Department of Integrative Physiology, Nagoya University Graduate School of Medicine, Nagoya, 466-8550, Japan.
PRESTO, Japan Science and Technology Agency, Kawaguchi, Saitama, 332-0012, Japan.
Sci Rep. 2017 Jul 10;7(1):5031. doi: 10.1038/s41598-017-05327-8.
Thermoregulatory behaviour, such as migration to a comfortable thermal environment, is a representative innate animal behaviour and facilitates effective autonomic regulation of body temperature with a reduced cost of resources. Here we determine the central thermosensory ascending pathway that transmits information on environmental temperature from cutaneous thermoreceptors to elicit thermoregulatory behaviour. To examine the contribution of the spinothalamocortical pathway, which is known to mediate thermosensory transmission for perception of skin temperature, we lesioned thalamic regions mediating this pathway in rats. Thalamic-lesioned rats showed compromised electroencephalographic responses in the primary somatosensory cortex to changes in skin temperature, indicating functional ablation of the spinothalamocortical pathway. However, these lesioned rats subjected to a two-floor innocuous thermal plate preference test displayed intact heat- and cold-avoidance thermoregulatory behaviours. We then examined the involvement of the lateral parabrachial nucleus (LPB), which mediates cutaneous thermosensory signaling to the thermoregulatory center for autonomic thermoregulation. Inactivation of neurons in the LPB eliminated both heat- and cold-avoidance thermoregulatory behaviours and ablated heat defense. These results demonstrate that the LPB, but not the thalamus, mediates the cutaneous thermosensory neural signaling required for behavioural thermoregulation, contributing to understanding of the central circuit that generates thermal comfort and discomfort underlying thermoregulatory behaviours.
体温调节行为,如迁移到舒适的热环境中,是一种代表性的先天动物行为,有助于通过降低资源成本来实现有效的自主体温调节。在这里,我们确定了从中枢热感受器向皮肤传递环境温度信息以引发体温调节行为的感觉上行通路。为了研究已知介导皮肤温度感觉的脊髓丘脑皮质通路对体温调节的贡献,我们在大鼠中损伤了介导该通路的丘脑区域。丘脑损伤大鼠在初级体感皮层对皮肤温度变化的脑电图反应受损,表明脊髓丘脑皮质通路的功能被消融。然而,这些接受双地板无害热板偏好测试的损伤大鼠表现出完整的热回避和冷回避体温调节行为。然后,我们研究了外侧臂旁核(LPB)的参与情况,它将皮肤温度感觉信号传递到自主体温调节的体温调节中心。LPB 神经元的失活消除了热回避和冷回避体温调节行为,并消除了热防御。这些结果表明,LPB 而不是丘脑介导了行为体温调节所需的皮肤温度感觉神经信号,有助于理解产生热舒适和不适的中枢回路,这些是体温调节行为的基础。