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2014 Thomas Willis Award Lecture: Sex Stroke and Innovation

机译:2014年托马斯·威利斯奖演讲:性中风和创新

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摘要

Innovation is a form of purposeful discovery behavior that exploits the unexpected, utilizes imagination, and provides one avenue of new solutions to complex human health needs. It is through this lens that two examples are described in which innovative approaches have been used to dissect the complexities of stroke pathophysiology. The first example focuses on one of the most fundamental genetic factors relevant to the brain and ischemic injury: biological sex. Much might be gained by understanding the details of sex-specific pathobiology, if the field is to develop therapies that work well in patients of both sexes. The second example surrounds brain-spleen cell cycling after stroke which is fundamental to our evolving understanding that stroke is a systemic disease, rather than solely a lesion of the brain. While much work remains, it is now apparent that brain-spleen cell cycling is temporally specific, varies in intensity, and involves cell players that are of much wider lineages than originally believed. In the future, it is likely that innovation will need to turn to “big data”, particularly if our field is to tackle the daunting questions that most greatly matter to unraveling brain injury. The huge availability and growth rate of biomedical data, handled in a shared but coherent environment, offers an opportunity to further vitalize stroke research.
机译:创新是有目的的发现行为的一种形式,它利用未曾预料到的东西,利用想象力,为复杂的人类健康需求提供了新的解决方案的途径。通过这个镜头,描述了两个例子,其中使用了创新的方法来剖析中风病理生理学的复杂性。第一个例子着重于与脑部和缺血性损伤有关的最基本的遗传因素之一:生物性别。如果要研究出一种对男女患者都有效的疗法,那么通过了解特定性别病理生物学的细节可能会收获很多。第二个例子是中风后脑脾细胞的循环,这对于我们不断发展的理解是中风是一种全身性疾病,而不仅仅是脑部病变至关重要。尽管还有很多工作要做,但现在很明显,脑脾细胞循环在时间上是特定的,强度不同,并且涉及的细胞参与者比原始人认为的要广泛得多。将来,创新很有可能需要转向“大数据”,特别是如果我们的领域要解决与解开脑损伤最重要的艰巨问题。在共享但一致的环境中处理的生物医学数据的巨大可用性和增长率为进一步振兴中风研究提供了机会。

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