首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >Vocal dose measures: quantifying accumulated vibration exposure in vocal fold tissues.
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Vocal dose measures: quantifying accumulated vibration exposure in vocal fold tissues.

机译:人声剂量测量:量化声带组织中累积的振动暴露。

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To measure the exposure to self-induced tissue vibration in speech, three vocal doses were defined and described: distance dose, which accumulates the distance that tissue particles of the vocal folds travel in an oscillatory trajectory; energy dissipation dose, which accumulates the total amount of heat dissipated over a unit volume of vocal fold tissues; and time dose, which accumulates the total phonation time. These doses were compared to a previously used vocal dose measure, the vocal loading index, which accumulates the number of vibration cycles of the vocal folds. Empirical rules for viscosity and vocal fold deformation were used to calculate all the doses from the fundamental frequency (F0) and sound pressure level (SPL) values of speech. Six participants were asked to read in normal, monotone, and exaggerated speech and the doses associated with these vocalizations were calculated. The results showed that large F0 and SPL variations in speech affected the dose measures, suggesting that accumulation of phonation time alone is insufficient. The vibration exposure of the vocal folds in normal speech was related to the industrial limits for hand-transmitted vibration, in which the safe distance dose was derived to be about 500 m. This limit was found rather low for vocalization; it was related to a comparable time dose of about 17 min of continuous vocalization, or about 35 min of continuous reading with normal breathing and unvoiced segments. The voicing pauses in normal speech and dialogue effectively prolong the safe time dose. The derived safety limits for vocalization will likely require refinement based on a more detailed knowledge of the differences in hand and vocal fold tissue morphology and their response to vibrational stress, and on the effect of recovery of the vocal fold tissue during voicing pauses.
机译:为了测量在语音中自我感应的组织振动的暴露程度,定义并描述了三种声音剂量:距离剂量,它累积了声带组织颗粒在振荡轨迹中的行进距离;能量消散剂量,该能量消散剂量是在单位体积的声带组织上累积的总热量;和时间剂量,它累积了总发声时间。将这些剂量与以前使用的人声剂量测量值(人声负荷指数)进行比较,该测量值会累加人声折叠的振动周期数。使用黏度和人声折痕变形的经验规则,根据语音的基本频率(F0)和声压级(SPL)值计算所有剂量。要求六名参与者朗读正常,单调和夸张的语音,并计算与这些发声相关的剂量。结果表明,语音中较大的F0和SPL变化会影响剂量测量,表明仅发声时间的累积是不够的。正常语音中声带的振动暴露与手传递振动的工业极限有关,其中安全距离剂量约为500 m。发现该限制对于发声而言相当低;这与持续发声约17分钟的可比时间剂量有关,或者在正常呼吸和未发声的情况下持续朗读约35分钟。语音在正常的语音和对话中暂停会有效延长安全时间。基于对手和声带组织形态的差异及其对振动压力的响应以及在声部停顿期间声带组织恢复的影响的更详细知识,可能需要对声带的安全限值进行细化。

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