MEANS AND METHODS OF MULTIDIMENSIONAL MODELING IN VIVO SPATIAL IMAGE OF AN MRI CONTRAST AGENT
A method of multidimensional modeling a magnetic resonance device (MRD) contrast agent introduced within the body of a patient. The method includes: introducing into the patient body or an organ an effective measure of at least one MRD contrast agent; imaging the MRD contrast agent located at least a portion of a body and providing data defining a multidimensional image; loading or otherwise streaming the MRD image to a multidimensional printer; and multidimensionally modeling the MRD contrast agent.
1 . A method of multidimensional modeling an MRD contrast agent (MCA) introduced within the body of a patient, the method comprises steps as follows:
a. introducing into patient body or an organ thereof an effective measure of at least one MCA;
b. by means of an MRD, imaging said MCA located at least a portion of a body and providing data defining a multidimensional image of the same;
c. loading or otherwise streaming said MRD image to a multidimensional printer; and
d. multidimensionally modeling said MCA.
2 . The method of claim 1 , wherein said MRD is selected from a group consisting of CAT scanner, ultrasound imager, infrared imager, X-radiography detecting device, Raman spectroscope, single photon emission computed tomography detector or microwave imager, NMR, MRI, ESR, CT and a combination thereof.
3 . The method of claim 1 , wherein said multidimensional modeling is selected from a group consisting of 2D modeling and 3D modeling and wherein said multidimensional printer is a 2D and 3D printer, respectively.
4 . A multidimensional modeling system comprising:
a. means for introducing into patient's body or organ thereof an effective measure of at least one MCA;
b. an MRD for imaging said MCA within at least a portion of said body r organ thereof;
c. a readable computer data defining a multidimensional image of the same;
d. at least one multidimensional printer in communication with said data for multidimensionally modeling said MCA.
5 . The multidimensional modeling system of claim 4 , wherein said MRD is selected from a group consisting of CAT scanner, ultrasound imager, infrared imager, X-radiography detecting device, Raman spectroscope, single photon emission computed tomography detector or microwave imager, NMR, MRI, ESR, CT and a combination thereof.
6 . The multidimensional modeling system of claim 4 , wherein said multidimensional model is selected from a group consisting of 2D model and 3D model and wherein said multidimensional printer is a 2D and 3D printer, respectively.
7 . A method of a complex multidimensional modeling an MRD contrast agent (MCA) introduced within the body of a patient, the method comprises steps as follows:
a. introducing into patient's body or an organ thereof an effective measure of at least one MCA;
b. by means of at least one first MRD, imaging at least one first MCA located at least a portion of said body or organ thereof and providing data defining a multidimensional image of the same;
c. by means at least one second MRD, imaging at least one second MCA located at least a portion of said body of organ thereof and providing data defining a multidimensional image of the same;
d. loading or otherwise streaming said least one first MRD image and said least one second MRD image to a multidimensional printer; and
e. multidimensionally modeling said MCA such that a complex multidimensional model of said MCA is provided.
8 . The method of claim 7 , wherein said least one first MRD and said least one second MRD are selected from a group consisting of CAT scanner, ultrasound imager, infrared imager, X-radiography detecting device, Raman spectroscope, single photon emission computed tomography detector or microwave imager, NMR, MRI, ESR, CT and a combination thereof.
9 . The method of claim 7 , wherein said multidimensional modeling is selected from a group consisting of 2D modeling and 3D modeling and wherein said multidimensional printer is a 2D and 3D printer, respectively.
10 . A complex multidimensional modeling system comprising:
a. means for introducing into patient's body or organ thereof an effective measure of at least one first MCA and at least one second MCA;
b. at least one first MRD for imaging at least one first MCA within at least a portion of said body or organ thereof and at least one second MRD for imaging at least one second MCA within at least a portion of said body or organ thereof;
c. a readable computer data defining at least one first multidimensional image and at least one second multidimensional image of the same;
d. a computer processing unit for superimposing or otherwise imbedding said at least one first multidimensional image with at least one second multidimensional image;
e. at least one multidimensional printer in communication with said data for multidimensionally modeling said superimposed or otherwise embedded at least one first MCA and at least one second image.
11 . The multidimensional modeling system of claim 4 , wherein said MRD is selected from a group consisting of MRI, ESR, CT and a combination thereof.
12 . The multidimensional modeling system of claim 4 , wherein said multidimensional model is selected from a group consisting of 2D model and 3D model and wherein said multidimensional printer is a 2D and 3D printer, respectively.
13 . A method of multidimensional modeling contrast agent and fluorophores heterogeneous sources introduced within the body of a patient, the method comprises steps as follows:
a. introducing into patient's body or an organ thereof an effective measure of at least one first MCA and at least one second MCA;
b. by means of at least one MRD, scanning said at least one first MCA located at least a portion of said body or organ thereof and providing data defining a multidimensional image of the same;
c. by means at least one optical detector, detecting said at least one second MCA located at least a portion of said body of organ thereof and providing data defining spatial emission of the same;
d. loading or otherwise streaming said least one first MRD image and said least one second MRD image to a multidimensional printer; and
e. multidimensionally modeling said MCA such that a complex multidimensional model of said MCA is provided.
14 . The method of claim 13 , wherein said least one first MRD and said least one second MRD are selected from a group consisting of CAT scanner, ultrasound imager, infrared imager, X-radiography detecting device, Raman spectroscope, single photon emission computed tomography detector or microwave imager, NMR, MRI, ESR, CT and a combination thereof.
15 . The method of claim 13 , wherein said multidimensional modeling is selected from a group consisting of 2D modeling and 3D modeling and wherein said multidimensional printer is a 2D and 3D printer, respectively.
16 . The method of claim 13 , wherein said least one second MRD is a fluorescence emission camera.
17 . The method of claim 13 , wherein said one second MCA is a NIR fluorophore.
18 . A system for multidimensional modeling contrast agent-fluorophores heterogeneous-sources, the system comprising
a. means for introducing into patient's body or an organ thereof an effective measure of at least one first MCA and least one second MCA;
b. at least one MRD, useful for (i) scanning said at least one first MCA located at least a portion of said body or organ thereof, and (ii) providing data defining a multidimensional image of the same;
c. at least one optical detector, useful for (i) detecting at least one second MCA located at least a portion of said body of organ thereof, and (ii) providing data defining spatial emission of the same;
d. a root of communication for loading or otherwise streaming said least one first MRD image and said least one second MRD image to at least one multidimensional printer; and
e. multidimensionally modeling said MCAs such that a complex multidimensional model of said MCAs is provided.
19 . The system of claim 18 , wherein said least one first MRD and said least one second MRD are selected from a group consisting of CAT scanner, ultrasound imager, infrared imager, X-radiography detecting device, Raman spectroscope, single photon emission computed tomography detector or microwave imager, NMR, MRI, ESR, CT and a combination thereof.
20 . The system of claim 18 , wherein said multidimensional model is selected from a group consisting of 2D model and 3D model and wherein said multidimensional printer is a 2D and 3D printer, respectively.
21 . The system of claim 18 , wherein said least one second MRD is a fluorescence emission camera.
22 . The system of claim 18 , wherein said one second MCA is a NIR fluorophore.