Enabling process changes constitutes a major challenge for any process-aware information system. This not only holds for processes running within a single enterprise, but also for collaborative scenarios involving distributed and autonomous partners. In particular, if one partner adapts its private process, the change might affect the processes of the other partners as well. Accordingly, it might have to be propagated to concerned partners in a transitive way. A fundamental challenge in this context is to find ways of propagating the changes in a decentralized manner. Existing approaches are limited with respect to the change operations considered as well as their dependency on a particular process specification language. This paper presents a generic change propagation approach that is based on the Refined Process Structure Tree, i.e., the approach is independent of a specific process specification language. Further, it considers a comprehensive set of change patterns. For all these change patterns, it is shown that the provided change propagation algorithms preserve consistency and compatibility of the process choreography. Finally, a proof-of-concept prototype of a change propagation framework for process choreographies is presented. Overall, comprehensive change support in process choreographies will foster the implementation and operational support of agile collaborative process scenarios.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4394149PMC
http://dx.doi.org/10.1016/j.is.2014.10.004DOI Listing

Publication Analysis

Top Keywords

process choreographies
12
change propagation
12
process
10
propagation algorithms
8
change
8
process specification
8
specification language
8
change patterns
8
dealing change
4
change process
4

Similar Publications

The impact of dance on enhancing social skills and emotional intelligence through creativity.

Acta Psychol (Amst)

January 2025

Department of choreografic of art, Kazan institute of culture, Orenbyrgsky trakt, 3, Kazan 420012, Republic Tatarstan, Russian Federation.

This research aims to analyze the impact of dance experience on the development of social and emotional competence in individuals, as well as to determine the influence of dance on the development of social interaction skills, communication, and perception of others. Additionally, through experimental means, effective strategies for utilizing dance to improve levels of social and emotional competence are identified. The study was conducted using online surveys and questionnaires.

View Article and Find Full Text PDF

How to Civilize Elites: Controlling "Foreign Scientists" at a Field Station in the Galápagos Islands.

J Hist Biol

December 2024

Department of the History and Sociology of Science, University of Pennsylvania, Philadelphia, PA, 19104, USA.

This paper explores the control of visiting "foreign scientists" at the Charles Darwin Research Station (CDRS) after it was established in the Galápagos Islands in 1959. Scholarly accounts of the creation of the Galápagos National Park and of the field station have emphasized their place in an international "land grab," as leading scientists and conservationists sought to control nature in places around the world that seemed less "civilized" to European thinkers. The actual administrative labor in the early years at this scientific field station, however, in practice struggled to control people widely taken to represent "civilization" in its highest form-European and American scientists.

View Article and Find Full Text PDF

In toto biological framework: Modeling interconnectedness during human development.

Dev Cell

January 2025

Premium Research Institute for Human Metaverse Medicine (WPI-PRIMe), Graduate School of Medicine, Osaka University Graduate School of Medicine, 2-2 Yamadaoka, Suita-shi, Osaka 565-0871, Japan; Human Biology Research Unit, Institute of Integrated Research, Institute of Science Tokyo, 1-5-45 Yushima, Bunkyo-ku, Tokyo 113-8510, Japan; Divisions of Gastroenterology, Hepatology & Nutrition, and Developmental Biology, Cincinnati Children's Hospital Medical Center, 3333 Burnet Avenue, Cincinnati, OH 45229-3039, USA; Department of Pediatrics, University of Cincinnati College of Medicine, 3333 Burnet Avenue, Cincinnati, OH 45229-3039, USA; Center for Stem Cell and Organoid Medicine (CuSTOM), Cincinnati Children's Hospital Medical Center, 3333 Burnet Avenue, Cincinnati, OH 45229-3039, USA. Electronic address:

Recent advancements in pluripotent stem cell and synthetic tissue technology have brought significant breakthroughs in studying early embryonic development, particularly within the first trimester of development in humans. However, during fetal stage development, investigating further biological events represents a major challenge, partly due to the evolving complexity and continued interaction across multiple organ systems. To bridge this gap, we propose an "in toto" biological framework that leverages a triad of technologies: synthetic tissues, intravital microscopy, and computer vision to capture in vivo cellular morphodynamics, conceptualized as single-cell choreography.

View Article and Find Full Text PDF

Technoscientific transformations in molecular genomics have begun to influence knowledge production in education. Interdisciplinary scientific consortia are seeking to identify 'genetic influences' on 'educationally relevant' traits, behaviors, and outcomes. This article examines the emerging 'knowledge infrastructure' of educational genomics, attending to the assembly and choreography of organizational associations, epistemic architecture, and technoscientific apparatuses implicated in the generation of genomic understandings from masses of bioinformation.

View Article and Find Full Text PDF

Microtubule choreography: spindle self-organization during cell division.

Biophys Rev

October 2024

Laboratory of Physics and Cell Biology, National Institute of Genetics, Shizuoka, 411-8540 Japan.

During cell division, the network of microtubules undergoes massive rearrangement to self-organize into the spindle, a bipolar structure essential for accurate chromosome segregation. This structure ensures the stable transmission of the genome from the mother cell to two daughter cells, yet the process by which the ordered architecture emerges from a collection of protein "parts" remains a mystery. In this review, we focus on several key spindle proteins, describing how they move, crosslink, and grow microtubules in vitro and contribute to the spindle's structural organization.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!