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嗅结节刺激会改变气味偏好行为,并激活前脑奖赏和动机中枢。

Olfactory tubercle stimulation alters odor preference behavior and recruits forebrain reward and motivational centers.

作者信息

Fitzgerald Brynn J, Richardson Kara, Wesson Daniel W

机构信息

Department of Neurosciences, Case Western Reserve University Cleveland, OH, USA.

Department of Neurosciences, Case Western Reserve University Cleveland, OH, USA ; Department of Biology, Case Western Reserve University Cleveland, OH, USA.

出版信息

Front Behav Neurosci. 2014 Mar 14;8:81. doi: 10.3389/fnbeh.2014.00081. eCollection 2014.

Abstract

Rodents show robust behavioral responses to odors, including strong preferences or aversions for certain odors. The neural mechanisms underlying the effects of odors on these behaviors in animals are not well understood. Here, we provide an initial proof-of-concept study into the role of the olfactory tubercle (OT), a structure with known anatomical connectivity with both brain reward and olfactory structures, in regulating odor-motivated behaviors. We implanted c57bl/6 male mice with an ipsilateral bipolar electrode into the OT to administer electric current and thereby yield gross activation of the OT. We confirmed that electrical stimulation of the OT was rewarding, with mice frequently self-administering stimulation on a fixed ratio schedule. In a separate experiment, mice were presented with either fox urine or peanut odors in a three-chamber preference test. In absence of OT stimulation, significant preference for the peanut odor chamber was observed which was abolished in the presence of OT stimulation. Perhaps providing a foundation for this modulation in behavior, we found that OT stimulation significantly increased the number of c-Fos positive neurons in not only the OT, but also in forebrain structures essential to motivated behaviors, including the nucleus accumbens and lateral septum. The present results support the notion that the OT is integral to the display of motivated behavior and possesses the capacity to modulate odor hedonics either by directly altering odor processing or perhaps by indirect actions on brain reward and motivation structures.

摘要

啮齿动物对气味表现出强烈的行为反应,包括对某些气味有强烈的偏好或厌恶。气味对动物这些行为产生影响的神经机制尚未得到充分理解。在此,我们对嗅结节(OT)在调节气味驱动行为中的作用进行了初步的概念验证研究,嗅结节是一种与大脑奖赏结构和嗅觉结构均具有已知解剖学连接的结构。我们将同侧双极电极植入C57BL/6雄性小鼠的嗅结节以施加电流,从而使嗅结节产生总体激活。我们证实,对嗅结节的电刺激具有奖赏性,小鼠经常按照固定比率程序自行施加刺激。在另一项实验中,在三室偏好测试中向小鼠呈现狐狸尿液或花生气味。在没有嗅结节刺激的情况下,观察到小鼠对花生气味室有明显偏好,而在有嗅结节刺激时这种偏好消失。我们发现,嗅结节刺激不仅显著增加了嗅结节中c-Fos阳性神经元的数量,还增加了对动机行为至关重要的前脑结构(包括伏隔核和外侧隔)中c-Fos阳性神经元的数量,这或许为这种行为调节提供了基础。目前的结果支持这样一种观点,即嗅结节对于动机行为的表现不可或缺,并且具有通过直接改变气味处理或可能通过对大脑奖赏和动机结构的间接作用来调节气味享乐主义的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/280c/3954079/f1f343f090ca/fnbeh-08-00081-g0001.jpg

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