Artículos de revistas sobre el tema "GCaMP6f"
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Chen, Yen Lin, Thomas M. Baker, Frank Lee, Bo Shui, Jane C. Lee, Petr Tvrdik, Michael I. Kotlikoff y Swapnil K. Sonkusare. "Calcium Signal Profiles in Vascular Endothelium from Cdh5-GCaMP8 and Cx40-GCaMP2 Mice". Journal of Vascular Research 58, n.º 3 (2021): 159–71. http://dx.doi.org/10.1159/000514210.
Texto completoSrienc, Anja I., Pei-Pei Chiang, Abby J. Schmitt y Eric A. Newman. "Cortical spreading depolarizations induced by surgical field blood in a mouse model of neurosurgery". Journal of Neurosurgery 132, n.º 6 (junio de 2020): 1820–28. http://dx.doi.org/10.3171/2018.12.jns181130.
Texto completoYe, Liang, Mateen A. Haroon, Angelica Salinas y Martin Paukert. "Comparison of GCaMP3 and GCaMP6f for studying astrocyte Ca2+ dynamics in the awake mouse brain". PLOS ONE 12, n.º 7 (24 de julio de 2017): e0181113. http://dx.doi.org/10.1371/journal.pone.0181113.
Texto completoAsteriti, Sabrina, Che-Hsiung Liu y Roger C. Hardie. "Calcium signalling in Drosophila photoreceptors measured with GCaMP6f". Cell Calcium 65 (julio de 2017): 40–51. http://dx.doi.org/10.1016/j.ceca.2017.02.006.
Texto completoConti, Emilia, Anna Allegra Mascaro y Francesco Pavone. "Large Scale Double-Path Illumination System with Split Field of View for the All-Optical Study of Inter-and Intra-Hemispheric Functional Connectivity on Mice". Methods and Protocols 2, n.º 1 (29 de enero de 2019): 11. http://dx.doi.org/10.3390/mps2010011.
Texto completoPark, Kicheon, Anuki C. Liyanage, Alan P. Koretsky, Yingtian Pan y Congwu Du. "Optical imaging of stimulation-evoked cortical activity using GCaMP6f and jRGECO1a". Quantitative Imaging in Medicine and Surgery 11, n.º 3 (marzo de 2020): 998–1009. http://dx.doi.org/10.21037/qims-20-921.
Texto completoCarcaud, Julie, Marianne Otte, Bernd Grünewald, Albrecht Haase, Jean-Christophe Sandoz y Martin Beye. "Multisite imaging of neural activity using a genetically encoded calcium sensor in the honey bee". PLOS Biology 21, n.º 1 (31 de enero de 2023): e3001984. http://dx.doi.org/10.1371/journal.pbio.3001984.
Texto completoSathyanesan, Aaron, Panagiotis Kratimenos y Vittorio Gallo. "Disruption of neonatal Purkinje cell function underlies injury-related learning deficits". Proceedings of the National Academy of Sciences 118, n.º 11 (9 de marzo de 2021): e2017876118. http://dx.doi.org/10.1073/pnas.2017876118.
Texto completoChou, Allison Tzu-Han, Henry Hollis, Polina Fenik, Keelee Pullum, Michelle Slinger, Zachary Zamore, Yan Zhu, Ron Anafi y Sigrid Veasey. "0288 Role of cofilin and calcium signaling in sleep-loss neural injury". Sleep 45, Supplement_1 (25 de mayo de 2022): A130. http://dx.doi.org/10.1093/sleep/zsac079.286.
Texto completoCramer, Samuel, Laurentiu Popa, Samuel Haley, Sanjay Dhawan, Russell Carter, Jianfang Ning, Justin Aronson, Suhasa Kodandaramaiah, Timothy Ebner y Clark Chen. "PATH-02. CHARACTERIZATION OF FUNCTIONAL NETWORK EFFECTS IN THE CEREBRAL CORTEX DURING BRAIN TUMORIGENESIS IN THE MOUSE". Neuro-Oncology 22, Supplement_2 (noviembre de 2020): ii164. http://dx.doi.org/10.1093/neuonc/noaa215.684.
