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Quantifying People's Experience During Flood Events with Implications for Hazard Risk Communication

Overview
Journal PLoS One
Date 2021 Jan 7
PMID 33411829
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Abstract

Semantic drift is a well-known concept in distributional semantics, which is used to demonstrate gradual, long-term changes in meanings and sentiments of words and is largely detectable by studying the composition of large corpora. In our previous work, which used ontological relationships between words and phrases, we established that certain kinds of semantic micro-changes can be found in social media emerging around natural hazard events, such as floods. Our previous results confirmed that semantic drift in social media can be used to for early detection of floods and to increase the volume of 'useful' geo-referenced data for event monitoring. In this work we use deep learning in order to determine whether images associated with 'semantically drifted' social media tags reflect changes in crowd navigation strategies during floods. Our results show that alternative tags can be used to differentiate naïve and experienced crowds witnessing flooding of various degrees of severity.

References
1.
Watts D, Strogatz S . Collective dynamics of 'small-world' networks. Nature. 1998; 393(6684):440-2. DOI: 10.1038/30918. View

2.
Allison , Puce , McCarthy . Social perception from visual cues: role of the STS region. Trends Cogn Sci. 2000; 4(7):267-278. DOI: 10.1016/s1364-6613(00)01501-1. View

3.
Poucet B . Spatial cognitive maps in animals: new hypotheses on their structure and neural mechanisms. Psychol Rev. 1993; 100(2):163-82. DOI: 10.1037/0033-295x.100.2.163. View

4.
Waller D, Richardson A . Correcting distance estimates by interacting with immersive virtual environments: effects of task and available sensory information. J Exp Psychol Appl. 2008; 14(1):61-72. DOI: 10.1037/1076-898X.14.1.61. View

5.
Humphries N, Queiroz N, Dyer J, Pade N, Musyl M, Schaefer K . Environmental context explains Lévy and Brownian movement patterns of marine predators. Nature. 2010; 465(7301):1066-9. DOI: 10.1038/nature09116. View