ULTRASOUND SYSTEM AND SIGNAL PROCESSING UNIT CONFIGURED FOR TIME GAIN AND LATERAL GAIN COMPENSATION
20230380807 ยท 2023-11-30
Assignee
Inventors
Cpc classification
A61B8/463
HUMAN NECESSITIES
A61B8/46
HUMAN NECESSITIES
G06F3/048
PHYSICS
G06F3/04847
PHYSICS
A61B8/465
HUMAN NECESSITIES
A61B8/462
HUMAN NECESSITIES
G06F3/0484
PHYSICS
A61B8/5207
HUMAN NECESSITIES
G06F3/04845
PHYSICS
International classification
A61B8/00
HUMAN NECESSITIES
G06F3/048
PHYSICS
G06F3/04845
PHYSICS
G06F3/0484
PHYSICS
G06F3/04847
PHYSICS
Abstract
The present invention provides an ultrasound system, which comprises: a signal acquiring unit to transmit an ultrasound signal to an object and acquire an echo signal reflected from the object; a signal processing unit to control TGC (Time Gain Compensation) and LGC (Lateral Gain Compensation) of the echo signal; a TGC/LGC setup unit adapted to set TGC and LGC values based on TGC and LGC curves inputted by a user; and an image producing unit adapted to produce an ultrasound image of the object based on the echo signal. The signal processing unit is further adapted to control the TGC and the LGC of the echo signal based on the TGC and LGC values set by the TGC/LGC setup unit.
Claims
1-13. (canceled)
14. An ultrasound system, comprising: a touch panel; and a processor configured to receive, via a probe, echo signals reflected from an object; wherein the processor is configured to display, via the touch panel, multiple straight references each of which corresponds to two or more positions of the ultrasound image, wherein the multiple straight references are visually present on the touch panel, and to generate a value generated based on a single touch input received via the touch panel in a region of the touch panel in which the multiple straight references are displayed, the value generated based on the single touch input intersecting successively with the displayed multiple straight references, wherein the processor is configured to adjust compensation setting values of the two or more positions of the ultrasound image, based on the successive intersection of the value with the displayed multiple straight references corresponding to the two or more positions of the ultrasound image, wherein the single touch input successively intersects with a plurality of the displayed multiple straight references corresponding to the two or more positions, and wherein the compensation setting values comprises at least one of a time gain compensation (TGC) value or a lateral gain compensation (LGC) value.
15. An ultrasound system, comprising: a touch panel; wherein the touch panel displays a first ultrasound image, displays multiple straight references, and receives a single touch input in a shape crossing the multiple straight references, wherein the multiple straight references are lines aligned in parallel, and wherein the single touch input is related to a time gain compensation (TGC) or a lateral gain compensation (LGC).
16. The ultrasound system of claim 15, wherein the touch panel outputs a second ultrasound image, the second ultrasound image is an image in which TGC or LGC of a received signal is adjusted according to a TGC or LGC value determined through the single touch input.
17. An ultrasound system, comprising: a scanner configured for transmitting an ultrasound signal to an object and receiving echo signals reflected from the object; and a processor configured to: display, via a touch panel, multiple straight references each of which corresponds to two or more positions of the ultrasound image, wherein the multiple straight references are visually present on the touch panel; generate a value generated based on a single touch input received via the touch panel in a region of the touch panel in which the multiple straight references are displayed, the value generated based on the single touch input intersecting successively with the displayed multiple straight references; and adjust compensation setting values of the two or more positions of the ultrasound image, based on the successive intersection of the value with the displayed multiple straight references corresponding to the two or more positions of the ultrasound image, wherein the single touch input successively intersects with a plurality of the displayed multiple straight references corresponding to the two or more positions, and wherein the compensation setting values comprises at least one of a time gain compensation (TGC) value or a lateral gain compensation (LGC) value.
18. The ultrasound system of claim 17, comprising: the touch panel configured to display the multiple straight references.
19. The ultrasound system of claim 14, wherein the value generated based on single touch input is not displayed on the touch panel, and the touch panel displays the ultrasound image after the compensation.
20. The ultrasound system of claim 14, wherein the received single touch input sets a TGC reference for setting TGC values or LGC reference for setting LGC values.
21. The ultrasound system of claim 20, wherein the compensation is a TGC or a LGC depending upon whether the received single touch input related to TGC compensation or LGC compensation.
