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2019-11-26
16/199,165
2018-11-24
US 10,486,023 B1
2019-11-26
-
-
John Villecco
2038-11-24
Smart Summary: A new method helps people exercise and coordinate their hands and feet together. It uses a computer with four USB ports and four mice, which can be wired or wireless. Users control four cursors on the screen by moving their left hand, right hand, left foot, and right foot to reach a target. The system tracks how well each extremity performs by measuring speed, distance, and time. The goal is to have all four extremities hit the target at the same time as quickly as possible. π TL;DR
A method of coordinating and exercising the extremities of a person by the independent and/or simultaneous gestures of both the hands and feet. The method comprises the computer, four USB ports and four wired and/or wireless mice that correspond to the four-cursor exponential cognitive human-man-interface (HMI) exercise application The HMI application will instruct the person to begin tracing each of the four cursors on separate tracks in the pattern towards a desired target by the gestures of both the hands and the feet (extremities), which are appended to the mice. Displaying the performance data of each extremity including time, distance, and speed measures the competitiveness of both the hands and the feet against each other. The goal is for the left-hand, right-hand, left-foot and right foot to reach the target at the same time at the fastest speed possible.
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A63B24/0006 » CPC main
Electric or electronic controls for exercising apparatus of preceding groups; Controlling or monitoring of exercises, sportive games, training or athletic performances; Analysing the course of a movement or motion sequences during an exercise or trainings sequence, e.g. swing for golf or tennis Computerised comparison for qualitative assessment of motion sequences or the course of a movement
A61B3/0033 » CPC further
Apparatus for testing the eyes; Instruments for examining the eyes; Operational features thereof characterised by user input arrangements
A61B3/0041 » CPC further
Apparatus for testing the eyes; Instruments for examining the eyes; Operational features thereof characterised by display arrangements
A61B5/1124 » CPC further
Measuring for diagnostic purposes ; Identification of persons; Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes; Measuring movement of the entire body or parts thereof, e.g. head or hand tremor, mobility of a limb Determining motor skills
A61B5/162 » CPC further
Measuring for diagnostic purposes ; Identification of persons; Devices for psychotechnics ; Testing reaction times ; Devices for evaluating the psychological state Testing reaction times
G06F3/0334 » CPC further
Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements; Input arrangements or combined input and output arrangements for interaction between user and computer; Arrangements for converting the position or the displacement of a member into a coded form; Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks ; Accessories therefor Foot operated pointing devices
G09B5/02 » CPC further
Electrically-operated educational appliances with visual presentation of the material to be studied, e.g. using film strip
G16H20/30 » CPC further
ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to physical therapies or activities, e.g. physiotherapy, acupressure or exercising
G06F2203/0382 » CPC further
Indexing scheme relating to -; Indexing scheme relating to Plural input, i.e. interface arrangements in which a plurality of input device of the same type are in communication with a PC
G09B19/00 » CPC further
Teaching not covered by other main groups of this subclass
A63B24/00 IPC
Electric or electronic controls for exercising apparatus of preceding groups; Controlling or monitoring of exercises, sportive games, training or athletic performances
A61B3/00 IPC
Apparatus for testing the eyes; Instruments for examining the eyes
A61B5/16 IPC
Measuring for diagnostic purposes ; Identification of persons Devices for psychotechnics ; Testing reaction times ; Devices for evaluating the psychological state
G06F3/033 IPC
Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements; Input arrangements or combined input and output arrangements for interaction between user and computer; Arrangements for converting the position or the displacement of a member into a coded form Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks ; Accessories therefor
A61B5/11 IPC
Measuring for diagnostic purposes ; Identification of persons; Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes Measuring movement of the entire body or parts thereof, e.g. head or hand tremor, mobility of a limb
In most commercial and residential computer applications, USB ports can be assigned to multiple control devices (e.g. mice, joy sticks) that manage independently one or two computerized cursors but not simultaneously. Hence, the novelty of the invention is moving four cursors simultaneously and/or independently on a computer screen by using a cognitive human-man-interface (HMI) exercise application that maps four computerized cursors against four USB ports that correspond to the gestures of the left-hand, right-hand, left-foot and right-foot which are appended to mice.
A method to exercise and coordinate the simultaneous and/or independent physical gestures of the left-hand, right-hand, left-foot and right-foot (herein sometimes called extremities) which are appended to mice. The objective of the method is to simultaneously and/or independently move and trace the four computerized cursors on separate tracks in a pattern, to arrive at a target at the same time by the gestures of the left-hand, right-hand, left-foot and right-foot. The HMI exercise application displays four mice counter windows on the computer screen that displays the performance data (speed, path deviation, time) of the extremities to enable the person to view the competitiveness of the extremities against each other during and after the exercise and adjust accordingly for the next level of exercise.
FIG. 1. Simultaneously and/or independently move the cursors from each corner of the screen to the middle square by using the left-hand, right-hand, left-foot and right-foot.
FIG. 2. Simultaneously and/or independently move the cursors in each square in the same direction of the arrows by using the left-hand, right-hand, left-foot and right-foot; Start from A to B to C to D to A.
FIG. 3. Simultaneously and/or independently move the cursors in each square in the same direction of the arrows by using the left-hand, right-hand, left-foot and right-foot; Start from D to C to B to A to D.
FIG. 4. Simultaneously and/or independently move the cursors in each triangle in the same direction of the arrows by using the left-hand, right-hand, left-foot, and right-foot; Start from A to B to C to A.
FIG. 5. Simultaneously and/or independently move the cursors in each triangle in the same direction of the arrows by using the left-hand, right-hand, left-foot and right-foot; Start from C to B to A to C.