Texto completoCramer, Samuel, Laurentiu Popa, Samuel Haley, Sanjay Dhawan, Russell Carter, Jianfang Ning, Justin Aronson, Suhasa Kodandaramaiah, Timothy Ebner y Clark Chen. "TMOD-10. EFFECT OF BRAIN TUMORIGENESIS ON CEREBRAL CORTICAL FUNCTIONAL CONNECTIVITY IN THE MOUSE". Neuro-Oncology 22, Supplement_2 (noviembre de 2020): ii229—ii230. http://dx.doi.org/10.1093/neuonc/noaa215.961.
Texto completoAryal, Surya P., Mengfan Xia, Ebubechi Adindu, Caroline Davis, Pavel I. Ortinski y Christopher I. Richards. "ER-GCaMP6f: An Endoplasmic Reticulum-Targeted Genetic Probe to Measure Calcium Activity in Astrocytic Processes". Analytical Chemistry 94, n.º 4 (21 de enero de 2022): 2099–108. http://dx.doi.org/10.1021/acs.analchem.1c04321.
Texto completoGarg, Anupam K., Peichao Li, Mohammad S. Rashid y Edward M. Callaway. "Color and orientation are jointly coded and spatially organized in primate primary visual cortex". Science 364, n.º 6447 (27 de junio de 2019): 1275–79. http://dx.doi.org/10.1126/science.aaw5868.
Texto completoShigetomi, Eiji, Sebastian Kracun y Baljit S. Khakh. "Monitoring astrocyte calcium microdomains with improved membrane targeted GCaMP reporters". Neuron Glia Biology 6, n.º 3 (agosto de 2010): 183–91. http://dx.doi.org/10.1017/s1740925x10000219.
Texto completoGu, Xiaochun, Wei Chen, Jiang You, Alan P. Koretsky, N. D. Volkow, Yingtian Pan y Congwu Du. "Long-term optical imaging of neurovascular coupling in mouse cortex using GCaMP6f and intrinsic hemodynamic signals". NeuroImage 165 (enero de 2018): 251–64. http://dx.doi.org/10.1016/j.neuroimage.2017.09.055.
Texto completoIndersmitten, Tim, Tamara Berdyyeva, Leah Aluisio, Timothy Lovenberg, Pascal Bonaventure y Ryan M. Wyatt. "Utilizing Miniature Fluorescence Microscopy to Image Hippocampal Place Cell Ensemble Function in Thy1.GCaMP6f Transgenic Mice". Current Protocols in Pharmacology 82, n.º 1 (20 de agosto de 2018): e42. http://dx.doi.org/10.1002/cpph.42.
Texto completoRicci Signorini, Maria Elena, Monika Szepes, Anna Melchert, Mine Bakar, Sylvia Merkert, Alexandra Haase, Gudrun Göhring, Ulrich Martin y Ina Gruh. "Generation of human induced pluripotent stem cell lines encoding for genetically encoded calcium indicators RCaMP1h and GCaMP6f". Stem Cell Research 60 (abril de 2022): 102697. http://dx.doi.org/10.1016/j.scr.2022.102697.
Texto completoPark, Dong-Wook, Jared P. Ness, Sarah K. Brodnick, Corinne Esquibel, Joseph Novello, Farid Atry, Dong-Hyun Baek et al. "Electrical Neural Stimulation and Simultaneous in Vivo Monitoring with Transparent Graphene Electrode Arrays Implanted in GCaMP6f Mice". ACS Nano 12, n.º 1 (8 de enero de 2018): 148–57. http://dx.doi.org/10.1021/acsnano.7b04321.
Texto completoRosenthal, Zachary P., Ryan V. Raut, Ryan M. Bowen, Abraham Z. Snyder, Joseph P. Culver, Marcus E. Raichle y Jin-Moo Lee. "Peripheral sensory stimulation elicits global slow waves by recruiting somatosensory cortex bilaterally". Proceedings of the National Academy of Sciences 118, n.º 8 (17 de febrero de 2021): e2021252118. http://dx.doi.org/10.1073/pnas.2021252118.
Texto completoWong, Wen Mai, Jie Cao, Xingjian Zhang, Wayne I. Doyle, Luis L. Mercado, Laurent Gautron y Julian P. Meeks. "Physiology-forward identification of bile acid–sensitive vomeronasal receptors". Science Advances 6, n.º 22 (mayo de 2020): eaaz6868. http://dx.doi.org/10.1126/sciadv.aaz6868.
