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Published on: November 14, 2012
The middle meningeal artery: from clinics to fossils
Emiliano Bruner1, Shahram Sherkat
1Centro Nacional de Investigación sobre la Evolución Humana, Avda. de La Paz 28, 09004, Burgos, Spain. emiliano.bruner@cenieh.es
Introduction:
Although research today ranges from molecular to universe scale, many issues regarding gross anatomy remain totally neglected. Within the framework of the endocranial morphogenesis and evolution, understanding the role and variation of the middle meningeal artery relies upon the very limited, scattered, and descriptive information available. The meninges are supplied by branches originating from both the internal and external carotid arteries, often converging in the same networks and hence raising questions on the homology and embryogenesis of these vessels. The middle meningeal artery is often ligated during craniotomies, with no apparent impairment of the cerebral functional processes. The exact physiological role of this extended vascular system, together with the adaptations and selective pressure associated with its evolutionary characterization, have generally been ignored.
The Middle Meningeal Vessels In Nonhuman Primates:
Anthropologists have made many attempts to quantify and qualify the differences and variation between and within human and nonhuman primates, with scarce results due to the blurry morphology of the vascular networks. Living apes and humans probably have meningeal vessels originating from different embryogenetic processes, further hampering easy phylogenetic comparisons. Generally, monkeys and apes display a larger component derived from the internal carotid artery and its ophthalmic branch.
Evolution And Morphological Variation In Fossil Hominids:
The fossil endocasts partially show the traces of the middle meningeal vessels, allowing some hypotheses on the evolution of these structures. In contrast with modern humans, some extinct groups show a dominance of the posterior branch over the anterior one. The most interesting features are associated with the variation of the middle branch, which supplies the parietal areas. In any case, the most striking difference between the modern and non-modern humans regard the definite increase in the number and complexity of the anastomoses and reticulation in the former. This may be either the simple result of a larger percentage of traces left by the soft tissue or be associated with a more developed vascular network.
Perspectives:
Tools are needed to quantify and qualify the morphogenesis and variations of the middle meningeal artery. Supposing these vessels are not strictly necessary in the adult age, the evolutionary pressure shaping their structure may have been associated with early life stages. Apart from oxygenation, another function which deserves attention is thermoregulation, considering the metabolic loadings of the cerebral mass.
Insights
The middle meningeal artery
Area of Science:
- Gross anatomy and evolutionary developmental biology.
Background:
- The role and variation of the middle meningeal artery (MMA) are poorly understood, despite its ligation during craniotomies.
- The MMA's vascular supply originates from both internal and external carotid arteries, raising questions about homology and embryogenesis.
- Limited data exists on the MMA's physiological role and evolutionary adaptations.
Purpose of the Study:
- To highlight the neglected research on gross anatomy, specifically the middle meningeal artery.
- To underscore the need for tools to quantify and qualify MMA morphogenesis and variations.
- To explore potential evolutionary pressures on MMA structure, possibly related to early life stages or thermoregulation.
Main Methods:
- Analysis of existing literature on MMA anatomy, variation, and evolution.
- Comparison of MMA patterns in human and nonhuman primates.
- Examination of fossil endocasts to infer evolutionary changes in MMA branching.
Main Results:
- Nonhuman primates generally show a greater MMA contribution from the internal carotid artery.
- Fossil hominids exhibit variations in MMA branching, with some showing posterior branch dominance.
- Modern humans display increased complexity and anastomoses in their MMA networks compared to extinct groups.
Conclusions:
- Quantification tools are essential for studying MMA morphogenesis and variation.
- Evolutionary pressures on the MMA may be linked to early developmental stages.
- Thermoregulation is a potential function of the MMA, alongside oxygenation, warranting further investigation.
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