To understand current practice and explore the potential for more comprehensive evaluations of 3D immersive sketching, drawing, and painting, we present a survey of evaluation methodologies used in existing 3D sketching research, a breakdown and discussion of important phases (sub-tasks) in the 3D sketching process, and a framework that suggests how these factors can inform evaluation strategies in future 3D sketching research. Existing evaluations identified in the survey are organized and discussed within three high-level categories: 1) evaluating the 3D sketching activity, 2) evaluating 3D sketching tools, and 3) evaluating 3D sketching artifacts. The new framework suggests targeting evaluations to one or more of these categories and identifying relevant user populations. In addition, building upon the discussion of the different phases of the 3D sketching process, the framework suggests to evaluate relevant sketching tasks, which may range from low-level perception and hand movements to high-level conceptual design. Finally, we discuss limitations and challenges that arise when evaluating 3D sketching, including a lack of standardization of evaluation methods and multiple, potentially conflicting, ways to evaluate the same task and user interface usability; we also identify opportunities for more holistic evaluations. We hope the results can contribute to accelerating research in this domain and, ultimately, broad adoption of immersive sketching systems.
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http://dx.doi.org/10.1109/TVCG.2023.3276291 | DOI Listing |
J Surg Educ
January 2025
Justus-Liebig-University, Giessen, Germany; Department of General, Visceral, Thoracic and Transplantation Surgery, University Hospital Giessen, Germany. Electronic address:
Objectives: The influence of students' positioning within the theatre on their learning progress is unknown. The present study aimed to investigate whether position of undergraduate medical students in the operating theatre-at the operating table or behind surgical drapes-influences their learning.
Design Setting And Participants: We conducted a single-blind prospective randomized study with 2 parallel arms.
Sci Rep
January 2025
School of Software, Pingdingshan University, Pingdingshan, 467000, China.
In traditional Chinese painting, the genre of landscapes is unique and universally valued. For an untrained person to achieve such results is very difficult, requiring mastery of such things as brushwork, composition, and color. In this paper, we propose HA-GAN to transform sketches into Chinese landscape paintings, a new GAN-based framework that builds upon a hybrid attention generator and a discriminator.
View Article and Find Full Text PDFJ Chem Inf Model
December 2024
Laboratory for Molecular Modeling and Drug Design (LabMol), Faculdade de Farmácia, Universidade Federal de Goiás, Goiânia, Goiás 74605-220, Brazil.
Cytotoxicity is essential in drug discovery, enabling early evaluation of toxic compounds during screenings to minimize toxicological risks. assays support high-throughput screening, allowing for efficient detection of toxic substances while considerably reducing the need for animal testing. Additionally, AI-based Quantitative Structure-Activity Relationship (AI-QSAR) models enhance early stage predictions by assessing the cytotoxic potential of molecular structures, which helps prioritize low-risk compounds for further validation.
View Article and Find Full Text PDFBiom J
December 2024
Faculty of Statistics, TU Dortmund University, Dortmund, Germany.
We develop a variable selection method for interactions in regression models on large data in the context of genetics. The method is intended for investigating the influence of single-nucleotide polymorphisms (SNPs) and their interactions on health outcomes, which is a problem. We introduce cross leverage scores (CLSs) to detect interactions of variables while maintaining interpretability.
View Article and Find Full Text PDFRSC Adv
November 2024
Department of Chemistry, Division of Science and Technology, University of Education Lahore 54770 Pakistan.
The development of flexible, cost-effective, highly efficient, and reliable humidity monitoring sensors is in high demand owing to their wide-range of applications in industrial domains. In this study, a humidity sensor was fabricated based on graphite/zinc oxide nanoparticle (G/ZnO-NP)-coated cellulose paper. A bar device was designed using computer software, and its sketch was printed on cellulose paper, with graphite bars then added using the pencil-drawing method, and then ZnO-NP paste was coated on the graphite patterns.
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