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用于 Reinke 空间的注射剂在 1400Hz 以下的粘弹性预测发音阈值压力。

Phonation threshold pressure predictions using viscoelastic properties up to 1,400 Hz of injectables intended for Reinke's space.

机构信息

Department of Communication Sciences and Disorders, The University of Iowa, 334B SHC, Iowa City, IA 52242, USA.

出版信息

Laryngoscope. 2010 May;120(5):995-1001. doi: 10.1002/lary.20877.

Abstract

OBJECTIVES/HYPOTHESIS: Viscoelastic properties of numerous vocal fold injectables have been reported but not at speaking frequencies. For materials intended for Reinke's space, ramifications of property values are of great concern because of their impact on ease of voice onset. Our objectives were: 1) to measure viscoelastic properties of a new nonresorbing carbomer and well-known vocal fold injectables at vocalization frequencies using established and new instrumentation, and 2) to predict phonation threshold pressures using a computer model with intended placement in Reinke's space.

STUDY DESIGN

Rheology and phonation threshold pressure calculations.

METHODS

Injectables were evaluated with a traditional rotational rheometer and a new piezo-rotary vibrator. Using these data at vocalization frequencies, phonation threshold pressures (PTP) were calculated for each biomaterial, assuming a low dimensional model with supraglottic coupling and adjusted vocal fold length and thickness at each frequency. Results were normalized to a nominal PTP value.

RESULTS

Viscoelastic data were acquired at vocalization frequencies as high as 363 to 1,400 Hz for six new carbomer hydrogels, Hylan B, and Extracel intended for vocal fold Reinke's space injection and for Cymetra (lateral injection). Reliability was confirmed with good data overlap when measuring with either rheometer. PTP predictions ranged from 0.001 to 16 times the nominal PTP value of 0.283 kPa.

CONCLUSIONS

Accurate viscoelastic measurements of vocal fold injectables are now possible at physiologic frequencies. Hylan B, Extracel, and the new carbomer hydrogels should generate easy vocal onset and sustainable vocalization based on their rheologic properties if injected into Reinke's space. Applications may vary depending on desired longevity of implant. Laryngoscope, 2010.

摘要

目的/假设:许多声带注射剂的粘弹性特性已经被报道,但不是在说话频率下。对于用于 Reinke 空间的材料,由于其对发声起始难易程度的影响,属性值的变化非常重要。我们的目的是:1)使用已建立和新的仪器在发声频率下测量新的非吸收性卡波姆和著名的声带注射剂的粘弹性特性,2)使用计算机模型预测声门阈压,该模型旨在放置在 Reinke 空间中。

研究设计

流变学和声门阈压计算。

方法

使用传统的旋转流变仪和新的压电旋转振动器评估注射剂。使用这些在发声频率下的数据,为每种生物材料计算声门阈压(PTP),假设在每个频率下具有声门上耦合和调整声带长度和厚度的低维模型。结果归一化为标称 PTP 值。

结果

为六种新的卡波姆水凝胶、Hylan B 和 Extracel 以及用于声带 Reinke 空间注射的 Cymetra(侧向注射)测量了高达 363 至 1400 Hz 的粘弹数据,以发声频率。当使用两种流变仪进行测量时,确认了良好的数据重叠,可靠性很高。PTP 预测值范围从标称 PTP 值 0.283 kPa 的 0.001 到 16 倍。

结论

现在可以在生理频率下对声带注射剂进行准确的粘弹性测量。如果将 Hylan B、Extracel 和新的卡波姆水凝胶注入 Reinke 空间,根据它们的流变特性,应该能够轻松产生发声起始和可持续发声。应用可能会因植入物的预期寿命而有所不同。喉镜,2010 年。

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