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牙本质液及其生理病理学意义的研究进展 被引量:4
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作者 常蓓 徐晓薇 +4 位作者 王丹丹 张雪 丛明宇 王班超 孙宏晨 《牙体牙髓牙周病学杂志》 CAS 北大核心 2014年第6期367-370,362,共5页
牙本质液是存在于牙本质小管内的微量流体,其确切成分尚不明确。牙本质液在牙本质小管内自牙髓向浅层牙本质流动形成的牙髓正压力是保证牙髓-牙本质微环境内稳态的生理学基础。目前普遍认为,牙本质液发生异常流动是牙本质感觉过敏症产... 牙本质液是存在于牙本质小管内的微量流体,其确切成分尚不明确。牙本质液在牙本质小管内自牙髓向浅层牙本质流动形成的牙髓正压力是保证牙髓-牙本质微环境内稳态的生理学基础。目前普遍认为,牙本质液发生异常流动是牙本质感觉过敏症产生的病理学基础;此外,牙本质液自内而外流动产生的正向组织压还可影响牙体组织修复粘结的效率。本文以牙本质液的生理、病理学性质为基础,就牙本质感觉过敏症的发生机制以及牙本质液影响修复粘结效率的研究进展作一综述。 展开更多
关键词 牙本质液 牙髓内稳态 牙本质感觉过敏症 粘结
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The race to the nociceptor: mechanical versus temperature effects in thermal pain of dental neurons 被引量:1
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作者 Min Lin Fusheng Liu +4 位作者 Shaobao Liu Changchun Ji Ang Li Tian Jian Lu Feng Xu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2017年第2期260-266,共7页
The sensing of hot and cold stimuli by dental neurons differs in several fundamental ways. These sensations have been characterized quantitatively through the measured time course of neural discharge signals that resu... The sensing of hot and cold stimuli by dental neurons differs in several fundamental ways. These sensations have been characterized quantitatively through the measured time course of neural discharge signals that result from hot or cold stimuli applied to the teeth of animal models. Although various hypotheses have been proposed to explain the underlying mechanism, the ability to test competing hypotheses against experimental recorded data using biophysical models has been hindered by limitations in our understanding of the specific ion channels involved in nociception of dental neurons. Here we apply recent advances in established biophysical models to test the competing hypotheses. We show that a sharp shooting pain sensation experienced shortly following cold stimulation cannot be attributed to the activation of thermosensitive ion channels, thereby falsifying the so-called neuronal hypothesis, which states that rapidly transduced sensations of coldness are related to thermosensitive ion channels. Our results support a central role of mechanosensitive ion channels and the associated hydrodynamic hypothesis. In addition to the hydrodynamic hypothesis, we also demonstrate that the long time delay of dental neuron responses after hot stimulation could be attributed to the neuronal hypothesis-that a relatively long time is required for the temperature around nociceptors to reach some threshold. The results are useful as a model of how multiphysical phenomena can be combined to provide mechanistic insight into different mechanisms underlying pain sensations. 展开更多
关键词 THERMOMECHANICS dentinal fluid flow Dental neuron Neural discharge pattern Time delay
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