Non-GAAP Earnings and Board Connectedness in a Multiplex Network

Author(s):  
Valbona Sulcaj
Keyword(s):  
Author(s):  
Phanish Puranam

In this chapter, my aim is describe the links between the formal and informal structure of organizations, and propose a systematic approach to analyzing these links. I first discuss how the two are related and influence each other. Next, revisiting the theme of organizations as “marvels but not miracles” I argue that formal design can be useful even when it not predicated on high levels of comprehension or intelligence. This is because it can compensate for aspects of the informal organization, as well as shape the emergence of the informal organization. I discuss an instance of a micro-structural approach to such issues in some detail, and conclude by offering a multiplex network formulation that can help us make progress in studying the complex interactions between formal and informal organizational structures.


2021 ◽  
Vol 51 ◽  
pp. 101305
Author(s):  
Manuel Curado ◽  
Leandro Tortosa ◽  
Jose F. Vicent ◽  
Gevorg Yeghikyan
Keyword(s):  

2021 ◽  
Vol 14 (4) ◽  
pp. 401-423 ◽  
Author(s):  
Xiaoqi Zhang ◽  
Zi-Ke Zhang ◽  
Wenbo Wang ◽  
Donglin Hou ◽  
Jiajing Xu ◽  
...  

2021 ◽  
Vol 54 (3) ◽  
pp. 1-35
Author(s):  
Matteo Magnani ◽  
Obaida Hanteer ◽  
Roberto Interdonato ◽  
Luca Rossi ◽  
Andrea Tagarelli

A multiplex network models different modes of interaction among same-type entities. In this article, we provide a taxonomy of community detection algorithms in multiplex networks. We characterize the different algorithms based on various properties and we discuss the type of communities detected by each method. We then provide an extensive experimental evaluation of the reviewed methods to answer three main questions: to what extent the evaluated methods are able to detect ground-truth communities, to what extent different methods produce similar community structures, and to what extent the evaluated methods are scalable. One goal of this survey is to help scholars and practitioners to choose the right methods for the data and the task at hand, while also emphasizing when such choice is problematic.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Léo Pio-Lopez ◽  
Alberto Valdeolivas ◽  
Laurent Tichit ◽  
Élisabeth Remy ◽  
Anaïs Baudot

AbstractNetwork embedding approaches are gaining momentum to analyse a large variety of networks. Indeed, these approaches have demonstrated their effectiveness in tasks such as community detection, node classification, and link prediction. However, very few network embedding methods have been specifically designed to handle multiplex networks, i.e. networks composed of different layers sharing the same set of nodes but having different types of edges. Moreover, to our knowledge, existing approaches cannot embed multiple nodes from multiplex-heterogeneous networks, i.e. networks composed of several multiplex networks containing both different types of nodes and edges. In this study, we propose MultiVERSE, an extension of the VERSE framework using Random Walks with Restart on Multiplex (RWR-M) and Multiplex-Heterogeneous (RWR-MH) networks. MultiVERSE is a fast and scalable method to learn node embeddings from multiplex and multiplex-heterogeneous networks. We evaluate MultiVERSE on several biological and social networks and demonstrate its performance. MultiVERSE indeed outperforms most of the other methods in the tasks of link prediction and network reconstruction for multiplex network embedding, and is also efficient in link prediction for multiplex-heterogeneous network embedding. Finally, we apply MultiVERSE to study rare disease-gene associations using link prediction and clustering. MultiVERSE is freely available on github at https://github.com/Lpiol/MultiVERSE.


Author(s):  
D. Nikitin ◽  
I. Omelchenko ◽  
A. Zakharova ◽  
M. Avetyan ◽  
A. L. Fradkov ◽  
...  

We study the spatio-temporal dynamics of a multiplex network of delay-coupled FitzHugh–Nagumo oscillators with non-local and fractal connectivities. Apart from chimera states, a new regime of coexistence of slow and fast oscillations is found. An analytical explanation for the emergence of such coexisting partial synchronization patterns is given. Furthermore, we propose a control scheme for the number of fast and slow neurons in each layer. This article is part of the theme issue ‘Nonlinear dynamics of delay systems’.


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