DOI QR코드

DOI QR Code

Development and growth of the temporal fascia: a histological study using human fetuses

  • Kei Kitamura (Department of Histology and Developmental Biology, Tokyo Dental College) ;
  • Satoshi Ishizuka (Department of Pharmacology, Tokyo Dental College) ;
  • Ji Hyun Kim (Department of Anatomy, Jeonbuk National University Medical School) ;
  • Hitoshi Yamamoto (Department of Histology and Developmental Biology, Tokyo Dental College) ;
  • Gen Murakami (Division of Internal Medicine, Cupid Clinic) ;
  • Jose Francisco Rodriguez-Vazquez (Department of Anatomy and Embryology, School of Medicine, Complutense University) ;
  • Shin-ichi Abe (Department of Anatomy, Tokyo Dental College)
  • 투고 : 2023.12.18
  • 심사 : 2024.02.17
  • 발행 : 2024.06.30

초록

The temporal fascia is a double lamina sandwiching a thick fat layer above the zygomatic bony arch. To characterize each lamina, their developmental processes were examined in fetuses. We observed histological sections from 22 half-heads of 10 mid-term fetuses at 14-18 weeks (crown-rump length, 95-150 mm) and 12 near-term fetuses at 26-40 weeks (crown-rump length, 215-334 mm). The superficial lamina of the temporal fascia was not evident at mid-term. Instead, a loose subcutaneous tissue was attached to the thin, deep lamina of the temporal fascia covering the temporalis muscle. At near-term, the deep lamina became thick, while the superficial lamina appeared and exhibited several variations: i) a mono-layered thick membrane (5 specimens); ii) a multi-layered membranous structure (6) and; iii) a cluster of independent thick fasciae each of which were separated by fatty tissues (1). In the second and third patterns, fatty tissue between the two laminae was likely to contain longitudinal fibrous bands in parallel with the deep lamina. Varying proportions of the multi-layered superficial lamina were not attached to the zygomatic arch, but extended below the bony arch. Whether or not lobulation or septation of fatty tissues was evident was not dependent on age. The deep lamina seemed to develop from the temporalis muscle depending on the muscle contraction. In contrast, the superficial lamina developed from subcutaneous collagenous bundles continuous to the cheek. Therein, a difference in development was clearly seen between two categories of the fasciae.

키워드

과제정보

This study was supported by Complutense University and Tokyo Dental College in 2023. This study was supported by a Grant-in-Aid for Scientific Research (no. 21K17049: Kei Kitamura) from the Ministry of Education, Culture, Sports, Science and Technology, Japan.