22. The ultrasound system of claim 21, wherein the processor is further configured to perform an initial TGC or LGC based on a predetermined TGC or LGC value before the compensation.
23. The ultrasound system of claim 14, wherein the processor is further configured to control the touch panel to display a first reference line and a second reference line, which are perpendicular to each other, used to determine whether the single touch input is a TGC input or a LGC input based on the intersection of the single touch input with the first reference line or the second reference line.
24. The ultrasound system of claim 23, wherein the processor is further configured to control the touch panel to further display a first group of lines perpendicular to the first reference line, each of which is spaced apart from adjacent lines at a first uniform distance, and a second group of lines perpendicular to the second reference line, each of which is spaced apart from adjacent lines at a second uniform distance.
25. The ultrasound system of claim 24, wherein the processor is further configured to determine that the received single touch input is the TGC input when the value intersects the first group of lines more than the second group of lines, and to determine that the received single touch input is the LGC input when the value intersect the second group of lines more than the first group of lines.
26. The ultrasound system of claim 25, wherein the processor is further configured to calculate a new TGC value based on the intersection of the value with the first reference line if the received single touch input is the TGC input, and to calculate a new LGC value based on the intersection of the value with the second reference line, if the received single touch input is the LGC input.
27. The ultrasound system of claim 26, wherein the processor is further configured to perform compensation based on the new TGC value or the new LGC value.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Arrangements and embodiments may be described in detail with reference to the following drawings in which like reference numerals refer to like elements and wherein:
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE PRESENT INVENTION
[0015] A detailed description may be provided with reference to the accompanying drawings. One of ordinary skill in the art may realize that the following description is illustrative only and is not in any way limiting. Other embodiments of the present invention may readily suggest themselves to such skilled persons having the benefit of this disclosure.
[0016] Certain embodiments of the present invention will be explained below with reference to
[0017] As illustrated in
[0018] The signal processing unit 130 may be configured to amplify the signals collected by the beam former 120 and control gains of the amplified echo signals. Specifically, the signal processing unit 130 may be configured to perform TGC (Time Gain Compensation) and LGC (Lateral Gain Compensation) upon the echo signals based on predetermined TGC and LGC values at a coarse compensation mode (e.g., in an initial operation stage). The signal processing unit 130 may be further configured to perform TGC and LGC upon the echo signals based on TGC and LGC values calculated in s TGC/LGC setup unit 160 using a curve inputted by a user at a fine compensation mode (e.g., during operations).
[0019] The processor 140 may be configured to receive the echo signals from the signal processing unit 130 and produce an ultrasound image signal based on the echo signals. The display unit 150 may be adapted to receive the ultrasound image signal from the processor and display an ultrasound image based on the signal.
[0020] The TGC/LGC setup unit 160 may include a touch panel 161 and a TGC/LGC setup processor 162.
[0021] The touch panel 161 may be configured to display a setup screen and detect TGC/LGC curves inputted by the user on the touch panel 161 to produce a detecting signal. The touch panel 161 detects the user's input according to either the pressure sensing method or the electromagnetic induction method. The touch panel 161 may be a touch panel included in a control panel (not shown) of the ultrasound system 100. Alternatively, it may be separate and apart from the ultrasound system 100.
[0022] In one embodiment of the present invention, the touch panel 161 may be configured to display a scrap screen 210 (shown in
[0023] In another embodiment of the present invention, the touch panel 161 may be configured to display a setup screen 220 (shown in
[0024] In yet another embodiment of the present invention, the touch panel 161 may be configured to display a first setup screen 231 (shown in
[0025] In still yet another embodiment of the present invention, the touch panel 161 may be configured to display a setup screen 240 (shown in
[0026] The TGC/LGC setup processor 162 may be configured to detect TGC and LGC curves 510, 520 inputted by the user on the touch panel 161. The TGC/LGC setup processor 162 may then calculate new TGC and LGC values in consideration of the detected TGC and LGC curves and transmit the values to the signal processing unit 130.
[0027] In one embodiment of the present invention, as illustrated in
[0028] The present invention allows the user to accurately control the TGC and LGC by using the TGC and LGC curves inputted into the touch panel, thereby improving operational accuracy and time. Further, the present invention reduces the size of the control panel to thereby improve the spatial efficiency.
[0029] Although the present invention has been described with reference to a number of preferred embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this disclosure. More particularly, numerous variations and modifications are possible in the component pans and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, alternative uses will also be apparent to those skilled in the art.