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本文引用的文献

1
Distribution of Pacini-Like Lamellar Corpuscles in the Vascular Sheath of the Femoral Artery.股动脉血管鞘中 Pacini 样板层小体的分布。
Anat Rec (Hoboken). 2018 Nov;301(11):1809-1814. doi: 10.1002/ar.23934. Epub 2018 Oct 8.
2
Pacinian Corpuscles in Human Lymph Nodes.人类淋巴结中的帕氏小体
Anat Rec (Hoboken). 2017 Dec;300(12):2233-2238. doi: 10.1002/ar.23679. Epub 2017 Aug 18.
3
A multiphysics model of the Pacinian corpuscle.帕西尼小体的多物理场模型。
Integr Biol (Camb). 2016 Nov 7;8(11):1111-1125. doi: 10.1039/c6ib00157b.
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The origin of Korotkoff sounds and the accuracy of auscultatory blood pressure measurements.柯氏音的起源及听诊法测量血压的准确性。
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Three-dimensional bending, torsion and axial compression of the femoropopliteal artery during limb flexion.在肢体弯曲过程中股浅动脉的三维弯曲、扭转和轴向压缩。
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Hairy sensation.毛发感觉异常。
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KCNQ4 K(+) channels tune mechanoreceptors for normal touch sensation in mouse and man.KCNQ4 K(+) 通道调节机械感受器,以产生小鼠和人类的正常触觉。
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Neuroreceptors in the tissues of the knee joint.膝关节组织中的神经受体。
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Immunohistochemical profile of human pancreatic pacinian corpuscles.人类胰腺帕西尼小体的免疫组织化学特征。
Pancreas. 2010 Apr;39(3):403-10. doi: 10.1097/MPA.0b013e3181bc0372.
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The role of fingerprints in the coding of tactile information probed with a biomimetic sensor.用仿生传感器探究指纹在触觉信息编码中的作用。
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沿上臂深部动脉分布的板层感觉小体与血管搏动感之间的关系。

Relationship between lamellar sensory corpuscles distributed along the upper arm's deep arteries and pulsating sensation of blood vessels.

机构信息

Department of Anatomy and Cell Biology, Hyogo College of Medicine, Nishinomiya, Hyogo, Japan.

出版信息

J Anat. 2021 Jul;239(1):101-110. doi: 10.1111/joa.13398. Epub 2021 Feb 1.

DOI:10.1111/joa.13398
PMID:33527396
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8197943/
Abstract

Vibration is detected by mechanoreceptors, including Pacinian corpuscles (PCs), which are widely distributed in the human body including the adventitia of large blood vessels. Although the distribution of PCs around large limb vessels has been previously reported, there remains no consensus on their distribution in the adventitia of the human deep blood vessels in the upper arm. In addition, the physiological functions of PCs located around the deep limb blood vessels remain largely unknown. This study aimed to elucidate detailed anatomical features and physiological function of lamellar sensory corpuscles structurally identified as PCs using the immunohistochemical methods around the deep vessels in the upper arm. We identified PCs in the connective tissue adjacent to the deep vessels in the upper arm using histological analysis and confirmed that PCs are located in the vascular sheath of the artery and its accompanying vein as well as in the connective tissue surrounding the vascular sheath and nerves. PCs were densely distributed on the distal side of deep vessels near the elbow. We also examined the relationship between vascular sound and pulsating sensation to evaluate the PCs functions around deep arteries and veins and found that the vascular sound made by pressing the brachial arteries in the upper arm was associated with the pulsating sensation of the examinee. Our results suggest that PCs, around deep vessels, function as bathyesthesia sensors by detecting vibration from blood vessels.

摘要

振动由机械感受器检测,包括Pacinian 小体(PC),它们广泛分布于人体,包括大血管的外膜。尽管先前已经报道了 PC 在大肢体血管外膜周围的分布,但在人类上臂深部血管外膜中 PC 的分布仍没有共识。此外,位于深部肢体血管周围的 PC 的生理功能在很大程度上仍然未知。本研究旨在使用免疫组织化学方法阐明在上臂深部血管周围结构上鉴定为 PC 的板层感觉小体的详细解剖特征和生理功能。我们使用组织学分析在上臂深部血管附近的结缔组织中鉴定出 PC,并证实 PC 位于动脉及其伴行静脉的血管鞘内以及血管鞘和神经周围的结缔组织中。PC 在靠近肘部的深部血管的远端侧密集分布。我们还检查了血管声音与搏动感觉之间的关系,以评估深部动脉和静脉周围的 PC 功能,发现按压上臂肱动脉时产生的血管声音与受检者的搏动感觉有关。我们的结果表明,位于深部血管周围的 PC 通过检测血管振动来充当深部感觉传感器。