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Bipolar cells receive synaptic input from either rods or cones, or both rods and cones, though they are generally designated rod bipolar or cone bipolar cells. There are roughly 10 distinct forms of cone bipolar cells, however, only one rod bipolar cell, due to the rod receptor arriving later in the evolutionary history than the cone receptor ...
Bipolar disorder is a long-term mood disorder characterized by major fluctuations in mood — both high and low ... There may also be imbalances in mood-regulating neurotransmitters (brain ...
The role of monoamines in bipolar have been studied using neurotransmitter metabolites. Reduced concentration of homovanillic acid , the primary metabolite of dopamine, in the cerebrospinal fluid (CSF) of people with depression is consistently reported.
Bipolar disorder, previously known as manic depression or manic depressive disorder, is a mental disorder characterized by periods of depression and periods of abnormally elevated mood that each last from days to weeks.
The cause of Bipolar disorder can be attributed to misfiring neurotransmitters that overstimulate the amygdala, which in turn causes the prefrontal cortex to stop working properly. The bipolar patient becomes overwhelmed with emotional stimulation with no way of understanding it, which can trigger mania and exacerbate the effects of depression.
Bipolar disorder is a mental illness characterized by changing moods, ... “The ketogenic diet can actually change neurotransmitters in the brain,” Palmer continued. “It can reduce brain ...
Bipolar Disorder and Major Depressive Disorder have been closely linked due to the similar depressive symptoms and similar monoaminergic systems that have been thought to underlie these conditions. Much of the research for bipolar disorder is done in conjunction with studies of other diseases, most commonly schizophrenia and major depressive ...
This neurotransmitter hyperpolarizes the bipolar cell. Bipolar cells exist between photoreceptors and ganglion cells and act to transmit signals from the photoreceptors to the ganglion cells. As a result of the bipolar cell being hyperpolarized, it does not release its transmitter at the bipolar-ganglion synapse and the synapse is not excited.
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