Cathy M. Stinear, Charlotte Rosso, Rebecca J. Fisher, Alexandre R. Carter et al. "Biomarkers of Stroke Recovery: Consensus-Based Core Recommendations from the Stroke Recovery and Rehabilitation Roundtable". Neurorehabilitation and Neural Repair 31, n.º 10-11 (octubre de 2017): 864–76. http://dx.doi.org/10.1177/1545968317732680.
Texto completoCassidy, Jessica M., Anirudh Wodeyar, Jennifer Wu, Kiranjot Kaur, Ashley K. Masuda, Ramesh Srinivasan y Steven C. Cramer. "Low-Frequency Oscillations Are a Biomarker of Injury and Recovery After Stroke". Stroke 51, n.º 5 (mayo de 2020): 1442–50. http://dx.doi.org/10.1161/strokeaha.120.028932.
Texto completoLi, Jun, Matt Siegel, Mike Yuan, Zhiyuan Zeng, Laura Finnucan, Rebecca Persky, Patricia D. Hurn y Louise D. McCullough. "Estrogen Enhances Neurogenesis and Behavioral Recovery after Stroke". Journal of Cerebral Blood Flow & Metabolism 31, n.º 2 (13 de octubre de 2010): 413–25. http://dx.doi.org/10.1038/jcbfm.2010.181.
Texto completoKim, Bokkyu y Carolee Winstein. "Can Neurological Biomarkers of Brain Impairment Be Used to Predict Poststroke Motor Recovery? A Systematic Review". Neurorehabilitation and Neural Repair 31, n.º 1 (19 de agosto de 2016): 3–24. http://dx.doi.org/10.1177/1545968316662708.
Texto completoRay, Andreas M., Thiago D. C. Figueiredo, Eduardo López‐Larraz, Niels Birbaumer y Ander Ramos‐Murguialday. "Brain oscillatory activity as a biomarker of motor recovery in chronic stroke". Human Brain Mapping 41, n.º 5 (28 de noviembre de 2019): 1296–308. http://dx.doi.org/10.1002/hbm.24876.
Texto completoDeBoer, Scott R., Robert Hubbard, Mahlet Mersha, Gabriel Pinilla Monsalve, Stefan Winter y Steven R. Zeiler. "Enhanced Spontaneous Motor Recovery After Stroke in Mice Treated With Cerebrolysin". Neurorehabilitation and Neural Repair 35, n.º 6 (6 de mayo de 2021): 525–33. http://dx.doi.org/10.1177/15459683211000734.
Texto completoKurisu, Kota, Zhen Zheng, Jong Youl Kim, Jian Shi, Atsushi Kanoke, Jialing Liu, Christine L. Hsieh y Midori A. Yenari. "Triggering receptor expressed on myeloid cells-2 expression in the brain is required for maximal phagocytic activity and improved neurological outcomes following experimental stroke". Journal of Cerebral Blood Flow & Metabolism 39, n.º 10 (7 de diciembre de 2018): 1906–18. http://dx.doi.org/10.1177/0271678x18817282.
Texto completoOllen-Bittle, Nikita, Austyn D. Roseborough, Wenxuan Wang, Jeng-liang D. Wu y Shawn N. Whitehead. "Mechanisms and Biomarker Potential of Extracellular Vesicles in Stroke". Biology 11, n.º 8 (18 de agosto de 2022): 1231. http://dx.doi.org/10.3390/biology11081231.
Texto completoWang, Ya-chao, Xuan Li, Yuntian Shen, Jingjun Lyu, Huaxin Sheng, Wulf Paschen y Wei Yang. "PERK (Protein Kinase RNA-Like ER Kinase) Branch of the Unfolded Protein Response Confers Neuroprotection in Ischemic Stroke by Suppressing Protein Synthesis". Stroke 51, n.º 5 (mayo de 2020): 1570–77. http://dx.doi.org/10.1161/strokeaha.120.029071.
Texto completoRitzel, Rodney M., Anita R. Patel, Monica Spychala, Rajkumar Verma, Joshua Crapser, Edward C. Koellhoffer, Anna Schrecengost et al. "Multiparity improves outcomes after cerebral ischemia in female mice despite features of increased metabovascular risk". Proceedings of the National Academy of Sciences 114, n.º 28 (23 de junio de 2017): E5673—E5682. http://dx.doi.org/10.1073/pnas.1607002114.
Texto completoSTANESCU, Ioana C., Angelo C. BULBOACA, Gabriela B. DOGARU, Gabriel GUSETU y Dana M. FODOR. "Predictors for early motor improvement in patients with ischemic stroke". Balneo Research Journal 10, Vol.10, No.3 (3 de septiembre de 2019): 236–42. http://dx.doi.org/10.12680/balneo.2019.263.
