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Killer Cell Dynamics

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Killer Cell Dynamics
Lowest price (incl. delivery)
154,99 EUR
Typical price130,05 PLN
Lowest (90 days)36,45 PLN
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Last updated1週間前
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Price history (90 days)
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2026-08-08 2026-08-15
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更新日時価格
2026-08-0836,45
2026-08-15141,78
販売者 Product price Delivery 合計 在庫状況 Updated
VI VitalSource 129,99 EUR 25,00 EUR 154,99 EUR 在庫あり 1週間前 View offer
SP SpringerNatureLink Shop INT 141,78 EUR 15,00 EUR 156,78 EUR 在庫あり 6日前 View offer
SP Springer Nature Author 141,78 EUR 19,00 EUR 160,78 EUR 在庫あり 1週間前 View offer

価格や在庫状況は変更される場合があります。 最終更新: 08.08.2026 22:18.

EAN 9780387308937
Springer Nature
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Systems biology and computational biology have recently become prominent areas of research in the biomedical community, especially in the area of cell biology. Given that much information on genes and their protein products has become available, the big question is how the individual components interact and work together, and how this determines the functioning of cells, organs, and organisms. Long before the popularity of systems biology in biomedicine, however, such approaches have been used successfully in a di?erent area of biology: population ecology. Research in the area of population dynamics - vestigated complex interactions between di?erent populations of organisms, such as the dynamics of competition and predation, food webs, community structure, as well as the epidemiology of infectious diseases. In this ?eld, t- oretical biology and mathematical modeling have become an integral part of research. Mathematical models allowed people to obtain interesting and counter-intuitive insights into how complex interactions among di?erent p- ulations can play out. Such mathematical studies not only gave rise to - teresting theoretical ideas, but also provided the basis for the design of new experimental work and de?ned major questions and directions of research. Around 1990, such population dynamic concepts, and the use of mathema- cal/computational approaches, started to be applied to the in vivo dynamics between viruses and the immune system. These interactions have many s- ilarities to ecological, epidemiological, and evolutionary principles. Consider theepidemiologicalspreadofapathogen(suchasthecommoncold)througha population of hosts.

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