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牙本质和牙髓中神经与流体动力机制之间的相互作用。

Interactions between neural and hydrodynamic mechanisms in dentine and pulp.

作者信息

Matthews B, Vongsavan N

机构信息

Department of Physiology, School of Medical Sciences, University of Bristol, England.

出版信息

Arch Oral Biol. 1994;39 Suppl:87S-95S. doi: 10.1016/0003-9969(94)90193-7.

Abstract

Evidence is presented that the rate of inward diffusion of chemicals through exposed dentine is affected by the rate of outward flow of fluid through the dentinal tubules. Such a flow has been demonstrated in cats. The flow rate appears to depend upon the pulpal tissue-fluid pressure; flow increased during pulp vasodilatation and decreased, even reversing in direction, during vasoconstriction. Pulp vasodilatation can be produced by stimulating intradental afferent nerves, including some of those that seem to be excited by displacement of tubule contents (i.e. by a hydrodynamic mechanism). Thus, when dentine is exposed and these afferents are stimulated they will help to protect the pulp by producing reflex vasodilatation, which will decrease the rate of diffusion of toxins from the mouth into the pulp. The relation between the rate of flow through dentine and the discharge evoked in intradental nerves was investigated in cats. Single fibres were more sensitive to outward than to inward flow. The flow rates required to excite the pulp afferents were greater than those observed during even maximal pulpal vasodilatation.

摘要

有证据表明,化学物质通过暴露牙本质的内向扩散速率受液体通过牙本质小管的外向流动速率影响。这种流动已在猫身上得到证实。流速似乎取决于牙髓组织液压力;在牙髓血管舒张时流速增加,而在血管收缩时流速降低,甚至方向逆转。刺激牙内传入神经,包括一些似乎因小管内容物移位(即通过流体动力机制)而兴奋的神经,可引起牙髓血管舒张。因此,当牙本质暴露且这些传入神经受到刺激时,它们将通过产生反射性血管舒张来帮助保护牙髓,这将降低毒素从口腔扩散到牙髓的速率。在猫身上研究了通过牙本质的流速与牙内神经放电之间的关系。单根纤维对外向流动比内向流动更敏感。激发牙髓传入神经所需的流速大于即使在最大牙髓血管舒张时观察到的流速。

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