Compared to nervous system signaling, endocrine signaling is generally

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Multiple Choice

Compared to nervous system signaling, endocrine signaling is generally

Explanation:
Endocrine signaling works through hormones released into the bloodstream to reach distant targets. Because hormones travel through the circulatory system, their onset is slower, since it takes time for hormones to circulate and encounter receptors. Once they act, their effects can be long-lasting because hormones can persist in the blood for extended periods and trigger intracellular cascades that keep producing effects even after the initial signal is gone. In contrast, nervous system signaling uses fast electrical impulses and neurotransmitters released at synapses directly onto adjacent cells. This yields rapid, precise responses that are typically brief, ending quickly once neurotransmitters are cleared or reabsorbed. So, compared with nervous signaling, endocrine signaling is generally slower to start but longer-lasting. The endocrine system is also a key regulator of homeostasis, so the idea that it isn’t involved in homeostasis isn’t correct.

Endocrine signaling works through hormones released into the bloodstream to reach distant targets. Because hormones travel through the circulatory system, their onset is slower, since it takes time for hormones to circulate and encounter receptors. Once they act, their effects can be long-lasting because hormones can persist in the blood for extended periods and trigger intracellular cascades that keep producing effects even after the initial signal is gone.

In contrast, nervous system signaling uses fast electrical impulses and neurotransmitters released at synapses directly onto adjacent cells. This yields rapid, precise responses that are typically brief, ending quickly once neurotransmitters are cleared or reabsorbed.

So, compared with nervous signaling, endocrine signaling is generally slower to start but longer-lasting. The endocrine system is also a key regulator of homeostasis, so the idea that it isn’t involved in homeostasis isn’t correct.

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