Texto completoUkhanov, Kirill, Yuriy V. Bobkov, Jeffrey R. Martens y Barry W. Ache. "Initial Characterization of a Subpopulation of Inherent Oscillatory Mammalian Olfactory Receptor Neurons". Chemical Senses 44, n.º 8 (17 de julio de 2019): 583–92. http://dx.doi.org/10.1093/chemse/bjz052.
Texto completoDegtyaruk, Oleksiy, Benedict Mc Larney, Xosé Deán-Ben, Shy Shoham y Daniel Razansky. "Optoacoustic Calcium Imaging of Deep Brain Activity in an Intracardially Perfused Mouse Brain Model". Photonics 6, n.º 2 (12 de junio de 2019): 67. http://dx.doi.org/10.3390/photonics6020067.
Texto completoÉltes, Tímea, Miklos Szoboszlay, Katalin Kerti‐Szigeti y Zoltan Nusser. "Improved spike inference accuracy by estimating the peak amplitude of unitary [Ca 2+ ] transients in weakly GCaMP6f‐expressing hippocampal pyramidal cells". Journal of Physiology 597, n.º 11 (6 de mayo de 2019): 2925–47. http://dx.doi.org/10.1113/jp277681.
Texto completoJeon, Bo-Hui, Yeong-Min Yoo, Eui-Man Jung y Eui-Bae Jeung. "Dexamethasone Treatment Increases the Intracellular Calcium Level Through TRPV6 in A549 Cells". International Journal of Molecular Sciences 21, n.º 3 (5 de febrero de 2020): 1050. http://dx.doi.org/10.3390/ijms21031050.
Texto completoCelotto, Marco, Chiara De Luca, Paolo Muratore, Francesco Resta, Anna Letizia Allegra Mascaro, Francesco Saverio Pavone, Giulia De Bonis y Pier Stanislao Paolucci. "Analysis and Model of Cortical Slow Waves Acquired with Optical Techniques". Methods and Protocols 3, n.º 1 (31 de enero de 2020): 14. http://dx.doi.org/10.3390/mps3010014.
Texto completoBarykina, Natalia V., Vladimir P. Sotskov, Anna M. Gruzdeva, You Kure Wu, Ruben Portugues, Oksana M. Subach, Elizaveta S. Chefanova et al. "FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity". International Journal of Molecular Sciences 21, n.º 8 (24 de abril de 2020): 3012. http://dx.doi.org/10.3390/ijms21083012.
Texto completoWeitz, Andrew C., Matthew R. Behrend, Nan Sook Lee, Ronald L. Klein, Vince A. Chiodo, William W. Hauswirth, Mark S. Humayun, James D. Weiland y Robert H. Chow. "Imaging the response of the retina to electrical stimulation with genetically encoded calcium indicators". Journal of Neurophysiology 109, n.º 7 (1 de abril de 2013): 1979–88. http://dx.doi.org/10.1152/jn.00852.2012.
Texto completoBancroft, Eric, Rahul Srinivasan y Lee A. Shapiro. "Macrophage Migration Inhibitory Factor Alters Functional Properties of CA1 Hippocampal Neurons in Mouse Brain Slices". International Journal of Molecular Sciences 21, n.º 1 (31 de diciembre de 2019): 276. http://dx.doi.org/10.3390/ijms21010276.
Texto completoHenderson, Mark J., Heather A. Baldwin, Christopher A. Werley, Stefano Boccardo, Leslie R. Whitaker, Xiaokang Yan, Graham T. Holt et al. "A Low Affinity GCaMP3 Variant (GCaMPer) for Imaging the Endoplasmic Reticulum Calcium Store". PLOS ONE 10, n.º 10 (9 de octubre de 2015): e0139273. http://dx.doi.org/10.1371/journal.pone.0139273.
Texto completoLuo, Jin, Lvli Chen, Feifei Huang, Ping Gao, Heping Zhao, Yingdian Wang y Shengcheng Han. "Intraorganellar calcium imaging in Arabidopsis seedling roots using the GCaMP variants GCaMP6m and R-CEPIA1er". Journal of Plant Physiology 246-247 (marzo de 2020): 153127. http://dx.doi.org/10.1016/j.jplph.2020.153127.
