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Possible Directions of Further Development of F.Ya. Dzerzhinsky's Program in Research on the Jaw Apparatus of Birds

机译:F.YA的进一步发展的可能方向。 Dzerzhinsky在研究鸟类颚箱的研究方案

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The works by F.Ya. Dzerzhinsky and his disciples have rendered the jaw apparatus of birds a conventional and thoroughly characterized research object for functional morphology in Russia. The author, who communicated with Dzerzhinsky for many years, attempts to reconsider his scientific heritage in a critical manner and to use it as a foundation for outlining the most promising directions of further research. The analysis shows that underestimation of the problem of muscle mass economy in the jaw apparatus, despite the critical importance of any excess ballast for birds, was a serious drawback of Dzerzhinsky's method. A new model based on the separation of the kinematics of bill opening and food object compression provides a solution for the problem of economical use of muscle mass in the avian jaw apparatus. The length of the major jaw adductor muscles remains virtually unchanged when the bill is opened, so that these muscles act as inextensible links of the closed multilink kinematic chain of the kinetic skull. Length change upon mouth opening being unnecessary, these muscles can be short-fibered, that is, lightweight but strong. The large force of these muscles is only used by the bird when the object is fixed in the bill and the jaw joint locking mechanism is switched on; a different kinematic chain used for object compression only is formed in this case. If the nonparallel arrangement of the pterygoid muscle and the jugal bar is also taken into account, the avian capacity for using the full force potential of the jaw adductor muscles without careful adjustment to each food object and the specific conditions of food object capturing becomes easy to understand. The main elements of the proposed model, which were found out by Dzerzhinsky himself, acquire a new meaning in light of the concept of economical use of the muscle mass. This enables us to make a major generalization concerning the adaptive significance of the cranial kinesis in birds as a means of reducing the jaw adductors' mass without decreasing their force. In addition to the new model of jaw mechanics, other promising directions are proposed for the development of Dzerzhinsky's work based on the expansion of the set of methods. The analysis of the aponeurotic framework of jaw muscles from the standpoint of optimizing the spatial packaging of muscle fibers may be a promising topic for research based on a combination of computer tomography and computational modeling.
机译:F.Ya的作品。 Dzerzhinsky和他的门徒已经使鸟类鸟类的爪子装置成为俄罗斯功能形态的常规和彻底特征的研究对象。与Dzzerzhinsky多年沟通的作者试图以批判方式重新考虑他的科学遗产,并将其作为概述进一步研究最有希望的方向的基础。分析表明,尽管任何多余的镇流器对鸟类的重要性致力于,但仍在低估了颚袋装置中的肌肉质量经济问题,这是Dzerzhinsky的方法的严重缺点。基于比尔开口和食物对象压缩的运动学分离的新模型为禽钳口设备中肌肉质量的经济利用问题提供了解决方案。当票据打开时,主要颚膜内接合肌的长度几乎保持不变,使这些肌肉充当动力学头骨的封闭式Mullink运动链中的不可延伸联系。嘴巴打开的长度变化是不必要的,这些肌肉可以是短纤维,即重量轻,但坚强。当物体固定在纸币中时,这些肌肉的大力量仅被鸟类使用,并且钳口关节锁定机构接通;在这种情况下,仅形成用于物体压缩的不同运动链。如果翼形肌肉和杂志的非平行排列也被考虑,则使用颚膜内膜肌肉的全力电位的禽类能力而不仔细调整每种食物物体,以及食物对象捕获的具体条件变得容易理解。由Dzerzhinsky本人发现的拟议模型的主要元素,鉴于肌肉质量的经济利用概念,获得了新的含义。这使我们能够在鸟类中提出颅脑的适应性意义,作为减少颚黏合用物质量而不降低其力的手段。除了新型的颚式力学模型外,还提出了基于该组方法的扩展的Dzerzhinsky的工作发展。从优化肌纤维的空间包装的观点来看,颌骨浮性骨架的分析可能是基于计算机断层扫描和计算建模的组合研究的有希望的研究。

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