The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics is a well-known phenomenon in clinical practice. However, the physiological mechanisms underlying anesthetic-induced excitation are still unclear. Here we provide evidence from in vitro experiments performed on rat brain slices that the general anesthetic isoflurane at a concentration of about 0.1 mM can enhance neuronal network excitability in the hippocampus, while simultaneously reducing it in the neocortex. In contrast, isoflurane tissue concentrations above 0.3 mM expectedly caused a pronounced reduction in both brain regions. Neuronal network excitability was assessed by combining simultaneous multisite stimulation via a multielectrode a...
Effects of anesthetics on brain functional networks are not fully understood. In this work, we inves...
General anaesthetics cause sedation, amnesia and hypnosis. Although these clinically desired actions...
Animal functional magnetic resonance imaging (fMRI) has provided key insights into the physiological...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
BACKGROUND: Previous studies showed that synaptic transmission is affected by general anesthetics, b...
General anesthetics are commonly used in animal models to study how sensory signals are represented ...
Volatile anesthetics are widely used for surgery, but neuronal mechanisms of anesthesia remain unide...
Volatile anesthetics are widely used for surgery, but neuronal mechanisms of anesthesia remain unide...
Volatile anesthetics play an essential role in the practice of modern medicine due to their widespre...
Volatile anesthetics induce hyperactivity during induction while producing anesthesia at higher con-...
Effects of anesthetics on brain functional networks are not fully understood. In this work, we inves...
General anaesthetics cause sedation, amnesia and hypnosis. Although these clinically desired actions...
Animal functional magnetic resonance imaging (fMRI) has provided key insights into the physiological...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
The anesthetic excitement phase occurring during induction of anesthesia with volatile anesthetics i...
BACKGROUND: Previous studies showed that synaptic transmission is affected by general anesthetics, b...
General anesthetics are commonly used in animal models to study how sensory signals are represented ...
Volatile anesthetics are widely used for surgery, but neuronal mechanisms of anesthesia remain unide...
Volatile anesthetics are widely used for surgery, but neuronal mechanisms of anesthesia remain unide...
Volatile anesthetics play an essential role in the practice of modern medicine due to their widespre...
Volatile anesthetics induce hyperactivity during induction while producing anesthesia at higher con-...
Effects of anesthetics on brain functional networks are not fully understood. In this work, we inves...
General anaesthetics cause sedation, amnesia and hypnosis. Although these clinically desired actions...
Animal functional magnetic resonance imaging (fMRI) has provided key insights into the physiological...