Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with existing neuroimaging methods having limited capacity when it comes to imaging large tissue volumes at high speeds. Optoacoustic imaging has been shown to be capable of real-time three-dimensional imaging of multiple cerebral hemodynamic parameters in rodents. However, optoacoustic imaging of calcium activity deep within the mammalian brain is hampered by strong blood absorption in the visible light spectrum as well as a lack of activity labels excitable in the near-infrared window. We have developed and validated an isolated whole mouse brain preparation labeled with genetically encoded calcium indicator GCaMP6f, which can closely resemble in ...
Non-invasive observation of spatiotemporal activity of large neural populations distributed over ent...
Genetically encoded calcium indicators are powerful brain activity-sensors. Here, we demonstrate non...
The ability to non-invasively visualize endogenous chromophores and exogenous probes and sensors acr...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
Efforts to scale neuroimaging towards the direct visualization of mammalian brain-wide neuronal acti...
Efforts to scale neuroimaging towards the direct visualization of mammalian brain-wide neuronal acti...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
The inability to directly visualize large-scale neural dynamics across the entire mammalian brain in...
Efforts to scale neuroimaging towards the direct visualization of mammalian brain-wide neuronal acti...
Non-invasive observation of spatiotemporal activity of large neural populations distributed over ent...
Genetically encoded calcium indicators are powerful brain activity-sensors. Here, we demonstrate non...
The ability to non-invasively visualize endogenous chromophores and exogenous probes and sensors acr...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
Efforts to scale neuroimaging towards the direct visualization of mammalian brain-wide neuronal acti...
Efforts to scale neuroimaging towards the direct visualization of mammalian brain-wide neuronal acti...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
The inability to directly visualize large-scale neural dynamics across the entire mammalian brain in...
Efforts to scale neuroimaging towards the direct visualization of mammalian brain-wide neuronal acti...
Non-invasive observation of spatiotemporal activity of large neural populations distributed over ent...
Genetically encoded calcium indicators are powerful brain activity-sensors. Here, we demonstrate non...
The ability to non-invasively visualize endogenous chromophores and exogenous probes and sensors acr...