What's in a name? Considerations of homologies and nomenclature for vertebrate social behavior networks.

What's in a name? Considerations of homologies and nomenclature for vertebrate social behavior networks.
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DOI:
10.1016/j.yhbeh.2013.05.006
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发表时间:
2013-06
影响因子:
3.5
通讯作者:
Kingsbury, Marcy A.
Kingsbury, Marcy A.
中科院分区:
医学3区
文献类型:
--
作者:
Goodson, James L.;Kingsbury, Marcy A.

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行为神经内分泌学是一门综合性学科,跨越了广泛的分类群和神经系统,因此,在分类群之间适当地指定同源性(相同性)对于从一个分类群到另一个分类群的发现的明确沟通和外推至关重要。在这篇综述中,我们讨论了与社会行为的神经回路和介导奖励和厌恶的相关系统有关的同源性问题。我们首先解决了与所谓的“社会行为网络”(SBN)相关的各种问题,包括仅部分的同源性(例如,而鱼类和两栖动物的视前区含有主要的加压素-催产素细胞群,这些细胞群位于其他脊椎动物的下丘脑中)。我们还讨论了最近的证据,澄清鸟类下丘脑前部和导水管周围灰质同源性。最后,我们讨论了一个扩展的网络模型,“社会决策网络”(SDM),其中包括中脑边缘多巴胺系统和其他结构,提供了一个接口之间的中脑边缘系统和SBN。基于多种证据,这种扩展模型在哺乳动物中得到了强有力的支持。然而,目前尚不清楚SDM如何容易地应用于泛脊椎动物模型,考虑到许多建议的同源性数据不足,以及缺乏两栖动物,爬行动物或鱼类的SDM组件(超出SBN节点)的社会行为数据。对于鸟类来说,SDM组件的功能也知之甚少。尽管如此,我们认为,SDM模型提供了一个非常健全的和重要的框架,在非哺乳类脊椎动物的许多假设的测试。
Behavioral neuroendocrinology is an integrative discipline that spans a wide range of taxa and neural systems, and thus the appropriate designation of homology (sameness) across taxa is critical for clear communication and extrapolation of findings from one taxon to another. In the present review we address issues of homology that relate to neural circuits of social behavior and associated systems that mediate reward and aversion. We first address a variety of issues related to the so-called "social behavior network" (SBN), including homologies that are only partial (e.g., whereas the preoptic area of fish and amphibians contains the major vasopressin-oxytocin cell groups, these populations lie in the hypothalamus of other vertebrates). We also discuss recent evidence that clarifies anterior hypothalamus and periaqueductal gray homologies in birds. Finally, we discuss an expanded network model, the "social decision-making network" (SDM) which includes the mesolimbic dopamine system and other structures that provide an interface between the mesolimbic system and the SBN. This expanded model is strongly supported in mammals, based on a wide variety of evidence. However, it is not yet clear how readily the SDM can be applied as a pan-vertebrate model, given insufficient data on numerous proposed homologies and a lack of social behavior data for SDM components (beyond the SBN nodes) for amphibians, reptiles or fish. Functions of SDM components are also poorly known for birds. Nonetheless, we contend that the SDM model provides a very sound and important framework for the testing of many hypotheses in nonmammalian vertebrates.
神经元型特异性信号,用于腹侧对段区域的奖励和惩罚。
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