Kerdvongbundit V, Thiradilok S, Vongsavan N, Matthews B
Department of Oral Medicine, Faculty of Dentistry, Mahidol University, Yothi Street, Bangkok 10400, Thailand.
Arch Oral Biol. 2004 Aug;49(8):613-9. doi: 10.1016/j.archoralbio.2003.11.009.
The effect of pulpal cavity pressure on structures present on etched and unetched dentine was determined in 24 human premolars in vitro. The dentine was exposed in vivo. After extraction, the pulp was removed and the crown stored in 2.5 N sodium hydroxide for 3 days to remove the odontoblasts. The pulp cavity was filled with Ringer's solution at atmospheric pressure, +30 or -5 mmHg. After 30s-5 min a silicone-rubber impression was taken of the cavity floor and a resin cast prepared and examined in a SEM. The replicas reproduced the dentine surface accurately when there was no outward flow through dentine. With a pressure of + 30 mmHg in the pulp cavity, but not at the lower pressures, droplets were present on unetched dentine after 30s. Droplets accumulated less rapidly on etched dentine, indicating that it may act as a sponge.
在体外对24颗人类前磨牙测定髓腔压力对蚀刻和未蚀刻牙本质上存在的结构的影响。牙本质在体内暴露。拔牙后,去除牙髓,将牙冠储存在2.5N氢氧化钠中3天以去除成牙本质细胞。髓腔在大气压、+30或-5mmHg下充满林格氏液。30秒至5分钟后,对髓腔底部进行硅橡胶印模,并制备树脂铸型,在扫描电子显微镜下检查。当没有通过牙本质的外流时,复制品能准确再现牙本质表面。髓腔内压力为+30mmHg时,而较低压力时则不然,30秒后未蚀刻牙本质上出现液滴。蚀刻牙本质上液滴积累得较慢,表明它可能起到海绵的作用。