neurotransmitters
A synaptic cleft is the gap into which a chemical is released.
The axon terminals contain chemicals, called "neurotransmitters," which are released in order for the cell to communicate with nearby cells.
Neuronal signaling uses neurotransmitters to communicate between nerve cells and innervate target organs. Neurotransmitters are released from the pre-synaptic neuron, cross the synaptic cleft, and bind to receptors on the post-synaptic cell to transmit signals. This method of signaling is crucial for rapid and precise communication within the nervous system.
The process of recycling neurotransmitters is known as reuptake. This is when neurotransmitters are taken back up into the presynaptic neuron after they have been released into the synaptic cleft.
The chemical energy stored in coal is called potential energy. This energy is released when coal is burned or combusted, converting it into heat energy.
The tiny sacs in the synapse are called synaptic vesicles. These vesicles store neurotransmitters, which are released into the synaptic cleft to facilitate communication between neurons.
The sack-like structures inside the synaptic knob containing chemicals are called synaptic vesicles. These vesicles store and release neurotransmitters, which are chemical messengers that transmit signals between neurons. When an action potential reaches the synaptic knob, it triggers the release of neurotransmitters from the synaptic vesicles into the synaptic cleft.
The tiny sacs in the synaptic knob are known as synaptic vessels. The synaptic vessels release chemicals into the bloodstream with each synapse.
A synaptic cleft is the gap into which a chemical is released.
Neurotransmitters are stored in synaptic vesicles called the presynaptic terminal. These vesicles are located at the end of the axon terminal of a neuron and release neurotransmitters into the synapse to facilitate communication with other neurons.
The molecule released from synaptic vesicles is called neurotransmitter. It acts as the chemical messenger that transmits signals between neurons or from neurons to other cells such as muscle cells or gland cells. Examples of neurotransmitters include dopamine, serotonin, and acetylcholine.
The part of the neuron where neurotransmitters are released from is the axon terminal, and they are released into a small space between neurons called the Synapse.
Synaptic vesicles store neurotransmitters to be released into the synapses. In the case of most motoneurons, this neurotransmitter is acetylcholine (ACh). The neurons that interface with the sympathetic nervous system, also technically motoneurons, release norepinephrine.
A synaptic cleft is the gap into which a chemical is released.
When the action potential arrives, synaptic vesicles containing neurotransmitters are released by a process called exocytosis. This involves the fusion of the vesicle membrane with the presynaptic membrane, leading to the release of neurotransmitters into the synaptic cleft.
The distal end of a neuron is the axon, an extension that arises from the soma (cell body), and at the distal end of an axon there are extensions called telodendria. At the distal ends of telodendria are knoblike structures called synaptic end bulbs (sometimes called synaptic knobs). Synaptic end bulbs have synaptic vesicles inside them that contain neurotransmitters. Synaptic vesicles are released by exocytosis into the synaptic cleft for diffusion. I can't tell from the way your question is worded if you're asking about axons, telodenria or synaptic end bulbs because all of these structures are at the distal end of a neuron. Determine what the function of the "extensions" is and use whichever part of my answer applies.
The axon terminals contain chemicals, called "neurotransmitters," which are released in order for the cell to communicate with nearby cells.