Texto completoHuerta, Tomas S., Bilal B. Haider, Richard Adamovich-Zeitlin, Sangeeta S. Chavan, Kevin J. Tracey y Eric H. Chang. "Vagus nerve sensory neurons have distinct neural responses to inflammatory mediators". Journal of Immunology 208, n.º 1_Supplement (1 de mayo de 2022): 52.14. http://dx.doi.org/10.4049/jimmunol.208.supp.52.14.
Texto completoKrogman, William, J. Alan Sparks y Elison B. Blancaflor. "Cell Type-Specific Imaging of Calcium Signaling in Arabidopsis thaliana Seedling Roots Using GCaMP3". International Journal of Molecular Sciences 21, n.º 17 (2 de septiembre de 2020): 6385. http://dx.doi.org/10.3390/ijms21176385.
Texto completoChen, Yingxiao, Xianqiang Song, Sheng Ye, Lin Miao, Yun Zhu, Rong-Guang Zhang y Guangju Ji. "Structural insight into enhanced calcium indicator GCaMP3 and GCaMPJ to promote further improvement". Protein & Cell 4, n.º 4 (abril de 2013): 299–309. http://dx.doi.org/10.1007/s13238-013-2103-4.
Texto completoHaase, Alexandra, Tim Kohrn, Veronika Fricke, Maria Elena Ricci Signorini, Merlin Witte, Gudrun Göhring, Ina Gruh y Ulrich Martin. "Establishment of MHHi001-A-5, a GCaMP6f and RedStar dual reporter human iPSC line for in vitro and in vivo characterization and in situ tracing of iPSC derivatives". Stem Cell Research 52 (abril de 2021): 102206. http://dx.doi.org/10.1016/j.scr.2021.102206.
Texto completoLandsness, E. C., L. M. Brier, R. X. Hua, K. Chen, Z. P. Rosenthal, J. P. Culver y J. Lee. "0126 Local Slow Wave Sleep and Post-Stroke Brain Repair". Sleep 43, Supplement_1 (abril de 2020): A50. http://dx.doi.org/10.1093/sleep/zsaa056.124.
Texto completoZamore, Zachary, Allison Tzu-Han Chou, Naomi Schifman, Polina Fenik, Keelee Pullum, Michelle Slinger y Sigrid Veasey. "0300 Early Life Sleep Fragmentation Impairs Hippocampal-Dependent Learning and Sleep-Dependency in Hippocampal Calcium Transients". Sleep 45, Supplement_1 (25 de mayo de 2022): A135. http://dx.doi.org/10.1093/sleep/zsac079.298.
Texto completoKrishnan, Vijai, Lauren C. Wade-Kleyn, Ron R. Israeli y Galit Pelled. "Peripheral Nerve Injury Induces Changes in the Activity of Inhibitory Interneurons as Visualized in Transgenic GAD1-GCaMP6s Rats". Biosensors 12, n.º 6 (1 de junio de 2022): 383. http://dx.doi.org/10.3390/bios12060383.
Texto completoZaelzer, Cristian, Claire Gizowski, Christopher K. Salmon, Keith K. Murai y Charles W. Bourque. "Detection of activity-dependent vasopressin release from neuronal dendrites and axon terminals using sniffer cells". Journal of Neurophysiology 120, n.º 3 (1 de septiembre de 2018): 1386–96. http://dx.doi.org/10.1152/jn.00467.2017.
Texto completoChen, Zhiyong, Chi Zhang, Xiaodan Song, Xiang Cui, Jing Liu, Neil C. Ford, Shaoqiu He et al. "BzATP Activates Satellite Glial Cells and Increases the Excitability of Dorsal Root Ganglia Neurons In Vivo". Cells 11, n.º 15 (23 de julio de 2022): 2280. http://dx.doi.org/10.3390/cells11152280.
Texto completoKravets, Vira, JaeAnn M. Dwulet, Wolfgang E. Schleicher, David J. Hodson, Anna M. Davis, Laura Pyle, Robert A. Piscopio, Maura Sticco-Ivins y Richard K. P. Benninger. "Functional architecture of pancreatic islets identifies a population of first responder cells that drive the first-phase calcium response". PLOS Biology 20, n.º 9 (13 de septiembre de 2022): e3001761. http://dx.doi.org/10.1371/journal.pbio.3001761.