Texto completoKawano, Teiji, Noriaki Hattori, Yutaka Uno, Megumi Hatakenaka, Hajime Yagura, Hiroaki Fujimoto, Tomomi Yoshioka et al. "Electroencephalographic Phase Synchrony Index as a Biomarker of Poststroke Motor Impairment and Recovery". Neurorehabilitation and Neural Repair 34, n.º 8 (21 de julio de 2020): 711–22. http://dx.doi.org/10.1177/1545968320935820.
Texto completoPintana, Hiranya, Grazyna Lietzau, Ingrid Lovise Augestad, Fausto Chiazza, Thomas Nyström, Cesare Patrone y Vladimer Darsalia. "Obesity-induced type 2 diabetes impairs neurological recovery after stroke in correlation with decreased neurogenesis and persistent atrophy of parvalbumin-positive interneurons". Clinical Science 133, n.º 13 (1 de julio de 2019): 1367–86. http://dx.doi.org/10.1042/cs20190180.
Texto completoKraft, Andrew W., Adam Q. Bauer, Joseph P. Culver y Jin-Moo Lee. "Sensory deprivation after focal ischemia in mice accelerates brain remapping and improves functional recovery through Arc-dependent synaptic plasticity". Science Translational Medicine 10, n.º 426 (31 de enero de 2018): eaag1328. http://dx.doi.org/10.1126/scitranslmed.aag1328.
Texto completoLiauw, Jason, Stanley Hoang, Michael Choi, Cagla Eroglu, Matthew Choi, Guo-hua Sun, Matthew Percy et al. "Thrombospondins 1 and 2 are Necessary for Synaptic Plasticity and Functional Recovery after Stroke". Journal of Cerebral Blood Flow & Metabolism 28, n.º 10 (2 de julio de 2008): 1722–32. http://dx.doi.org/10.1038/jcbfm.2008.65.
Texto completoLie, Maria EK, Emma K. Gowing, Nina B. Johansen, Nils Ole Dalby, Louise Thiesen, Petrine Wellendorph y Andrew N. Clarkson. "GAT3 selective substrate l-isoserine upregulates GAT3 expression and increases functional recovery after a focal ischemic stroke in mice". Journal of Cerebral Blood Flow & Metabolism 39, n.º 1 (21 de noviembre de 2017): 74–88. http://dx.doi.org/10.1177/0271678x17744123.
Texto completoClarkson, Andrew N., Kim Parker, Michael Nilsson, F. Rohan Walker y Emma K. Gowing. "Combined Ampakine and BDNF Treatments Enhance Poststroke Functional Recovery in Aged Mice via AKT-CREB Signaling". Journal of Cerebral Blood Flow & Metabolism 35, n.º 8 (11 de marzo de 2015): 1272–79. http://dx.doi.org/10.1038/jcbfm.2015.33.
Texto completoBorowicz, Wojciech, Marta Szczepańska y Joanna Rosińczuk. "C-Reactive protein as a biomarker affecting neurorehabilitation outcomes in post-stroke patients: state of knowledge and global trends in research". Journal of Education, Health and Sport 13, n.º 4 (16 de febrero de 2023): 92–107. http://dx.doi.org/10.12775/jehs.2023.13.04.010.
Texto completoGandin, Carine, Catherine Widmann, Michel Lazdunski y Catherine Heurteaux. "MLC901 Favors Angiogenesis and Associated Recovery after Ischemic Stroke in Mice". Cerebrovascular Diseases 42, n.º 1-2 (2016): 139–54. http://dx.doi.org/10.1159/000444810.
Texto completoHoulton, Josh, Lisa Y. Y. Zhou, Deanna Barwick, Emma K. Gowing y Andrew N. Clarkson. "Stroke Induces a BDNF-Dependent Improvement in Cognitive Flexibility in Aged Mice". Neural Plasticity 2019 (5 de mayo de 2019): 1–14. http://dx.doi.org/10.1155/2019/1460890.
Texto completoPuig, Josep, Gerard Blasco, Gottfried Schlaug, Cathy M. Stinear, Pepus Daunis-i-Estadella, Carles Biarnes, Jaume Figueras et al. "Diffusion tensor imaging as a prognostic biomarker for motor recovery and rehabilitation after stroke". Neuroradiology 59, n.º 4 (14 de marzo de 2017): 343–51. http://dx.doi.org/10.1007/s00234-017-1816-0.
