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The mastoid cells (also called air cells of Lenoir or mastoid cells of Lenoir) are air-filled cavities within the of the of the . The mastoid cells are a form of skeletal pneumaticity. Infection in these cells is called .

The term cells here refers to enclosed spaces, not cells as living, biological units.


Anatomy
The mastoid air cells vary greatly in number, shape, and size; they may be extensive or minimal or even absent.
(2025). 9780702077074

The cells are typically interconnected and their walls lined by mucosa that is continuous with that of the mastoid antrum and tympanic cavity.


Extent
They may excavate the mastoid process to its tip, and be separated from the posterior cranial fossa and by a mere slip of bone or not at all. They may extend into the squamous part of temporal bone, petrous part of the temporal bone zygomatic process of temporal bone, and - rarely - the ; they may thus come to adjoin many important structures (including the bony labyrinth, tympanic cavity, external acoustic meatus, pharyngotympanic tube, superior jugular bulb, posterior cranial fossa, middle cranial fossa, carotid canal, abducens nerve, sigmoid sinus) to which they may disseminate infection in case of infective mastoiditis.


Innervation
The cells receive from the posterior branch of the meningeal branch of the mandibular nerve (nervus spinosus),
(2025). 9780729537520, Elsevier Australia.
and branches of the .


Vasculature
The cells receive arterial supply from the stylomastoid branch of the or posterior auricular artery, and (sometimes) a mastoid branch of the .

The superior petrosal sinus receives venous drainage from the mastoid air cells (mastoid infection may thus lead to a cerebellar abscess).


Development
At birth, the mastoid is not pneumatized, but becomes aerated before age six. At birth, the mastoid antrum is well developed but the air cells are represented only by small diverticula from the antrum. The air cells then gradually extend into the bone of the mastoid during the first years of life. Their most significant enlargements takes place during puberty.


Function
The air cells are hypothesised to protect the temporal bone and the inner and middle ear against trauma and to regulate air pressure.


Clinical significance
easily spread into the mastoid air cells through the aditus ad antrum, resulting in , a potentially dangerous and life-threatening condition. Infection may then further spread into the middle cranial fossa or posterior cranial fossa, causing meningitis or abscess of adjacent brain tissue. Infection may also spread to muscles of the neck, causing pain and .


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