The 15 review papers provide a summary of the existing literature about different aspects of AR solutions and applications. These papers propose general state-of-the-art analyses of AR technologies (Carmigniani et al., 2011), with a focus in the main patents (De Lucia et al., 2011), as well as in the manufacturing context (Ong et al., 2008). Other studies review AR systems that can be used for specific purposes, such as to enhance human computer interaction (HCI) (Igarashi and Inami, 2015; Rajendran et al., 2015) or human-robot collaboration (Green et al., 2008). Several papers analyze AR applications devoted to a particular industrial task; the most investigated tasks are assembly (Stork and Schubö, 2010; Leu et al. 2013; Wang et al., 2016a) , maintenance (Oliveira et al., 2013; Lamberti et al. 2015), design (Nee et al., 2012; Yin et al., 2015), safety/ergonomics (Hovanec et al., 2014) and food logistics (Vanderroost et al., 2017).
The 15 review papers provide a summary of the existing literature about different aspects of AR solutions and applications. These papers propose general state-of-the-art analyses of AR technologies (Carmigniani et al., 2011), with a focus in the main patents (De Lucia et al., 2011), as well as in the manufacturing context (Ong et al., 2008). Other studies review AR systems that can be used for specific purposes, such as to enhance human computer interaction (HCI) (Igarashi and Inami, 2015; Rajendran et al., 2015) or human-robot collaboration (Green et al., 2008). Several papers analyze AR applications devoted to a particular industrial task; the most investigated tasks are assembly (Stork and Schubö, 2010; Leu et al. 2013; Wang et al., 2016a) , maintenance (Oliveira et al., 2013; Lamberti et al. 2015), design (Nee et al., 2012; Yin et al., 2015), safety/ergonomics (Hovanec et al., 2014) and food logistics (Vanderroost et al., 2017).
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