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首页> 外文期刊>The international journal of biochemistry and cell biology >Single muscle fibre biomechanics and biomechatronics - The challenges, the pitfalls and the future
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Single muscle fibre biomechanics and biomechatronics - The challenges, the pitfalls and the future

机译:单肌纤维生物力学和生物学 - 挑战,陷阱和未来

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摘要

Interest in muscle biomechanics is growing with availabilities of patient biopsies and animal models related to muscle diseases, muscle wasting (sarcopenia, cachexia), exercise and drug effects. However, development of technologies or facilitated systems required to measure biomechanical and contractile properties of single fibres has not kept pace with this demand. Most studies use manual mechatronics systems that have not changed in decades and are confined to a few labs worldwide. Available commercial systems are expensive and limited in versatility, throughput and user-friendliness. We review major standard systems available from research labs and commercial sources, and benchmark those to our recently developed automated MyoRobot biomechatronics platform that provides versatility to cover multiple organ scales, is flexible in programming for active/passive muscle biomechanics using custom-made graphics user interfaces, employs on-the-fly data analyses and does not rely on external research microscopes. With higher throughput, this system blends Industry 4.0 automation principles into myology.
机译:对肌肉生物力学的兴趣随着患者活检和与肌肉疾病有关的动物模型而生长,肌肉浪费(Sarcopenia,Cachexia),运动和药物影响。然而,衡量单纤维的生物力学和收缩性能所需的技术或促进系统的开发并未与这种需求保持速度。大多数研究使用数十年没有改变的手动机电一体化系统,并限制在全球范围内的一些实验室。可用的商业系统昂贵且有限的多功能性,吞吐量和用户友好性。我们审查了研究实验室和商业来源的主要标准系统,并基准于我们最近开发的自动化Myorobot BioMechatronatronics平台,为覆盖多个器官秤提供多功能性,这对于使用定制的图形用户界面的主动/被动肌肉生物力学的编程灵活,采用在线数据分析,并不依赖于外部研究显微镜。吞吐量较高,该系统将行业4.0自动化原则融入神经科。

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