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Selective brain cooling seems to be a mechanism leading to human craniofacial diversity observed in different geographical regions.

机译:选择性的脑部冷却似乎是导致在不同地理区域观察到的人类颅面多样性的一种机制。

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摘要

Selective brain cooling (SBC) can occur in hyperthermic humans despite the fact that humans have no carotid rete, a vascular structure that facilitates countercurrent heat exchange located at the base of the skull in some mammals. Emissary and angular veins, upper respiratory tract, tympanic cavity and cerebrospinal fluid are major components of SBC system in humans. The efficiency of SBC is increased by evaporation of sweat on the head and by ventilation through the nose, but it is surprising to find out that mammals do not display SBC during exercise hyperthermia. What is the explanation then for the SBC at high body temperatures? Our hypothesis is that selective brain cooling protects the brain from thermal damage in a long-standing manner by allowing adaptive mechanisms to change the craniofacial morphology appropriate for different environmental conditions. Since the brain can only be as big that can cool, it is not surprising to find a lower (below 1300 cm(3)) cranial volume in Australian Aborigines with respect to the one (over 1450 cm(3)) in Eskimos. In addition to lower brain volume, other craniofacial features such as thick everted lips, broader nasal cavity and bigger paranasal sinuses that provide more evaporating surfaces seem to be anatomical variations developed in time for an effective SBC in hot climates. It was reported previously that these biological adaptations result from the tissues of neural crest origin. Among the crest derivatives, leptomeninges (pia and arachnoid mater), skeletal and connective tissues of the face and much of the skull seem to be structures upon which environment operates to produce more convenient craniofacial morphology for an effective SBC. In conclusion, selective brain cooling seems to be a mechanism leading to adaptive craniofacial diversity observed in different geographical regions. Thus, SBC is necessary for long-term biological adaptation, not for protecting the brain from acute thermal damage.
机译:尽管人类没有颈动脉网膜,但在某些人类中,选择性脑冷却(SBC)仍会发生在高热的人类中。人体的SBC系统的主要组成部分是传静脉和角静脉,上呼吸道,鼓膜腔和脑脊液。通过汗液在头上的蒸发和通过鼻子的通气,SBC的效率得以提高,但是令人惊奇的发现哺乳动物在运动热疗过程中没有表现出SBC。那么,在体温较高时,SBC的解释是什么?我们的假设是,选择性的脑冷却可以通过允许适应性机制改变适合不同环境条件的颅面形态来长期保护大脑免受热损伤。由于大脑的大小只能冷却,因此与在爱斯基摩人的颅骨(在1450 cm(3)以上)相比,澳大利亚原住民的颅骨体积较小(在1300 cm(3)以下)并不奇怪。除了降低大脑体积之外,其他颅面面部特征(如浓密的嘴唇外翻,更宽的鼻腔和更大的鼻旁窦)可提供更多的蒸发表面,这似乎是在炎热气候下及时开发有效SBC的解剖学变异。以前有报道说,这些生物学适应是由神经rest起源的组织引起的。在波峰的衍生物中,软脑膜(pia和蛛网膜的组织),面部的骨骼和结缔组织以及大部分头骨似乎是一种结构,在该结构上,环境可运行以产生更方便的颅面形态,从而形成有效的SBC。总之,选择性的脑部冷却似乎是导致在不同地理区域观察到的适应性颅面部多样性的机制。因此,SBC对于长期的生物学适应是必需的,而不是为了保护大脑免受急性热损伤。

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