US2016011764A1PendingUtilityA1
Vibration Treatment Method and Graphical User Interface
Est. expiryFeb 1, 2031(~4.5 yrs left)· nominal 20-yr term from priority
G01H 1/00C21D 10/00G06F 3/04847C21D 9/50G06F 3/0482
45
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Claims
Abstract
A graphical user interface for vibration treatment includes control buttons hidden for display of certain screens, and/or a vibration amplitude meter that includes at least one peak amplitude bar and a present amplitude bar extending alongside the at least one peak amplitude bar and graphically coded for an in-range condition and at least one out-of-range condition. Related methods, computer program products, and systems are also disclosed.
Claims
exact text as granted — not AI-modified1 . A computer program product including a non-transitory computer-readable medium including instructions executable by a computer processor of a system to cause the system to display a graphical user interface for vibration treatment, wherein the interface includes:
a vibration amplitude meter including:
an origin,
a range limit oppositely disposed from the origin,
at least one peak amplitude bar representative of a peak amplitude signal and extending from the origin toward the range limit, and
a present amplitude bar representative of a present amplitude signal and extending from the origin toward the range limit alongside the at least one peak amplitude bar, wherein the present amplitude bar is graphically coded for an in-range condition and at least one out-of-range condition.
2 . The product set forth in claim 1 wherein the at least one peak amplitude bar includes two amplitude bars disposed on either side of the present amplitude bar.
3 . The product set forth in claim 1 wherein the present amplitude bar is color-coded a first color for an in-range condition, color-coded a second color for an above-range condition, and color-coded a third color for a below-range condition, wherein the colors are different.
4 . The product set forth in claim 3 wherein the first color is green, the second color is red, and the third color is blue.
5 . The product set forth in claim 1 wherein the vibration amplitude meter also includes a graphically coded border disposed at least on either side of the present amplitude bar.
6 . The product set forth in claim 5 wherein the border is coded for a plurality of amplitude ranges.
7 . The product set forth in claim 6 wherein the border is color-coded a first color for a first amplitude range and color-coded a second color for a second amplitude range.
8 . The product set forth in claim 1 wherein the interface also includes a frequency section including a plurality of graphical vibration frequency control buttons and a numerical vibration frequency meter.
9 . The product set forth in claim 8 wherein the interface also includes a timer section including a numerical chronometer, and a job section including a plurality of graphical job control buttons.
10 . The product set forth in claim 9 wherein all of the control buttons are displayed in a default screen and at least one of the control buttons becomes hidden in at least one other screen.
11 . A computer-controlled vibration treatment system, comprising:
at least one input device to receive data; at least one output device to present data; a memory storing the instructions and data; and a processor coupled to the input and output devices and memory and responsive to the instructions according to claim 1 .
12 . A method of vibration treatment of an object comprising the steps of:
a) providing to a user a graphical user interface including a vibration amplitude meter and a vibration frequency control; b) receiving a first scan request from the user via the vibration frequency control; c) applying increasing amounts of mechanical vibration to the object in response to receipt of the first scan request; d) monitoring frequency and amplitude of the vibration applied to the object in step c); e) storing a first frequency corresponding to maximum amplitude from the first scan; and f) displaying to the user via the vibration amplitude meter of the graphical user interface, an amplitude origin, a range limit oppositely disposed from the origin, at least one peak amplitude bar representative of a peak amplitude signal and extending from the origin toward the range limit, and a present amplitude bar representative of a present amplitude signal and extending from the origin toward the range limit alongside the at least one peak amplitude bar, wherein the present amplitude bar is displayable in an in-range graphical code and in at least one out-of-range graphical code.
13 . The method set forth in claim 12 further comprising the steps of:
g) receiving from the user via the vibration frequency control, a vibration setting to fix the frequency of vibration to be applied to the object to a level such that the present amplitude bar displays the in-range graphical code.
14 . The method set forth in claim 13 further comprising the steps of:
h) applying mechanical vibration to the object at the fixed frequency from step g) for a first time;
i) terminating the application of mechanical vibration upon expiration of the first time;
j) receiving a second scan request from the user via the vibration frequency control;
k) applying increasing amounts of mechanical vibration to the object in response to receipt of the second scan request;
l) monitoring frequency and amplitude of the vibration applied to the object in step k);
m) storing a second frequency corresponding to maximum amplitude from the second scan; and
n) receiving from the user via the vibration frequency control, a vibration setting to fix frequency of vibration to be applied to the object to a level such that the present amplitude bar displays the in-range graphical code.
15 . The method set forth in claim 14 further comprising the steps of:
o) applying mechanical vibration to the object at the fixed frequency from step n) for a second time;
p) terminating the application of mechanical vibration upon expiration of the second time;
q) receiving a subsequent scan request from the user via the vibration frequency control;
r) applying increasing amounts of mechanical vibration to the object in response to receipt of the subsequent scan request;
s) monitoring frequency and amplitude of the vibration applied to the object in step r);
t) storing a subsequent frequency corresponding to maximum amplitude from the subsequent scan; and
u) determining that vibration treatment is complete, if a difference between the second and subsequent frequencies is less than a predetermined amount, otherwise repeating steps q) through u).
16 . The method set forth in claim 15 further comprising the step of continuing to display the present amplitude bar during steps h) and o) and, if the present amplitude signal changes such that the present amplitude bar displays the out-of-range graphical code, allowing the user to adjust the mechanical vibration applied to the object via the vibration frequency control until the present amplitude bar again displays the in-range graphical code.
17 . A computer program product including a non-transitory computer-readable medium including instructions executable by a computer processor of a system to cause the system to implement steps of a method according to claim 12 .
18 . A computer-controlled vibration treatment system, comprising:
at least one input device to receive data; at least one output device to present data; a memory storing program instructions and data; and a processor coupled to the input and output devices and memory and responsive to the program instructions for causing the computer-controlled system to perform a method according to claim 12 .
19 . A computer program product including a non-transitory computer-readable medium including instructions executable by a computer processor of a system to cause the system to display a graphical user interface for vibration treatment, wherein the interface includes:
an amplitude section including a graphical vibration amplitude meter and a numerical vibration amplitude meter; a frequency section including a numerical vibration frequency meter and a plurality of graphical vibration frequency control buttons; a timer section including a numerical chronometer; a job section including a plurality of graphical job control buttons; wherein all of the control buttons are displayed in a default screen and at least one of the control buttons becomes hidden in at least one other screen.
20 . The product set forth in claim 19 wherein at least one of timer set, job done, or job settings buttons are hidden in a scan screen during a scan mode.
21 . The product set forth in claim 19 wherein at least one of amplitude buttons, a frequency ramp button, timer buttons, or job buttons are hidden in a vibration treatment setting screen during a vibration treatment setting mode.
22 . The product set forth in claim 19 wherein amplitude and frequency control buttons are hidden in a vibration treatment screen during a vibration treatment mode.
23 . A computer-controlled vibration treatment system, comprising:
at least one input device to receive data; at least one output device to present data; a memory storing the instructions and data; and a processor coupled to the input and output devices and memory and responsive to the instructions according to claim 19 .Join the waitlist — get patent alerts
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