Iwanaga Joe, Pineda Eric, Miyamoto Yusuke, Wysiadecki Grzegorz, Anadkat Samir, Tubbs R Shane
Department of Neurosurgery, Tulane Center for Clinical Neurosciences, Tulane University School of Medicine, New Orleans, LA, USA.
Department of Neurology, Tulane Center for Clinical Neurosciences, Tulane University School of Medicine, New Orleans, LA, USA.
Anat Cell Biol. 2023 Jun 30;56(2):200-204. doi: 10.5115/acb.22.231. Epub 2023 Feb 27.
Although in counterpart, the sphenopalatine artery (SPA), has been well described in the medical literature, the sphenopalatine vein (SPV) has received scant attention. Therefore, the present anatomical study was performed. Additionally, we discuss the variations, embryology, and clinical significance of the SPV. Adult cadaveric specimens underwent dissection of the SPV. In addition, some specimens were submitted for histological analysis of this structure. The SPV was found to drain from the sphenoidal sinus and nasal septum. Small tributaries traveled through the nasal septum with the posterior septal branches of the SPA and nasopalatine nerve. The SPA and SPV were found to travel through the sphenopalatine foramen and another tributary was found to perforate the medial plate of the pterygoid process and to connect to the pterygoid venous plexus which traveled lateral to the medial plate of the pterygoid process. The vein traveled through the posterior part of the lateral wall of the nasal cavity with the posterior lateral nasal branches of the SPA and the lateral superior posterior nasal branches of the maxillary nerve. To our knowledge, this is the first anatomical study on the SPV in humans. Data on the SPV provides an improved anatomical understanding of the vascular network of the nasal cavity. Developing a more complete picture of the nasal cavity and its venous supply might help surgeons and clinicians better manage clinical entities such as posterior epistaxis, cavernous sinus infections, and perform endoscopic surgery with fewer complications.
尽管相对而言,蝶腭动脉(SPA)在医学文献中已有详尽描述,但蝶腭静脉(SPV)却很少受到关注。因此,开展了本解剖学研究。此外,我们还讨论了SPV的变异、胚胎学及临床意义。对成年尸体标本进行了SPV解剖。另外,部分标本还进行了该结构的组织学分析。发现SPV引流蝶窦和鼻中隔的血液。小分支与SPA的后鼻中隔支和鼻腭神经一起穿过鼻中隔。发现SPA和SPV穿过蝶腭孔,另一个分支穿过翼突内侧板并与位于翼突内侧板外侧的翼静脉丛相连。该静脉与SPA的鼻后外侧支和上颌神经的鼻后上外侧支一起穿过鼻腔外侧壁后部。据我们所知,这是关于人类SPV的首次解剖学研究。有关SPV的数据有助于增进对鼻腔血管网络的解剖学认识。更全面地了解鼻腔及其静脉供应情况可能有助于外科医生和临床医生更好地处理诸如鼻后出血、海绵窦感染等临床问题,并减少内镜手术的并发症。