Department of Anatomy, Division of Surgical Specialties, University Medical Center Utrecht, Utrecht University, The Netherlands.
Galvani Bioelectronics, Stevenage, UK.
Clin Anat. 2021 Apr;34(3):371-380. doi: 10.1002/ca.23643. Epub 2020 Jul 6.
The splenic plexus might represent a novel neuroimmunomodulatory therapeutic target as electrical stimulation of this tissue has been shown to have beneficial anti-inflammatory effects. Tortuous splenic artery segments (splenic artery loops), including their surrounding nerve plexus, have been evaluated as potential stimulation sites in humans. At present, however, our understanding of these loops and their surrounding nerve plexus is incomplete. This study aims to characterize the dimensions of these loops and their surrounding nerve tissue.
Six formaldehyde fixed human cadavers were dissected and qualitative and quantitative macro- and microscopic data on splenic artery loops and their surrounding nerve plexus were collected.
One or multiple loops were observed in 83% of the studied specimens. These loops, including their surrounding nerve plexus could be easily dissected free circumferentially thereby providing sufficient space for further surgical intervention. The splenic plexus surrounding the loops contained a significant amount of nerves that contained predominantly sympathetic fibers.
The results of this study support that splenic artery loops could represent suitable electrical splenic plexus stimulation sites in humans. Dimensions with respect to loop height and width, provide sufficient space for introduction of surgical instruments and electrode implantation, and, the dissected neurovascular bundles contain a substantial amount of sympathetic nerve tissue. This knowledge may contribute to further development of surgical techniques and neuroelectrode interface design.
脾丛可能代表一个新的神经免疫调节治疗靶点,因为已经证明电刺激该组织具有有益的抗炎作用。迂曲的脾动脉节段(脾动脉环),包括其周围的神经丛,已被评估为人类潜在的刺激部位。然而,目前我们对这些环及其周围的神经丛的了解并不完整。本研究旨在描述这些环及其周围神经组织的尺寸。
对 6 具福尔马林固定的人体尸体进行解剖,并收集脾动脉环及其周围神经丛的定性和定量宏观及微观数据。
在 83%的研究标本中观察到一个或多个环。这些环,包括其周围的神经丛,可以很容易地沿其周围游离解剖,从而为进一步的手术干预提供了足够的空间。环绕环的脾丛含有大量的神经,其中主要含有交感纤维。
本研究结果支持脾动脉环可以作为人类电刺激脾丛的合适部位。环的高度和宽度的尺寸提供了足够的空间来引入手术器械和电极植入,并且,解剖的神经血管束含有大量的交感神经组织。这些知识可能有助于进一步发展手术技术和神经电极界面设计。