Vagal sensory neurons mediate the vago-vagal reflex which, in turn, regulates a wide array of gastrointestinal functions including esophageal motility, gastric accommodation and pancreatic enzyme secretion. These neurons also transmit sensory information from the gut to the central nervous system, which then mediates the sensations of nausea, fullness and satiety. Recent research indicates that vagal afferent neurons process non-uniform properties and a significant degree of plasticity. These properties are important to ensure that vagally regulated gastrointestinal functions respond rapidly and appropriately to various intrinsic and extrinsic factors. Similar plastic changes in the vagus also occur in pathophysiological conditions, such as...
Although the gastrointestinal (GI) tract contains intrinsic neural plexuses that allow a significant...
The communication between the gut and the brain is important for the control of energy homeostasis. ...
Sensory neurons relay gut-derived signals to the brain, yet the molecular and functional organizatio...
Vagal sensory neurons mediate the vago-vagal reflex which, in turn, regulates a wide array of gastro...
The vagal link between the gastrointestinal tract and the central nervous system (CNS) has numerous ...
Given the crucial role of the gastrointestinal tract and associated organs in handling nutrient assi...
Here we discuss the neuroanatomy of extrinsic gastrointestinal (GI) afferent neurones, the relations...
Our ability to detect features of environments in and around us is fundamental. Organisms have devel...
Topical ReviewGastrointestinal (GI) vagal afferents are a key mediatory of food intake. Through a ba...
Vagal and spinal afferents represent the information superhighways that convey sensory information f...
The central nervous system (CNS) and viscera are engaged in continuous bidirectional communication. ...
Functional dyspepsia (FD) is associated with chronic gastrointestinal distress and with anxiety and ...
Functional dyspepsia (FD) is associated with chronic gastrointestinal distress and with anxiety and ...
Functional dyspepsia (FD) is associated with chronic gastrointestinal distress and with anxiety and ...
The vagus nerve is a neurochemical expressway that carries sensory and motor signals between the vis...
Although the gastrointestinal (GI) tract contains intrinsic neural plexuses that allow a significant...
The communication between the gut and the brain is important for the control of energy homeostasis. ...
Sensory neurons relay gut-derived signals to the brain, yet the molecular and functional organizatio...
Vagal sensory neurons mediate the vago-vagal reflex which, in turn, regulates a wide array of gastro...
The vagal link between the gastrointestinal tract and the central nervous system (CNS) has numerous ...
Given the crucial role of the gastrointestinal tract and associated organs in handling nutrient assi...
Here we discuss the neuroanatomy of extrinsic gastrointestinal (GI) afferent neurones, the relations...
Our ability to detect features of environments in and around us is fundamental. Organisms have devel...
Topical ReviewGastrointestinal (GI) vagal afferents are a key mediatory of food intake. Through a ba...
Vagal and spinal afferents represent the information superhighways that convey sensory information f...
The central nervous system (CNS) and viscera are engaged in continuous bidirectional communication. ...
Functional dyspepsia (FD) is associated with chronic gastrointestinal distress and with anxiety and ...
Functional dyspepsia (FD) is associated with chronic gastrointestinal distress and with anxiety and ...
Functional dyspepsia (FD) is associated with chronic gastrointestinal distress and with anxiety and ...
The vagus nerve is a neurochemical expressway that carries sensory and motor signals between the vis...
Although the gastrointestinal (GI) tract contains intrinsic neural plexuses that allow a significant...
The communication between the gut and the brain is important for the control of energy homeostasis. ...
Sensory neurons relay gut-derived signals to the brain, yet the molecular and functional organizatio...