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Titlebook: Biomechanics in Oncology; Cheng Dong,Nastaran Zahir,Konstantinos Konstantopo Book 2018 Springer Nature Switzerland AG 2018 Biomaterials in

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Zusammenfassung der Ergebnisse und Ausblick,chanics by providing both physical and chemical stimulation. This tumor microenvironment, which is both dynamic and heterogeneous in nature, plays a critical role in cancer progression from the growth of the primary tumor to the development of metastatic and drug-resistant tumors. This chapter provi
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https://doi.org/10.1007/978-3-322-81691-7om the immune system and cancer development. Elucidating the role of immune cells in the progression of cancer has been very challenging due to their dual role; the immune system can either suppress tumor formation by killing cancer cells, or it can also promote tumor growth. Revealing how immune ce
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https://doi.org/10.1007/978-3-663-10538-1. Motivated by decades of direct observation of cell migration via light microscopy, theoretical models have emerged to capture various aspects of the fundamental physical phenomena underlying cell migration. Yet, the motility mechanisms actually used by tumor cells during invasion are still poorly
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https://doi.org/10.1007/978-3-322-81091-5ional monolayer cultures cannot recapitulate the complex microenvironment and chemical and mechanical cues that tumor cells experience during their metastatic journey, nor the complexity of their interactions with other, noncancerous cells. As alternative approaches, various engineered models have b
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https://doi.org/10.1007/978-3-663-08657-4he hemostatic role of platelets may be hijacked to stimulate disease progression. In 1865, Armand Trousseau was a pioneer in establishing the platelet-cancer metastasis relationship, which he eventually termed as Trousseau’s Syndrome to describe the deregulation of the hemostasis-associated pathways
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