Texto completoIvashkina, Olga I., Anna M. Gruzdeva, Marina A. Roshchina, Ksenia A. Toropova y Konstantin V. Anokhin. "Imaging of C-fos Activity in Neurons of the Mouse Parietal Association Cortex during Acquisition and Retrieval of Associative Fear Memory". International Journal of Molecular Sciences 22, n.º 15 (31 de julio de 2021): 8244. http://dx.doi.org/10.3390/ijms22158244.
Texto completoPushchina, Evgeniya V., Ilya A. Kapustyanov, Ekaterina V. Shamshurina y Anatoly A. Varaksin. "A Confocal Microscopic Study of Gene Transfer into the Mesencephalic Tegmentum of Juvenile Chum Salmon, Oncorhynchus keta, Using Mouse Adeno-Associated Viral Vectors". International Journal of Molecular Sciences 22, n.º 11 (26 de mayo de 2021): 5661. http://dx.doi.org/10.3390/ijms22115661.
Texto completoOláh, Attila, Mihály Ruppert, Tamás István Orbán, Ágota Apáti, Balázs Sarkadi, Béla Merkely y Tamás Radovits. "Hemodynamic characterization of a transgenic rat strain stably expressing the calcium sensor protein GCaMP2". American Journal of Physiology-Heart and Circulatory Physiology 316, n.º 5 (1 de mayo de 2019): H1224—H1228. http://dx.doi.org/10.1152/ajpheart.00074.2019.
Texto completoDing, JingJin, Andrew F. Luo, LiYan Hu, DaCheng Wang y Feng Shao. "Structural basis of the ultrasensitive calcium indicator GCaMP6". Science China Life Sciences 57, n.º 3 (4 de enero de 2014): 269–74. http://dx.doi.org/10.1007/s11427-013-4599-5.
Texto completoChen, Jiakun, Li Xia, Michael R. Bruchas y Lilianna Solnica-Krezel. "Imaging early embryonic calcium activity with GCaMP6s transgenic zebrafish". Developmental Biology 430, n.º 2 (octubre de 2017): 385–96. http://dx.doi.org/10.1016/j.ydbio.2017.03.010.
Texto completoLiang, Zhifeng, Yuncong Ma, Glenn D. R. Watson y Nanyin Zhang. "Simultaneous GCaMP6-based fiber photometry and fMRI in rats". Journal of Neuroscience Methods 289 (septiembre de 2017): 31–38. http://dx.doi.org/10.1016/j.jneumeth.2017.07.002.
Texto completoHartung, J. y M. Gold. "(210) Considerations when Using GCaMP6 in Trigeminal Nociceptive Afferents". Journal of Pain 20, n.º 4 (abril de 2019): S27—S28. http://dx.doi.org/10.1016/j.jpain.2019.01.131.
Texto completoSteinmetz, Nicholas A., Christina Buetfering, Jerome Lecoq, Christian R. Lee, Andrew J. Peters, Elina A. K. Jacobs, Philip Coen et al. "Aberrant Cortical Activity in Multiple GCaMP6-Expressing Transgenic Mouse Lines". eneuro 4, n.º 5 (septiembre de 2017): ENEURO.0207–17.2017. http://dx.doi.org/10.1523/eneuro.0207-17.2017.
Texto completoDana, Hod, Tsai-Wen Chen, Amy Hu, Brenda C. Shields, Caiying Guo, Loren L. Looger, Douglas S. Kim y Karel Svoboda. "Thy1-GCaMP6 Transgenic Mice for Neuronal Population Imaging In Vivo". PLoS ONE 9, n.º 9 (24 de septiembre de 2014): e108697. http://dx.doi.org/10.1371/journal.pone.0108697.
Texto completoFletcher, Max L., Arjun V. Masurkar, Junling Xing, Fumiaki Imamura, Wenhui Xiong, Shin Nagayama, Hiroki Mutoh, Charles A. Greer, Thomas Knöpfel y Wei R. Chen. "Optical Imaging of Postsynaptic Odor Representation in the Glomerular Layer of the Mouse Olfactory Bulb". Journal of Neurophysiology 102, n.º 2 (agosto de 2009): 817–30. http://dx.doi.org/10.1152/jn.00020.2009.
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