Title of article :
Physics-Based Subsurface Visualization of Human Tissue
Author/Authors :
Sharp، نويسنده , , Richard، نويسنده , , Adams، نويسنده , , Jacob، نويسنده , , Raghu Machiraju، نويسنده , , Raghu، نويسنده , , Lee، نويسنده , , Robert، نويسنده , , Crane، نويسنده , , Robert، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
In this paper, we present a framework for simulating light transport in three-dimensional tissue with inhomogeneous
scattering properties. Our approach employs a computational model to simulate light scattering in tissue through the finite element
solution of the diffusion equation. Although our model handles both visible and nonvisible wavelengths, we especially focus on the
interaction of near infrared (NIR) light with tissue. Since most human tissue is permeable to NIR light, tools to noninvasively image
tumors, blood vasculature, and monitor blood oxygenation levels are being constructed. We apply this model to a numerical phantom
to visually reproduce the images generated by these real-world tools. Therefore, in addition to enabling inverse design of detector
instruments, our computational tools produce physically-accurate visualizations of subsurface structures.
Keywords :
Near infrared , Volume Rendering , biological tissue , light scattering.
Journal title :
IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS
Journal title :
IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS