Abstract Tumor organoids are three-dimensional (3D), self-organizing cultures that have become a central experimental platform in cancer research and translational medicine. Their value lies in preserving genetic heterogeneity, reproducing patient-specific phenotypes, and supporting functional drug sensitivity testing. Yet conventional organoids remain constrained: they reconstruct the tumor microenvironment (TME) poorly, capture spatial heterogeneity and dynamic physiology incompletely, and still lack clinical standardization. Recent advances in gene editing, immune and stromal co-culture, single-cell and spatial multi-omics, 3D bioprinting, and organ-on-a-chip systems now offer routes past these bottlenecks. Most of the literature, however, treats them piecemeal, pairing organoids with one technology at a time, and rarely articulates the logic that connects them. This review proposes a functional integration framework that organizes these technologies into four layered capabilities: a genetic engineering layer, a cellular ecosystem layer, a spatial and architectural layer, and a dynamic systems layer. We show how each layer brings organoids closer to the true complexity of tumors in vivo, then use the framework to discuss applications in mechanistic cancer research, drug discovery, immunotherapy modeling, and precision clinical decision support. We close with a critical reading of the clinical-translation evidence, the key bottlenecks, and future prospects, and introduce the forward-looking concept of a “functional digital twin.”
Some claim that especially in the field of agile software development the research lags years behind of the practice. In this paper, we characterize the status and main challenges for research on agile software development, and propose a preliminary roadmap, focusing on providing more empirical research, primarily on e...
Torgeir Dingsøyr, T. Dybå, P. Abrahamsson· Agile Conference· 92 citations· ⚡7
The results indicate that software developers are a slightly happy population, but the need for limiting the unhappiness of developers remains, and 219 factors representing causes of unhappiness while developing software are identified.
D. Graziotin, Fabian Fagerholm, Xiaofeng Wang et al.· International Conference on...· 84 citations· ⚡6
This study investigates how Lean internal startup facilitates software product innovation in large companies and identifies its enablers and inhibitors, and shows the potential of the method-in-action framework to investigate the Lean startup approach in non-startup context.
Henry Edison, Nina M. Smørsgård, Xiaofeng Wang et al.· Journal of Systems and Softw...· 78 citations· ⚡6
The goal is to not only refine the accuracy of the LLM-based tool but also to underscore its potential in streamlining the software development lifecycle through proactive code improvement and education.
Z. Rasheed, Malik Abdul Sami, Muhammad Waseem et al.· arXiv.org· 62 citations· ⚡3
Agile methods continue to gain popularity. In particular, the Scrum method appears to be on the verge of becoming a de-facto standard in the industry, leading the so called Agile movement. While there are success stories and recommendations, there is little scientifically valid evidence of the challenges in the adoptio...
A. Marchenko, P. Abrahamsson· Agile Conference· 59 citations· ⚡11
A comprehensive overview of how enhanced sampling methods are reshaping the field, with a particular focus on the data-driven construction of collective variables, is provided.
Kai Zhu, Enrico Trizio, Jintu Zhang et al.· Chemical Reviews· 58 citations
Exploring how generative AI could make machine vision more accessible to businesses. The post GenEye in a Box: Making Machine Vision Something You Can Just Ask For appeared first on GPT-Lab.