Precomputed low-frequency lighting in cinematic volume rendering.

PLoS One

School of Computer Science and Engineeing, Northeastern University, Shenyang, Liaoning, P. R. China.

Published: October 2024


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Cinematic Rendering (CR) employs physical models such as ray tracing and global illumination to simulate real-world light phenomena, producing high-quality images with rich details. In the medical field, CR can significantly aid doctors in accurate diagnosis and preoperative planning. However, doctors require efficient real-time rendering when using CR, which presents a challenge due to the substantial computing resources demanded by CR's ray tracing and global illumination models. Precomputed lighting can enhance the efficiency of real-time rendering by freezing certain scene variables. Typically, precomputed methods freeze geometry and materials. However, since the physical rendering of medical images relies on volume data rendering of transfer functions, the CR algorithm cannot utilize precomputed methods directly. To improve the rendering efficiency of the CR algorithm, we propose a precomputed low-frequency lighting method. By simulating the lighting pattern of shadowless surgical lamps, we adopt a spherical distribution of multiple light sources, with each source capable of illuminating the entire volume of data. Under the influence of these large-area multi-light sources, the precomputed lighting adheres to physical principles, resulting in shadow-free and uniformly distributed illumination. We integrated this precomputed method into the ray-casting algorithm, creating an accelerated CR algorithm that achieves more than twice the rendering efficiency of traditional CR rendering.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11493242PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0312339PLOS

Publication Analysis

Top Keywords

rendering
9
precomputed low-frequency
8
low-frequency lighting
8
ray tracing
8
tracing global
8
global illumination
8
real-time rendering
8
precomputed lighting
8
precomputed methods
8
volume data
8

Similar Publications

Purpose: To investigate the images and treatment differences for Type IIIa atlantoaxial rotary dislocation (AARD) by comparing the imaging characteristics of patients with Type III and Type IIIa AARD.

Methods: The present study retrospectively analyzed a cohort of 35 patients who underwent posterior C1-C2 intra-articular fusion due to AARD from our hospital database. Among them, 23 patients were diagnosed with Type III AARD, while the remaining 12 patients were diagnosed with Type IIIa AARD.

View Article and Find Full Text PDF

Background: Authentic leadership in nursing is associated with positive nurse outcomes globally. However, the last published systematic review, in 2018, showed no evidence from the United States and little evidence of effect on patient or health system outcomes.

Objectives: To systematically review, appraise, and synthesize evidence focused on the effect of authentic leadership on nurse, patient, and system outcomes in acute care hospitals in the U.

View Article and Find Full Text PDF

Wearable bioelectronics have advanced dramatically over the past decade, yet remain constrained by their superficial placement on the skin, which renders them vulnerable to environmental fluctuations and mechanical instability. Existing microneedle (MN) electrodes offer minimally invasive access to dermal tissue, but their rigid, bulky design-often 100 times larger and 10,000 times stiffer than dermal fibroblasts-induces pain, tissue damage, and chronic inflammation, limiting their long-term applicability. Here, a cell-stress-free percutaneous bioelectrode is presented, comprising an ultrathin (<2 µm), soft MN (sMN) that dynamically softens via an effervescent structural transformation after insertion.

View Article and Find Full Text PDF

Economically viable and biologically compatible amino acids demonstrate significant potential as electrolyte microstructure modifiers in aqueous zinc-ion batteries (AZIBs). Compared to polar amino acids, nonpolar amino acids simultaneously own zincophilicity and hydrophobicity, showing great potential in the industrial application of AZIBs. However, nonpolar amino acids have been comparatively understudied in existing research investigations.

View Article and Find Full Text PDF

Carbon-based nanoparticles possess distinctive chemical, physical, and biological characteristics that render them suitable for biomedical uses. This paper reviews recent advancements in carbon-based nanomaterial (CBs) synthesis methods, emphasizing the importance of careful modification for biomedical uses, particularly in the passivation of drugs and chemicals on their surfaces. This review article examines information from 2021-2024 regarding carbon-based nanoparticles and the biomedical uses of graphene, fullerene, carbon nanotubes, nano horns, nanodiamonds, quantum dots, and graphene oxide.

View Article and Find Full Text PDF