Texto completoVahdat, Shahabeddin, Arjun Vivek Pendharkar, Terrance Chiang, Sean Harvey, Haruto Uchino, Zhijuan Cao, Anika Kim et al. "Brain-wide neural dynamics of poststroke recovery induced by optogenetic stimulation". Science Advances 7, n.º 33 (agosto de 2021): eabd9465. http://dx.doi.org/10.1126/sciadv.abd9465.
Texto completoWei, Zheng Zachory, Dongdong Chen, Li-Ping Liu, Xiaohuan Gu, Weiwei Zhong, Yong-Bo Zhang, Yongjun Wang, Shan Ping Yu y Ling Wei. "Enhanced Neurogenesis and Collaterogenesis by Sodium Danshensu Treatment After Focal Cerebral Ischemia in Mice". Cell Transplantation 27, n.º 4 (abril de 2018): 622–36. http://dx.doi.org/10.1177/0963689718771889.
Texto completoLi, Yanzheng, Wei Wang, Hang Yang, Weiheng Guo, Jingyu Feng, Dejiu Yang, Li Guo y Guojun Tan. "Negative correlation between early recovery and lipoprotein-associated phospholipase A2 levels after intravenous thrombolysis". Journal of International Medical Research 50, n.º 4 (abril de 2022): 030006052210933. http://dx.doi.org/10.1177/03000605221093303.
Texto completovan Nieuwenhuijzen, Petra S., Kim Parker, Vivian Liao, Josh Houlton, Hye-Lim Kim, Graham A. R. Johnston, Jane R. Hanrahan, Mary Chebib y Andrew N. Clarkson. "Targeting GABAC Receptors Improves Post-Stroke Motor Recovery". Brain Sciences 11, n.º 3 (2 de marzo de 2021): 315. http://dx.doi.org/10.3390/brainsci11030315.
Texto completoSharma, Rishi, Abigail Chischolm, Meet Parikh, Adnan I. Qureshi, Pradeep Sahota y Mahesh M. Thakkar. "Ischemic Stroke Disrupts Sleep Homeostasis in Middle-Aged Mice". Cells 11, n.º 18 (9 de septiembre de 2022): 2818. http://dx.doi.org/10.3390/cells11182818.
Texto completoNygren, Josefine y Tadeusz Wieloch. "Enriched Environment Enhances Recovery of Motor Function after Focal Ischemia in Mice, and Downregulates the Transcription Factor NGFI-A". Journal of Cerebral Blood Flow & Metabolism 25, n.º 12 (25 de mayo de 2005): 1625–33. http://dx.doi.org/10.1038/sj.jcbfm.9600157.
Texto completoKolbinger, Anja, Roxane Isabelle Kestner, Lara Jencio, Tim J. Schäufele, Rajkumar Vutukuri, Waltraud Pfeilschifter y Klaus Scholich. "Behind the Wall—Compartment-Specific Neovascularisation during Post-Stroke Recovery in Mice". Cells 11, n.º 10 (17 de mayo de 2022): 1659. http://dx.doi.org/10.3390/cells11101659.
Texto completoLiu, Yanfang, Yufeng Li, Jiankun Zang, Tianyuan Zhang, Yaojie Li, Zefeng Tan, Dan Ma et al. "CircOGDH Is a Penumbra Biomarker and Therapeutic Target in Acute Ischemic Stroke". Circulation Research 130, n.º 6 (18 de marzo de 2022): 907–24. http://dx.doi.org/10.1161/circresaha.121.319412.
Texto completoHayakawa, Kazuhide, Takafumi Nakano, Keiichi Irie, Sei Higuchi, Masayuki Fujioka, Kensuke Orito, Katsunori Iwasaki et al. "Inhibition of Reactive Astrocytes with Fluorocitrate Retards Neurovascular Remodeling and Recovery after Focal Cerebral Ischemia in Mice". Journal of Cerebral Blood Flow & Metabolism 30, n.º 4 (9 de diciembre de 2009): 871–82. http://dx.doi.org/10.1038/jcbfm.2009.257.
Texto completoTing, Shun-Ming, Xiurong Zhao, Guanghua Sun, Lidiya Obertas, Mercedes Ricote y Jaroslaw Aronowski. "Brain Cleanup as a Potential Target for Poststroke Recovery". Stroke 51, n.º 3 (marzo de 2020): 958–66. http://dx.doi.org/10.1161/strokeaha.119.027315.
Texto completoBice, Annie R., Qingli Xiao, Justin Kong, Ping Yan, Zachary Pollack Rosenthal, Andrew W. Kraft, Karen P. Smith et al. "Homotopic contralesional excitation suppresses spontaneous circuit repair and global network reconnections following ischemic stroke". eLife 11 (20 de junio de 2022). http://dx.doi.org/10.7554/elife.68852.
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