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The descended larynx and the descending larynx

机译:下降的喉部和下降喉部X

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Our understanding of the evolution of human speech has been expanded by an increased knowledge of vocal anatomy and physiology in non-human primates. Comparative approaches provide evidence supporting the primate origins of many speech faculties. The descent of the larynx enables the two-tube configuration of the supralaryngeal vocal tract (SVT) in humans; however, this configuration is also found in chimpanzees and macaques. The acoustic properties of voices produced in helium gas support the view that vocalizations are usually produced through SVT resonance, with the sound source generated by vibration of the vocal folds in gibbons and marmosets, as seen in human speech. Nonhuman primates produce a wider range of vocal repertoire than previously thought, reflecting their varied manipulations of the vocal apparatus to modify SVT topology. These species often actively descend the hyoid and larynx to produce calls. This 'active' descent is one of the options for SVT modification in non-human primates. However, this is distinct from human speech, where a 'static' descended larynx moves in a restricted range during speech. Instead, humans modify SVT configuration by combinations of contraction and relaxation of the tongue muscles, to produce their vocal acoustics. The components of the vocal apparatus act under the constraint of anatomy, and various associations of anatomy and vocal actions are expected to be found in a variety of types of vocalization in non -human primates. Increasing knowledge of their anatomy and physiology promises better understanding of primate origins and of the evolutionary history of physical faculties in human speech.
机译:我们对人类演讲演变的理解已经通过非人类灵长类动物的语音解剖学和生理学的增加来扩展。比较方法提供了支持许多语音院系的灵长类动物来源的证据。喉头的下降使人体中的Supraliaral Pocal Daract(SVT)的双管配置能够;但是,这种配置也在黑猩猩和猕猴中找到。氦气中产生的声音的声学特性支持发声通常通过SVT共振产生的视野,并且在人类演讲中看到的声带和Marmosets的声带振动产生的声源。非人类灵长类动物生产比以前认为更广泛的声音曲目,反映了它们改变SVT拓扑的各种操纵。这些物种经常积极下降触题和喉部产生呼叫。这个“主动”血统是非人类灵长类动物的SVT修改的选项之一。然而,这与人类语音不同,其中“静态”下降喉部在语音期间在受限制范围内移动。相反,人类通过舌头肌肉的收缩和放松的组合来修改SVT配置,以产生其声音声学。在解剖学的约束下,声带设备的组件,以及预期在非人印象中的各种类型的发声中发现了解剖学和声学作用的各种关联。越来越多地了解他们的解剖和生理学的知识承诺更好地了解灵长类动物来源以及人类演讲中的物理院系的进化史。

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