New anatomical findings in the mandibular body region: Two parts that make up bucco‐mandibular space

Author:

Inoue Eiko12ORCID,Iwanaga Joe23,Han Aya24ORCID,Tabira Yoko2,Haikata Yuto2,Kikuchi Keishiro25,Saga Tsuyoshi6,Watanabe Koichi2ORCID

Affiliation:

1. Jyosui Dermatology Clinic Fukuoka Japan

2. Division of Gross and Clinical Anatomy, Department of Anatomy Kurume University School of Medicine Fukuoka Japan

3. Department of Neurosurgery Tulane University School of Medicine New Orleans Louisiana USA

4. Department of Plastic, Reconstructive, and Maxillofacial Surgery Kurume University School of Medicine Fukuoka Japan

5. Department of Orthopedic Surgery Kurume University School of Medicine Fukuoka Japan

6. Domain of Anatomy Kurume University School of Nursing Fukuoka Japan

Abstract

AbstractSoft tissue spaces not only enable gliding by contraction of the facial muscles, but they also cause drooping of the superficial fat due to gravity in the upright position. This study was performed to clarify the structures around the bucco‐mandibular space (BMS) and to apply this anatomical knowledge to clinical practice. Four sides of the face were dissected using a conventional gross anatomical dissection technique, and 10 sides (5 horizontal and 5 frontal sections) of the removed semi‐facial soft tissue were dissected using the stretched tissue dissection (STD) method. Histological examination of the mandible was performed on two sides to confirm the findings of conventional gross anatomical dissection and STD. In all cases, both gross dissection and STD revealed that the BMS was composed of two parts. The superficial part was filled with adipose tissue containing nerves and vessels, including the marginal mandibular branch of the facial nerve, facial artery, facial vein, and mental nerve. We named this part the adipo‐neuromandibular part. By contrast, the deep part was separated from the adipo‐neurovascular part by facial deep fascia and composed of loose connective tissue. We named this deep part the loose connective tissue part. The STD method enabled us to obtain detailed anatomical findings of the mandibular region and elucidate two parts of the BMS in which the neurovasculature is distributed. We believe that these findings provide new insights into facial anatomy by resolving existing anatomical uncertainties and will contribute to safer surgical treatment in the facial region.

Publisher

Wiley

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