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The base of skull, also known as the cranial base or the cranial floor, ... The foramina in the base of the skull are exit and entry points for veins, ...
Image of base of the skull with several of the foramina labeled. The human skull has numerous openings , through which cranial nerves, arteries, veins, and other structures pass. These foramina vary in size and number, with age. [1] [2]
Foramen ovale. The foramen ovale is an opening in the greater wing of the sphenoid bone. [1] The foramen ovale is one of two cranial foramina in the greater wing, the other being the foramen spinosum. [2]: 771 The foramen ovale is posterolateral to the foramen rotundum and anteromedial to the foramen spinosum.
The human skull contains a number of foramina through which arteries, veins, nerves, and other structures enter and exit. Pages in category "Foramina of the skull" The following 46 pages are in this category, out of 46 total.
A jugular foramen is one of the two (left and right) large foramina (openings) in the base of the skull, located behind the carotid canal. It is formed by the temporal bone and the occipital bone. It allows many structures to pass, including the inferior petrosal sinus, three cranial nerves, the sigmoid sinus, and meningeal arteries.
Superior view of the skull base. posterior cranial fossa shown in green. 1: Dorsum sellae of the sphenoid bone 2: Superior borders of the petrous part of the temporal bone. 3: Groove for transverse sinus of the occipital bone
The foramen lacerum (Latin: lacerated piercing) is a triangular hole in the base of skull. It is located between 3 bones: sphenoid bone (forming the anterior border) [1]: 776 apex of petrous part of temporal bone (forming the posterolateral border) [1]: 776 [2] basilar part of occipital bone (forming the posteromedial border) [1]: 776
The foramen rotundum is one of the several circular apertures (the foramina) located in the base of the skull, in the anterior and medial part of the sphenoid bone. The mean area of the foramina rotunda is not considerable, which may suggest that they play a minor role in the dynamics of blood circulation in the venous system of the head. [1]