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2016, Methods in molecular biology, ISBN 9781493936625, Volume 1437
Web Resource
2016, Methods in molecular biology, ISBN 9781493936625, Volume 1437
Web Resource
Nature, ISSN 0028-0836, 04/2009, Volume 458, Issue 7238, pp. 597 - 602
Journal Article
2017, Methods in signal transduction series, ISBN 9781498738620
Web Resource
1993, Progress in cell research, ISBN 0444898719, Volume 3, xxii, 333
Book
2013, 1st ed., ISBN 9780124159013, xiv, 290 p., [11] p. of plates
Gap junctions between glial cells or neurons are ubiquitously expressed in the mammalian brain and play a role in brain development including cell... 
Brain | Gap junctions (Cell biology) | Connexins | Physiology | Other branches of medicine | Gap Junctions
Book
2006, Advances in cardiology, ISBN 3805580770, Volume 42., viii, 298
In recent years, gap junction research in the cardiovascular system has considerably improved the understanding of cardiac function and the vasculature in... 
Arrhythmia | Heart conduction system | Gap junctions (Cell biology)
Book
Journal of the American Chemical Society, ISSN 0002-7863, 2013, Volume 135, Issue 15, pp. 5529 - 5532
We demonstrate tandem and triple-junction polymer solar cells with power conversion efficiencies of 8.9% and 9.6% that use a newly designed, high molecular... 
PERFORMANCE | DEVICE | CONJUGATED POLYMER | BAND-GAP POLYMER | BLENDS | CHEMISTRY, MULTIDISCIPLINARY | MORPHOLOGY | PHOTOCURRENT | Measurement | Thermal properties | Solar cells | Molecular weights | Solar batteries | Chemical properties | Research | Polymers
Journal Article
Solar Energy, ISSN 0038-092X, 06/2016, Volume 130, pp. 139 - 147
The values of the theoretical maximum light to electric power conversion efficiency of single junction solar cells, also known as detailed balance or... 
Maximum photovoltaic conversion efficiency | Standard conditions | Detailed-balance limit | ASTM G173-03 | AM 1.5G | Solar cells | Solar batteries | Energy efficiency | Band gap | Photovoltaic cells | Electric power | Spectrum analysis | Solar energy
Journal Article
Science, ISSN 0036-8075, 5/2006, Volume 312, Issue 5775, pp. 924 - 927
Neuronal excitotoxicity during stroke is caused by activation of unidentified large-conductance channels, leading to swelling and calcium dysregulation. We... 
Molecules | Brain | Receptors | Dyes | Ischemia | Neurons | Gap junctions | Fluorescence | Reports | Connexins | Strokes | DEPOLARIZATION | INHIBITION | MULTIDISCIPLINARY SCIENCES | MECHANISMS | DEATH | CHANNELS | ATP RELEASE | CONNEXIN HEMICHANNELS | ASTROCYTES | BRAIN | COMMUNICATION | Neurons - pathology