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Physical energies to the rescue of damaged tissues 被引量:2
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作者 Federica Facchin Silvia Canaider +7 位作者 Riccardo Tassinari Chiara Zannini Eva Bianconi Valentina Taglioli Elena Olivi Claudia Cavallini Marco Tausel Carlo Ventura 《World Journal of Stem Cells》 SCIE CAS 2019年第6期297-321,共25页
Rhythmic oscillatory patterns sustain cellular dynamics, driving the concerted action of regulatory molecules, microtubules, and molecular motors. We describe cellular microtubules as oscillators capable of synchroniz... Rhythmic oscillatory patterns sustain cellular dynamics, driving the concerted action of regulatory molecules, microtubules, and molecular motors. We describe cellular microtubules as oscillators capable of synchronization and swarming, generating mechanical and electric patterns that impact biomolecular recognition. We consider the biological relevance of seeing the inside of cells populated by a network of molecules that behave as bioelectronic circuits and chromophores. We discuss the novel perspectives disclosed by mechanobiology, bioelectromagnetism, and photobiomodulation, both in term of fundamental basic science and in light of the biomedical implication of using physical energies to govern (stem) cell fate. We focus on the feasibility of exploiting atomic force microscopy and hyperspectral imaging to detect signatures of nanomotions and electromagnetic radiation (light), respectively, generated by the stem cells across the specification of their multilineage repertoire. The chance is reported of using these signatures and the diffusive features of physical waves to direct specifically the differentiation program of stem cells in situ, where they already are resident in all the tissues of the human body. We discuss how this strategy may pave the way to a regenerative and precision medicine without the needs for (stem) cell or tissue transplantation. We describe a novel paradigm based upon boosting our inherent ability for self-healing. 展开更多
关键词 Stem cells PHYSICAL ENERGIES mechanical forces Electric FIELDS ELECTROMAGNETIC FIELDS ELECTROMAGNETIC radiation PHOTOBIOMODULATION damaged TISSUES
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根据损伤扩展力预测压电断裂载荷
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作者 杨新华 董靓 +1 位作者 陈传尧 胡元太 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2006年第3期85-87,共3页
运用连续损伤理论,提出了两种预测压电断裂载荷的模型.模型1以力损伤扩展力作为依据;模型2则以力电损伤扩展力的线性组合作为依据.分析发现,模型2预测的断裂载荷比模型1标准差更小,因此力电损伤扩展力对断裂都有影响.从模型2的参数中可... 运用连续损伤理论,提出了两种预测压电断裂载荷的模型.模型1以力损伤扩展力作为依据;模型2则以力电损伤扩展力的线性组合作为依据.分析发现,模型2预测的断裂载荷比模型1标准差更小,因此力电损伤扩展力对断裂都有影响.从模型2的参数中可以看出,力损伤扩展力比电损伤扩展力对压电断裂的影响更大. 展开更多
关键词 压电材料 损伤本构模型 力电损伤扩展力 断裂载荷
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