Shrout M K, Powell B J, Hildebolt C F, Vannier M W, Ahmed N M
Medical College of Georgia, School of Dentistry, Augusta 30912-1241.
J Clin Periodontol. 1993 Sep;20(8):595-600. doi: 10.1111/j.1600-051x.1993.tb00777.x.
Previous studies have demonstrated that accurate alveolar bone-level measurements can be made using digitally enhanced bitewing radiographs. In this study, we determined the effect of exposure variations on bone-level measurement accuracy using digital radiographic images of dry skulls. 6 direct bone-level measurements on the mandibular 1st molars of dry skulls were established by consensus of 2 expert observers. 13 bitewing radiographs were taken on each side of 11 skulls, using a specially designed positioning device. Exposure settings of 70 kVp, 10 mA, and 24 impulses were empirically chosen as the baseline. Kilovoltage and impulses times were individually varied (50 to 100 kVp in 10 kV increments and 15 to 48 impulses in 6 steps) to ensure a wide range of clinically relevant optical densities on the test images. The radiographs were digitized and alveolar bone level measurements, corresponding to those for skulls, were made on the images by 2 observers. Pearson product-moment coefficients between radiographs and criteria measurements were calculated. It was found that dry skull and digital bitewing radiographic measurements were highly correlated, within the limits of exposure parameter variations tested. Accurate measurements of alveolar bone level are possible from bitewing radiographs taken within a wide range of exposures, when digital image processing techniques are employed.
以往研究表明,使用数字增强型咬合翼片可以进行准确的牙槽骨水平测量。在本研究中,我们使用干燥颅骨的数字射线照片确定了曝光变化对骨水平测量准确性的影响。通过2名专家观察者的共识,在干燥颅骨的下颌第一磨牙上建立了6个直接骨水平测量点。使用专门设计的定位装置,对11个颅骨的每一侧拍摄13张咬合翼片。经验性地选择70 kVp、10 mA和24次脉冲的曝光设置作为基线。千伏和脉冲时间分别变化(以10 kV的增量从50到100 kVp,分6步从15到48次脉冲),以确保测试图像上有广泛的临床相关光学密度。将射线照片数字化,由2名观察者在图像上进行与颅骨测量相对应的牙槽骨水平测量。计算射线照片与标准测量之间的Pearson积矩系数。结果发现,在测试的曝光参数变化范围内,干燥颅骨和数字咬合翼片射线照相测量结果高度相关。当采用数字图像处理技术时,在广泛的曝光范围内拍摄的咬合翼片可以准确测量牙槽骨水平。