Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory activity, characterised by states of high membrane potential and intensive spiking activity, the Up-states; followed by hyperpolarisation and quiescence, the Down-states. This activity has been previously described in vitro and in vivo in the cortex and the striatum, across several species. Here, we look into it, during anaesthesia, in the mouse brain. Using whole-cell patch-clamp recordings of cortical cells, it was possible to compare different signal processing methods used to extract the Up-and- Down states in extracellular recordings of the cortex. Our results show that the method based on the Multi-Unit Activity (> 200Hz) have bette...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
Summary: The thalamus plays a central role in sleep rhythms in the mammalian brain and, yet, surpris...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Slow wave oscillation is a synchronous oscillatory mechanism that is a characteristic wave type of t...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
SummaryThe cortical local field potential (LFP) is a common measure of population activity, but its ...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
Summary: The thalamus plays a central role in sleep rhythms in the mammalian brain and, yet, surpris...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Slow wave oscillation is a synchronous oscillatory mechanism that is a characteristic wave type of t...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
Conventional methods of imaging membrane potential changes have limited spatial resolution, particul...
SummaryThe cortical local field potential (LFP) is a common measure of population activity, but its ...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
During NREM sleep and under certain types of anaesthesia, the mammalian brain exhibits a distinctive...
Summary: The thalamus plays a central role in sleep rhythms in the mammalian brain and, yet, surpris...