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Digital contact tracing and network theory to stop the spread of COVID-19 using big-data on human mobility geolocalization

机译:数字接触者追踪和网络理论利用人类移动地理定位大数据阻止 COVID-19 的传播

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The spread of COVID-19 caused by the SARS-CoV-2 virus has become a worldwide problem with devastating consequences. Here, we implement a comprehensive contact tracing and network analysis to find an optimized quarantine protocol to dismantle the chain of transmission of coronavirus with minimal disruptions to society. We track billions of anonymized GPS human mobility datapoints to monitor the evolution of the contact network of disease transmission before and after mass quarantines. As a consequence of the lockdowns, people's mobility decreases by 53, which results in a drastic disintegration of the transmission network by 90. However, this disintegration did not halt the spreading of the disease. Our analysis indicates that superspreading k-core structures persist in the transmission network to prolong the pandemic. Once the k-cores are identified, an optimized strategy to break the chain of transmission is to quarantine a minimal number of 'weak links' with high betweenness centrality connecting the large k-cores.
机译:由 SARS-CoV-2 病毒引起的 COVID-19 传播已成为一个具有毁灭性后果的世界性问题。在这里,我们实施了全面的接触者追踪和网络分析,以找到优化的隔离协议,以消除冠状病毒的传播链,同时将对社会的干扰降至最低。我们跟踪数十亿个匿名GPS人类移动数据点,以监测大规模隔离前后疾病传播接触网络的演变。由于封锁,人们的流动性下降了53%,这导致传输网络急剧瓦解了90%。然而,这种解体并没有阻止疾病的传播。我们的分析表明,超扩散的k核结构在传播网络中持续存在,以延长大流行。一旦确定了 k 核,打破传播链的优化策略是隔离最少数量的“薄弱环节”,这些薄弱环节具有连接大型 k 核的高介度中心性。

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