Wilson C E, Vaidyanathan T K, Cinotti W R, Cohen S M, Wang S J
Department of Mechanical Engineering, New Jesey Institute of Technology, Newark 07102.
J Dent Res. 1990 Feb;69(2):489-93. doi: 10.1177/00220345900690021401.
The use of high-speed air-turbine handpieces, operated at 300,000 to 400,000 revolutions per minute, has led to concern over the possibility of noise-induced hearing loss. Sound levels were measured in clinical settings and in a pre-clinical laboratory for estimation of hearing-damage risk among dentists, and the extent of communication interference. Octave-band sound pressure levels were obtained with use of a Fast-Fourier-Transform analyzer and associated instrumentation. The results of this study indicate that the sound energy contribution of a typical dental practice is about 8% to 12% of the dentist's average 24-hour noise exposure. However, noise levels during dental procedures result in an articulation index of 0.21 to 0.37, corresponding to understanding of about 18% to 48% of nonsense syllables and 52% to 90% of sentences. It appears that hearing-damage risk is slight among dentists using modern equipment. However, further noise control in handpieces is necessary so that error-free communication during dental procedures can be ensured.
使用转速为每分钟30万至40万转的高速气涡轮手机引发了人们对噪声性听力损失可能性的担忧。在临床环境和临床前实验室中测量了声级,以评估牙医中听力损伤风险以及交流干扰程度。使用快速傅里叶变换分析仪及相关仪器获得了倍频程声压级。本研究结果表明,典型牙科诊疗操作的声能贡献约占牙医平均24小时噪声暴露的8%至12%。然而,牙科操作过程中的噪声水平导致清晰度指数为0.21至0.37,这相当于对约18%至48%的无意义音节和52%至90%的句子的理解程度。使用现代设备的牙医中听力损伤风险似乎较小。然而,有必要进一步控制手机的噪声,以确保牙科操作过程中能进行无差错交流。