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   » » Wiki: Bipolar Neuron
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A bipolar neuron, or bipolar cell, is a type of characterized by having both an and a /ref>

Many bipolar cells are specialized (afferent neurons) for the transmission of . As such, they are part of the sensory pathways for , sight, , , , balance and . The other shape classifications of neurons include , pseudounipolar and multipolar. During embryonic development, pseudounipolar neurons begin as bipolar in shape but become pseudounipolar as they mature.

(2025). 9781455728596, Elsevier.

Common examples are the retina bipolar cell, the and vestibular ganglion of the vestibulocochlear nerve (cranial nerve VIII), the extensive use of bipolar cells to transmit efferent (motor) signals to control muscles and olfactory receptor neurons in the olfactory epithelium for smell (axons form the ).


In the retina
Https://doi.org/10.1007/s00424-021-02548-9< /ref> Often found in the , bipolar cells are crucial as they serve as both direct and indirect cell pathways. The specific location of the bipolar cells allow them to facilitate the passage of signals from where they start in the receptors to where they arrive at the amacrine and ganglion cells. Bipolar cells in the retina are also unusual in that they do not fire impulses like the other cells found within the nervous system. Rather, they pass the information by graded signal changes. Bipolar cells convey impulses from photoreceptors ( and ) to ganglion cells,Nelson, R., & Connaughton, V. (2007). Bipolar Cell Pathways in the Vertebrate Retina. In H. Kolb (Eds.) et. al., Webvision: The Organization of the Retina and Visual System. University of Utah Health Sciences Center. which in turn transport the visual signals to the brain through the optic nerve. Bipolar cells come in two varieties, having either an on-center or an off-center receptive field, each with a surround of the opposite sign. The off-center bipolar cells have excitatory synaptic connections with the photoreceptors, which fire continuously in the dark and are hyperpolarized (suppressed) by light. The excitatory thus convey a suppressive signal to the off-center bipolar cells. On-center bipolar cells have inhibitory synapses with the photoreceptors and therefore are excited by light and suppressed in the dark.


In the vestibular nerve
Bipolar neurons exist within the vestibular nerve as it is responsible for special sensory sensations including hearing, equilibrium and motion detection. The majority of the bipolar neurons belonging to the vestibular nerve exist within the vestibular ganglion with axons extending into the maculae of utricle and saccule as well as into the ampullae of the semicircular canals. Clinically Oriented Anatomy


In the spinal ganglia
Bipolar cells are also found in the , when the cells are in an condition.

Sometimes the extensions, also called processes, come off from opposite poles of the cell, and the cell then assumes a spindle shape.

In some cases where two fibers are apparently connected with a cell, one of the fibers is really derived from an adjoining nerve cell and is passing to end in a ramification around the ganglion cell, or, again, it may be coiled helically around the nerve process which is issuing from the cell.


In the cerebral cortex
Von Economo neurons, also known as spindle neurons, found in a few select parts of the of apes and some other intelligent animals, possess a single axon and dendrite and as such have been described as bipolar.

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