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[在钻磨孤立的颞骨岩部时测量通过身体传播的声音(作者译)]

[Measurement of sound transmitted through the body while drilling and grinding isolated petrous temporal bone (author's transl)].

作者信息

Paulsen K, Vietor K

出版信息

Arch Otorhinolaryngol. 1975 Jul 8;209(3):159-68. doi: 10.1007/BF00453771.

DOI:10.1007/BF00453771
PMID:1242644
Abstract

Measurements of the effect of rotating drills and grinders on isolated fresh temporal bone on the sound transmitted through the body have not previously been made known. In contrast to measurement of air-conducted sound, they include the portion of sound which effects the hearing apparatus of the patient through the bone during the process of drilling the temporal bobe. Measurements were made with a calibrated acceleration pick-up in conjunction with a precision sound level meter (test amplifier with sound frequency analyser). The recording was made continuously between 20 Hz and 20 000 Hz. The range between 250 Hz and 8000 Hz was examined mathematically. Above 8000 Hz the curves dropped markedly, apart from a few exceptions. The level of the sound depends largely on the size of the drill bit, and consequently on the breadth and depth of the rotating cutting edges. The smaller drill heads produce a considerably smaller quantity of sound. The highest level of sound comes from the burrs and wing-cutters. The diamond head lies lower in the scale, but almost equals the effect of the steel drills. The speed of rotation of the drill head plays only a subordinate role. Between 16 000 and 80 000 r.p.m. the values are the same. In the region of 10 000 r.p.m. the sound level is frequently reduced, even if a few loud peaks may still occur here. The type of drilling machine, the handpiece or transmission handpiece used have no effect. Altogether, the rotary drill produces less sound transmitted to the inner ear through the body than through the air.

摘要

此前尚未有关于旋转钻头和磨轮机对离体新鲜颞骨进行操作时,经身体传导的声音影响的测量报道。与气导声音测量不同的是,它们包括在钻颞骨过程中经骨骼影响患者听觉器官的那部分声音。测量使用了校准过的加速度传感器,并结合精密声级计(带有声频分析仪的测试放大器)进行。记录在20赫兹至20000赫兹之间持续进行。对250赫兹至8000赫兹的范围进行了数学分析。除少数例外情况外,8000赫兹以上曲线明显下降。声音的强度在很大程度上取决于钻头的尺寸,因而取决于旋转切削刃的宽度和深度。较小的钻头产生的声音量要少得多。声音强度最高的来自毛刺钻和翼形铣刀。金刚石钻头的声音强度较低,但几乎与钢钻头的效果相当。钻头的转速仅起次要作用。在每分钟16000转至80000转之间,数值相同。在每分钟10000转左右,声级常常会降低,即便此处仍可能出现一些较大的峰值。所使用的钻孔机类型、手持件或传动手持件并无影响。总体而言,旋转钻头经身体传导至内耳的声音比经空气传导的要少。

相似文献

1
[Measurement of sound transmitted through the body while drilling and grinding isolated petrous temporal bone (author's transl)].[在钻磨孤立的颞骨岩部时测量通过身体传播的声音(作者译)]
Arch Otorhinolaryngol. 1975 Jul 8;209(3):159-68. doi: 10.1007/BF00453771.
2
[Noise level measurements of the air noise during drilling and grinding on the fresh isolated temporal bone (author's transl)].
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引用本文的文献

1
Drill-induced Cochlear Injury During Otologic Surgery: Intracochlear Pressure Evidence of Acoustic Trauma.耳科手术中钻孔引起的耳蜗损伤:声学创伤的耳蜗内压力证据
Otol Neurotol. 2017 Aug;38(7):938-947. doi: 10.1097/MAO.0000000000001474.
2
[High frequency cinematographic investigations of the mode of operation of common drilling instruments on bone and cartilage (author's transl)].[普通钻孔器械对骨骼和软骨操作模式的高频电影摄影研究(作者译)]
Arch Otorhinolaryngol. 1976 Jul 20;212(3):163-70. doi: 10.1007/BF00456693.
3
[High frequency cinematographic investigations of the mode of operation of common grinding instruments on bone and cartilage (author's transl)].

本文引用的文献

1
Real ear versus artificial mastoid methods of calibration of bone-conduction vibrators.骨导振动器校准的真耳与人工乳突方法
J Speech Hear Res. 1967 Sep;10(3):405-16. doi: 10.1044/jshr.1003.405.
2
Effects of vibrator types and their placement on bone-conduction threshold measurements.振动器类型及其放置位置对骨导阈值测量的影响。
J Acoust Soc Am. 1967 Apr;41(4):788-92. doi: 10.1121/1.1910408.
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[Movement of the stapes footplate in drilling injuries of the ear ossicle chain].[镫骨足板在听骨链钻孔损伤中的运动]
[普通磨削器械对骨骼和软骨作用方式的高频电影摄影研究(作者译)]
Arch Otorhinolaryngol. 1977 Jan 19;214(3):191-8. doi: 10.1007/BF00458314.
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