IP Library Granted Patent US 8,126,112
Granted Patent B2
US 8,126,112 · App. 12/250,423 · Granted Feb 28, 2012

Osseo classification system and method

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Quick Facts
Patent No.
US 8,126,112
App. No.
12/250,423
Granted
Feb 28, 2012
Kind
B2
Abstract

An osseo classification and digital modality modeling system includes a computer with a digital memory adapted for storing patient densitometry information, an input and an output. An input subsystem includes a pair of source/receptor units mounted on a signal positioning subsystem, which is adapted for moving the source/receptor units through predetermined paths of movement, which can be circular or linear. The resulting tomographic data is synthesized to form any 3-D model or image, which is output for further analysis and classifying osseo structure and/or prosthetic osseointegration. An osseo classification and digital tomosynthesis method includes the steps of moving a pair of sensor/receptor units relative to a patient. The resulting signals output by the receptor are digitized and synthesized to form a 3-D image or model. Multiple depths of penetration and multiple widths can be captured from single acquisitions using digital tomosynthesis signal processing techniques. Osseo structure and/or prosthetic osseointegration is classified using the densitometry data.

Claims (25)

1. A method of classifying osseo structure and/or prosthetic osseointegration using 3-D digital tomosynthesis medical and dental modeling, which comprises the steps of:

providing a computer including a digital memory adapted for storing patient densitometry information, an input and an output;

providing an input subsystem including a pair of source/receptor units each including a signal source and a receptor;

providing said input subsystem with a DEXA modality;

providing said signal positioning subsystem with a rotating mechanism mounting said source/receptor units in generally opposite relation with a patient region of interest (ROI) located therebetween;

rotating said source/receptor units in both directions through coplanar, circular paths of movement around a first rotational axis;

providing a signal positioning subsystem connected to said computer and mounting said source and receptor, said positioning subsystem moving said source and/or said receptor through a predetermined path of movement relative to a patient;

rotating said source/receptor units in a first direction with said input subsystem at a low energy level and rotating said source/receptor units in a second direction with said input subsystem at a high energy level;

providing said signal positioning subsystem with a second rotational axis defining a second set of coplanar, circular paths of movement of said source/receptor units;

corresponding said first rotational axis to an X axis extending top-to-bottom relative to the patient;

corresponding said second rotational axis to a Z axis extending front-to-back relative to the patient;

providing said circular paths of movement with ranges of approximately between 90° and 270°;

connecting said receptor to the computer input;

producing signals with said receptor to said computer input representing a condition of the patient's dental and/or orthopedic structure;

integrating signals obtained along said first and second paths of movement;

modeling a patient ROI in three dimensions from said integrated signals;

filtering tomographic information from said receptors;

subtracting signals corresponding to scatter and other extraneous information and reversing the polarity and output of signals representing different types of structure;

constructing multiple slices at different depths and with different thicknesses from individual tomographic data acquisitions;

creating, storing and comparing 3-D digital models of patient dental and/or orthopedic structure;

providing an output device connected to said computer output and adapted for communicating patient condition information consisting of or derived from a respective said 3-D digital model;

providing a database accessible by said computer and including information chosen from among the group consisting of patient history, age, gender and locations;

assessing and modeling patient parameters chosen from among the group consisting of:

prosthesis position, load (stress/strain), osseointegration, septic/aseptic, inflammation and fracture; and

classifying osseo structure and/or prosthetic osseointegration based on said densitometry data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2013
From: MASSIE, RONALD E.; LESLIE, CHRISTOPHER J.
To: OSSEO IMAGING, LLC
Reel/Frame 029753/0742 →
Continuity (6)
Continuation In Part 11932809 · Oct 31, 2007
Continuation In Part 11224472 · Sep 12, 2005
Continuation 10351567 · Jan 24, 2003
Continuation In Part 10134153 · Apr 27, 2002
Continuation 09452348 · Dec 1, 1999
Related Publication 20090124882A1 · May 14, 2009