基于同步加速器x射线ct的鸣禽鸣管三维图谱,单肌纤维分辨率表明鸣管声带的精细运动控制。

Iris Adam, Anja T Zai, Anna E Stepien, Homare Yamahachi, Christian M Schlepütz, Richard H R Hahnloser, Coen P H Elemans
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引用次数: 0

摘要

鸟类的发声是由呼吸、注射器和上声道系统的精确协调运动产生的。注射器肌肉以前所未有的分辨率控制,直到独立控制单个肌肉纤维。然而,我们目前缺乏单纤维分辨率的鸣管肌肉解剖描述。在这里,我们结合了对斑胸草雀鸣管的微米分辨率同步x射线CT扫描和独立标本的显微解剖,以在单个肌纤维水平上解析鸣管肌肉形态。我们定义了两个新的,以前未知的肌肉和更新纤维轨迹和附着位置的三个以前描述的肌肉。我们对鸣管肌肉精细解剖的新见解表明,不是一种,而是两种鸟类的声带都可以通过收缩鸣管肌肉直接控制。因此,我们的数据揭示了新的解剖学复杂性,以及声音产生的生物力学和运动控制的后果。本文是“鸟类呼吸系统生物学”专题的一部分。
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A synchrotron X-ray CT-based 3D atlas of the songbird syrinx with single muscle fibre resolution implies fine motor control of syringeal vocal folds.

Avian vocalizations are produced by precisely coordinated motion of the respiratory, syringeal and upper vocal tract systems. Syringeal muscles are controlled with unprecedented resolution, down to independent control of individual muscle fibres. However, we currently lack an anatomical description of syrinx muscles at single fibre resolution. Here, we combined a micron-resolution synchrotron X-ray CT scan of the zebra finch syrinx with micro-dissections of independent specimens to resolve syrinx muscle morphology at individual muscle fibre level. We define two new, previously unknown muscles and update the fibre trajectories and attachment sites of three previously described muscles. Our new insights into the fine anatomy of syrinx muscles show that not one, but both avian vocal folds can be directly controlled by contracting syrinx muscles. Thus, our data reveal novel anatomical complexity with consequences for the biomechanics and motor control of sound production.This article is part of the theme issue 'The biology of the avian respiratory system'.

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来源期刊
CiteScore
11.80
自引率
1.60%
发文量
365
审稿时长
3 months
期刊介绍: The journal publishes topics across the life sciences. As long as the core subject lies within the biological sciences, some issues may also include content crossing into other areas such as the physical sciences, social sciences, biophysics, policy, economics etc. Issues generally sit within four broad areas (although many issues sit across these areas): Organismal, environmental and evolutionary biology Neuroscience and cognition Cellular, molecular and developmental biology Health and disease.
期刊最新文献
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