Centro Nacional de Investigación sobre la Evolución Humana, Burgos, Spain.
Am J Hum Biol. 2012 Nov-Dec;24(6):753-62. doi: 10.1002/ajhb.22312. Epub 2012 Aug 22.
The mechanisms involved in brain thermoregulation are still poorly known, and many disagreements still exist concerning the selective cooling capacity of the brain volume. This issue has also been discussed in human evolution and paleoneurology, speculating on possible changes associated with hominid encephalization. Although the vascular system is supposed to be the main component responsible for thermoregulation, brain geometry also plays an important role in the pattern of heat distribution.
In fossils, the only neuroanatomical evidence available for quantitative analyses is the endocranial form, molded by the brain morphology. Here, we present a quantitative method based on numerical simulations to quantify and localize variation in heat dissipation patterns associated with endocranial morphological changes, presenting a case-study on modern humans and chimpanzees.
Thermic maps provide a graphic tool to visualize heat loading on the endocranial surface. The distribution of the values (thermic spectrum) supplies a quantification which can help describe and compare the patterns of heat distribution within and between groups. Absolute values are largely influenced by size differences. Normalized values suggest further differences associated with brain shape.
Simulation and numerical modeling are useful to provide a descriptive and quantitative approach to endocranial thermoregulation, supplying a quantitative tool to investigate ontogenic and phylogenetic changes. This is particularly relevant in paleoneurology, considering the large shape and size differences described for fossil hominid brains.
大脑体温调节的机制仍知之甚少,而且对于脑容量的选择性冷却能力,仍存在许多分歧。这个问题也在人类进化和古神经学中进行了讨论,推测与人类大脑发育相关的可能变化。尽管血管系统被认为是负责体温调节的主要组成部分,但大脑的几何形状也在热量分布模式中起着重要作用。
在化石中,唯一可用于定量分析的神经解剖学证据是由脑形态塑造的内颅骨形式。在这里,我们提出了一种基于数值模拟的定量方法,用于量化和定位与内颅骨形态变化相关的散热模式的变化,并以现代人类和黑猩猩为例进行了研究。
热图提供了一种可视化内颅骨表面受热的图形工具。值的分布(热谱)提供了一种量化方法,可以帮助描述和比较组内和组间的热量分布模式。绝对值主要受尺寸差异的影响。归一化值表明与脑形状相关的进一步差异。
模拟和数值建模是提供内颅体温调节描述性和定量方法的有用工具,为研究个体发生和系统发生变化提供了一种定量工具。考虑到化石人类大脑所描述的大形状和尺寸差异,这在古神经学中尤为重要。