Claims
- 1. Device for quantification of bodies that are contained in an object under examination, comprising
a) at least one transducer for emitting an ultrasound field with which the bodies that are contained in a layer in the object under examination can be excited to emit characteristic ultrasonic signals, and to receive characteristic signals, b) at least one data processing system to determine the number of bodies in the layer that consists of the characteristic signals, as well as c) means with which the ultrasound field can be shifted after an excitation of bodies in a first layer in an object under examination, such that bodies can be excited after shifting into a second layer, whereby the first layer and the second layer overlap and are displaced relative to one another in a parallel and defined manner.
- 2. Device according to claim 1, characterized in that the bodies represent bubbles.
- 3. Device according to claim 1 or 2, wherein the ultrasound field can be shifted by at least 5 μm.
- 4. Device according to one of claims 1 to 3, wherein at least one transducer exhibits a two-dimensional or a three-dimensional array of piezo crystals.
- 5. Device according to claim 4, wherein means are provided with which the object under examination and the two-dimensional array are shifted relative to one another.
- 6. Device according to claim 4, wherein a control for the piezo crystals in the three-dimensional array is provided, with which adjacent sound fields emanating from piezo crystals in a piezo crystal row in the array or sound fields emanating from adjacent piezo crystal rows in the array can be overlapped.
- 7. Device according to claim 4, wherein means are provided with which the object under examination and at least one transducer are shifted relative to one another.
- 8. Device according to one of the preceding claims, wherein at least one motor drive is provided to shift the object under examination or at least one transducer relative to one another.
- 9. Device according to one of the preceding claims, wherein a holding device, with which the object under examination is clamped, and a movable holding device for at least one transducer are provided.
- 10. Device according to one of the preceding claims, wherein an image evaluation system for data processing and image display is provided with which the quantification of bodies can be implemented by video densitometry.
- 11. Device according to claim 10, wherein the body represents a bubble.
- 12. Use of the device according to one of claims 1-11 for ultrasonic diagnosis and/or ultrasonic therapy in humans or in animals.
- 13. Use of the device according to one of claims 1-11 for in-vivo and ex-vivo mapping of physiologically upward- or downward-adjustable molecular markers in organs and tissues starting from postembryonic ontogenesis, for in-vivo and ex-vivo mapping of pathologically upward- or downward-adjustable molecular markers in organs and tissues during pathogenesis, and for the characterization of cell cultures by in-vitro mapping of upward- and downward-adjustable molecular markers of the cells, whereby the bodies have specific binding molecules for the markers.
- 14. Use of the device according to claim 13, wherein the bodies represent bubbles.
- 15. Process for quantification of bodies that are contained in an object under examination, in which
a) bodies with an ultrasound field that are contained in a layer in the object under examination are excited to produce characteristic ultrasonic signals, b) the ultrasonic signals are received, c) the number of bodies is determined from the ultrasonic signals that are received, and d) after bodies are excited in a first layer in the object under examination, the ultrasound field is shifted such that bubbles are excited after displacement into a second layer, whereby the first layer and the second layer overlap and are shifted relative to one another in a parallel and defined manner.
- 16. Process according to claim 15, wherein the bodies represent bubbles.
- 17. Process according to claim 16, wherein the bubbles are destroyed when excited and in this case are excited to emit the characteristic signals.
- 18. Process according to one of claims 15-17, wherein the ultrasound field is shifted by at least 5 μm.
- 19. Process according to one of claims 15-18, wherein the object under examination and at least one transducer that emits the ultrasound field are shifted relative to one another.
- 20. Process according to claim 19, wherein the object under examination is shifted relative to at least one fixed transducer or wherein at least one transducer is shifted relative to a fixed object under examination.
- 21. Process according to one of claims 15-20 for ultrasonic diagnosis and/or ultrasonic therapy in humans or in animals.
- 22. Process according to one of claims 15-20 for implementing an in-vivo and ex-vivo mapping of physiologically upward- or downward-adjustable molecular markers in organs and tissues starting from postembryonic ontogenesis, an in-vivo and ex-vivo mapping of pathologically upward- or downward-adjustable molecular markers in organs and tissues during pathogenesis, and for the characterization of cell cultures by in-vitro mapping of upward- and downward-adjustable molecular markers of the cells, whereby bubbles are used that have specific binding molecules for the markers.
Priority Claims (1)
Number |
Date |
Country |
Kind |
102 15 335.3 |
Mar 2002 |
DE |
|
Parent Case Info
[0001] This application claims the benefit of the filing date of U.S. Provisional Application Serial No. 60/378,358 filed May 8, 2002.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60378358 |
May 2002 |
US |