Pediatric Otolaryngology by Christopher J. Hartnick

By Christopher J. Hartnick

Sataloff's complete Textbook of Otolaryngology: Head & Neck surgical procedure - Pediatric Otolaryngology is a part of a multi-volume textbook overlaying simple and medical technology around the whole box of otolaryngology. Volumes within the set comprise; otology, neurotology and skull-based surgical procedure; rhinology, hypersensitive reaction and immunology; facial plastic and reconstructive surgical procedure; laryngology and head and neck surgical procedure. the total set is stronger by means of over 5000 complete color photos and illustrations, spanning approximately 6000 pages, entire with a complete index on DVD. Edited through Robert T Sataloff from Drexel collage collage of medication, Philadelphia, this quantity contains contributions from across the world recognized specialists in otolaryngology, making sure authoritative content material all through. Sataloff's complete Textbook of Otolaryngology: Head & Neck surgical procedure - Pediatric Otolaryngology is an imperative, in-depth advisor to the sphere for all otolaryngology practitioners. Key issues * Textbook of paediatric otolaryngology, a part of six-volume set overlaying the full box of otolaryngology * Volumes contain otology/neurotology, rhinology, cosmetic surgery, laryngology, head and neck surgical procedure, and paediatric otolaryngology * Over 5000 complete color photographs and illustrations throughout six volumes * Edited via Robert T Sataloff, with contributions from across the world recognized otolaryngology specialists

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T: Temporal branch; Z: Zygomatic branch; B: Buccal branch; M: Marginal mandibular branch; C: Cervical branch). B Chapter 1: Embryology of the Facial Nerve and Related Structures 5 Fig. 4: Branches of the facial nerve. and postganglionic axons to the lacrimal glands, nasal glands, and palatine mucosal glands; it also communi­ cates with the lesser petrosal nerve3 3. The nerve to the stapedius muscle 4. The branch to the posterior belly of the digastrics muscle 7. The branch to the stylohyoid muscle 8.

When inner ear stem cells proliferate, they express the stem cell marker, Sox2, similar to the otic placode. Once plated and differentiating, early inner ear progenitors express progenitor markers, Sox2, Musashi, nestin, islet1, and Pax2, similar to those in the brain at early develop­ mental stages. 41,42 In the neonatal mouse, such stem cells can be harvested from the organ of Corti (cochlear stem cells), the spiral ganglion (neural stem cells), and the utricle (vestibular stem cells). All of these stem cell types, when put into culture, can proliferate and differentiate into the cell types found in the inner ear.

Kiernan AE, Pelling AL, Leung KK, et al. Sox2 is required for sensory organ development in the mammalian inner ear. Nature. 2005;434(7036):1031-5. 37. Shi F, Kempfle JS, Edge AS. Wnt-responsive Lgr5-expressing stem cells are hair cell progenitors in the cochlea. J Neurosci. 2012;32(28):9639-48. 38. Hodge RD, Kowalczyk TD, Wolf SA, et al. Intermediate progenitors in adult hippocampal neurogenesis: Tbr2 expression and coordinate regulation of neuronal output. J Neurosci. 2008;28(14):3707-17. 39. Oshima K, Heller S.

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