Modeling and incorporating cardiac-induced lung tissue motion in a breathing motion model

Benjamin M White1, Anand Santhanam1, David Thomas1

  • 1Department of Radiation Oncology, University of California, Los Angeles, California 90095 and Biomedical Physics IDP, University of California, Los Angeles, California 90095.

Medical Physics
|April 4, 2014
PubMed
Abstract

Related Concept Videos

Kinematics and Projectile Motion11:41

Kinematics and Projectile Motion

Source: Ketron Mitchell-Wynne, PhD, Asantha Cooray, PhD, Department of Physics & Astronomy, School of Physical Sciences, University of California, Irvine, CA
This experiment demonstrates the kinematics of motion in 1 and 2 dimensions. This lab will begin by studying motion in 1 dimension, under constant acceleration, by launching a projectile directly upward and measuring the maximum height reached. This lab will verify that the maximum height reached is consistent with the kinematic...
76.3K
Motion-induced Blindness06:03

Motion-induced Blindness

Source: Laboratory of Jonathan Flombaum—Johns Hopkins University
One thing becomes very salient after basic exposure to the science of visual perception and sensation: what people see is a creation of the brain. As a result people may fail to see things, see things that are not there, or see things in a distorted way.
To distinguish between physical reality and what people perceive, scientists use the term awareness to refer to what people perceive. To study awareness, vision scientists...
7.7K
Subject-specific Musculoskeletal Model for Studying Bone Strain During Dynamic Motion09:32

Subject-specific Musculoskeletal Model for Studying Bone Strain During Dynamic Motion

During landing, lower-body bones experience large mechanical loads and are deformed. It is essential to measure bone deformation to better understand the mechanisms of bone stress injuries associated with impacts. A novel approach integrating subject-specific musculoskeletal modeling and finite element analysis is used to measure tibial strain during dynamic...
10.2K
A Chronic Cardiac Ischemia Model in Swine Using an Ameroid Constrictor08:22

A Chronic Cardiac Ischemia Model in Swine Using an Ameroid Constrictor

The purpose of this protocol is to demonstrate the placement of a delayed constricting device (an ameroid constrictor) around a coronary artery in a swine model. This device creates an ischemic area of the heart that is useful for studying new diagnostic imaging techniques and new methods of treatment.
11.1K
Visualizing Motion Patterns in Acupuncture Manipulation08:18

Visualizing Motion Patterns in Acupuncture Manipulation

Here, we present a protocol for using the Acupuncture Manipulation Education System (AMES) in the training of acupuncture manipulation skills using phantom...
9.2K
Equation of Motion: General Plane motion01:22

Equation of Motion: General Plane motion

In the context of a rigid body's movement within a general plane, it is important to understand that this motion is typically triggered by external forces or couple moments exerted onto it. This principle can be explained through Newton's second law, which stipulates the translational motion of the body's center of mass along each axis.
Moreover, the body's center of mass experiences a rotational effect as a result of these couple moments. This rotation can be articulated as the...
561