참고문헌

  1. Schaeffer JP. Morris' human anatomy: a complete systematic treatise. 11th ed. Blakiston; 1953. p. 426.
  2. Williams PL. Gray's anatomy: the anatomical basis of medicine and surgery. 38th ed. Churchill Livingstone; 1995. p. 800.
  3. Standring S. Gray's anatomy: the anatomical basis of clinical practice. 39th ed. Churchill Livingstone; 2005. p. 499.
  4. Lam D, Carlson ER. The temporalis muscle flap and temporoparietal fascial flap. Oral Maxillofac Surg Clin North Am 2014;26:359-69.
  5. Pitman MJ, Rubino SM, Cooper AL. Temporalis fascia transplant for vocal fold scar and sulcus vocalis. Laryngoscope 2014;124:1653-8.
  6. Morales-Avalos R, Soto-Dominguez A, Garcia-Juarez J, Saucedo-Cardenas O, Bonilla-Galvan JR, Cardenas-Serna M, Guzman-Lopez S, Elizondo-Omana RE. Characterization and morphological comparison of human dura mater, temporalis fascia, and pericranium for the correct selection of an autograft in duraplasty procedures. Surg Radiol Anat 2017;39:29-38.
  7. Lee HJ, Kim HM, Ahn HS, Lee JH, Kim HJ. Novel clinical anatomical consideration of the superficial and deep layers of the deep temporal fascia. Plast Reconstr Surg 2024;153:591-9.
  8. Stuzin JM, Baker TJ, Gordon HL. The relationship of the superficial and deep facial fascias: relevance to rhytidectomy and aging. Plast Reconstr Surg 1992;89:441-9; discussion 450-1.
  9. Watanabe K, Han A, Inoue E, Iwanaga J, Tabira Y, Yamashita A, Kikuchi K, Haikata Y, Nooma K, Saga T. The key structure of the facial soft tissue: the superficial musculoaponeurotic system. Kurume Med J 2023;68:53-61.
  10. Mitz V, Peyronie M. The superficial musculo-aponeurotic system (SMAS) in the parotid and cheek area. Plast Reconstr Surg 1976;58:80-8.
  11. Cho KH, Jang HS, Abe H, Yamamoto M, Murakami G, Shibata S. Fetal development of fasciae around the arm and thigh muscles: a study using late stage fetuses. Anat Rec (Hoboken) 2018;301:1235-43.
  12. Kim JH, Oka K, Jin ZW, Murakami G, Rodriguez-Vazquez JF, Ahn SW, Hwang HP. Fetal development of the incisive canal, especially of the delayed closure due to the nasopalatine duct: a study using serial sections of human fetuses. Anat Rec (Hoboken) 2017;300:1093-103.
  13. Kim JH, Shibata S, Abe H, Murakami G, Rodriguez-Vazquez JF. Topographical variations of the incisive canal and nasopalatine duct in human fetuses. Anat Cell Biol 2019;52:426-35.
  14. Yamamoto M, Jin ZW, Hayashi S, Rodriguez-Vazquez JF, Murakami G, Abe S. Association between the developing sphenoid and adult morphology: a study using sagittal sections of the skull base from human embryos and fetuses. J Anat 2021;239:1300-17.
  15. Kinugasa Y, Murakami G, Uchimoto K, Takenaka A, Yajima T, Sugihara K. Operating behind Denonvilliers' fascia for reliable preservation of urogenital autonomic nerves in total mesorectal excision: a histologic study using cadaveric specimens, including a surgical experiment using fresh cadaveric models. Dis Colon Rectum 2006;49:1024-32.
  16. Kim JH, Kinugasa Y, Hwang SE, Murakami G, Rodriguez-Vazquez JF, Cho BH. Denonvilliers' fascia revisited. Surg Radiol Anat 2015;37:187-97.
  17. Muraoka K, Hinata N, Morizane S, Honda M, Sejima T, Murakami G, Tewari AK, Takenaka A. Site-dependent and interindividual variations in Denonvilliers' fascia: a histological study using donated elderly male cadavers. BMC Urol 2015;15:42.
  18. Androulakis J, Colborn GL, Skandalakis PN, Skandalakis LJ, Skandalakis JE. Embryologic and anatomic basis of duodenal surgery. Surg Clin North Am 2000;80:171-99.
  19. Rouvier H, Delmas A. Anatomie humaine- descriptive, topographique et fonctionnelle. 2nd ed. Masson; 1974. p. 450-68.
  20. Cho BH, Kimura W, Song CH, Fujimiya M, Murakami G. An investigation of the embryologic development of the fascia used as the basis for pancreaticoduodenal mobilization. J Hepatobiliary Pancreat Surg 2009;16:824-31.
  21. Hayes MA. Abdominopelvic fasciae. Am J Anat 1950;87:119-61.
  22. Matsubara A, Murakami G, Niikura H, Kinugasa Y, Fujimiya M, Usui T. Development of the human retroperitoneal fasciae. Cells Tissues Organs 2009;190:286-96. Erratum in: Cells Tissues Organs 2013;197:88.
  23. Kim JH, Hayashi S, Jin ZW, Murakami G, Rodriguez-Vazquez JF. Variations in laminar arrangements of the mesocolon and retropancreatic fascia: a histological study using human fetuses near term. Tokai J Exp Clin Med 2020;45:214-23.