FIG. 6. Simultaneously and/or independently move the cursors in the pentagram clockwise in each star in the same direction of the arrows by using the left-hand, right-hand, left-foot, right-foot; Start from AB C D E F G H I-J-A
FIG. 7. Simultaneously and/or independently move the cursors counter-clockwise in each star in the same direction of the arrows by using the left-hand, right-hand, left-foot and right-foot; Start from G F E D C B A J-I-H-G
FIG. 8. Pictorial embodiment of invention with numerical identifiers
This is a continuation in part (CIP) of application Ser. No. 15/711,245 which is incorporated herein by references of entry.
The following information references numerical identifiers in FIG. 8. A new innovative method to exercise and coordinate a person's (500) cognitive ability on a computer (100) display screen (200) by the simultaneous and/or independent physical gestures of both the hands and the feet (extremities) of the person (500). The embodiment of the invention comprises the computer display/screen (200), keyboard (150), the four dedicated USB ports (301-304), the four wired and/or wireless control devices, herein called mice (401-404); and a human-man-interface (HMI) cognitive/exercise application (200 and 400) with four assignable computerized cursor drivers (501-504), four mice performance data counters (400) and seven exercise templates at various skill levels (FIG. 1-7). When the person (500) turns on the computer (100), clicks on the HMI icon application (200, 400) and selects one of the seven exercise templates (FIGS. 1-7) the person (500) can begin tracing the four cursors (501-504) at the same time from a starting-point to an end-point on four separate paths on a template simultaneously and/or independently from the gestures of the extremities. The objective of the method is to simultaneously and/or independently move the four cursors from the starting-point (FIG. 1-7) to arrive at the end-point (FIG. 1-7) at the same time at fastest speed possible. The following describes the integration of the computer and the HMI application.
The computer comprises (100) 1) integrated standard computer screen and/or touch screen or extended display (200); 2) integrated computer keyboard or wired and/or wireless keyboard (150); 3) the four dedicated USB ports (301-304), and 4) the four wired and/or wireless mice (401-404). The mouse (401-404) is appended to one of the extremities of the person and assigned the USB port and one of the four colored cursors; left-hand mouse #1 (401) is assigned USB port 1 (301) with a blue blinking cursor (501); right-hand mouse #2 (402) is assigned USB port 2 (302) with a green blinking cursor (502); left-foot mouse #3 (403) is assigned USB port 3 (303) with a yellow blinking cursor (503); and right-foot mouse #4 (404) is assigned USB port 4 (304) with a red blinking cursor (504).
The exercise begins once the person turns on the computer, clicks on the HMI exercise application icon on the computer display screen and subsequently selects one of the seven exercise templates (levels) as depicted in FIGS. 1-7. Once the exercise template is selected the application will display the pattern for the cursor to traverse. Concurrently, the HMI application will assign the blinking color cursors that correspond to the four USB ports which are mapped to the four mice that are appended to the person's extremities. The cursor assignment is discussed in the following format:
HMI left-hand Cursor Driver #1 (501)
HMI right-hand Cursor Driver #2 (502)
HMI left-foot Cursor Driver #3 (503)
HMI right-foot Cursor Driver #4 (504)
The following explains how the person exercises and coordinates cognitive abilities by using the exercise pattern on a template (levels) as depicted in FIGS. 1-8. The person inserts the HMI cognitive application CD in the computer. After initialization, the HMI exercise pattern application icon appears on the computer display for the person to click on which subsequently instructs the person to select one of the seven exercise templates (FIGS. 1-7) to begin the cognitive exercise. After selection of the desired exercise template the person appends the left-hand mouse #1 to the left-hand, the right-hand mouse #2 to the right-hand, the left-foot mouse #3 to the left-foot and the right-foot mouse #4 to the right-foot. After appending the mouse to each extremity of the person, the HMI application on the computer screen presents the person with four colored blinking cursors (blue, green, yellow and red) within the pattern in the template. A colored blinking cursor is displayed in each corner in the pattern on the computer screen; a blinking left-hand blue cursor #1 is displayed at the top left of the pattern; a blinking right-hand green cursor #2 is displayed at the top right of the pattern; a blinking left-foot yellow cursor #3 is displayed at the bottom left of the pattern and a blinking right-foot red cursor #4 is displayed at the bottom right of the pattern. Concurrently with the appearance of the blinking cursor in the pattern, a blinking message βstart exercise pattern application is displayed: YES or NOβ is presented to the person. After clicking on YES, the exercise application for cognitive ability is ready and the person begins tracing the four cursors in the pattern by the simultaneous and/or independent gestures of the left-hand, right-hand, left-foot and right-foot and foot that corresponds to the four The HMI cognitive application records and displays the cursor performance data (speed, path deviation, and accuracy) from the starting-point, to the end-point in the selected pattern for the person to compare the competitiveness of each extremity against the other. The challenge is for the extremities (left-hand, right-hand, left-foot, right-foot) to move the four cursors at the same time from a starting-point to an end-point at the fastest speed possible. The following describes the specific functionality of the seven cognitive exercise pattern templates.
FIG. 1 template (level 1) illustrates a template with an exercise pattern with the four two-dimensional colored blinking computerized cursors that are located at each corner of the pattern (screen) which is displayed on the computer screen by the human-man interface (HMI) exercise pattern template application. The pattern corner is the starting-point for the colored blinking cursor. At the center of the pattern (screen) is the end-point (target). Once a person appends the mice to the extremities as discussed in paragraph [0015], clicks on the HMI exercise pattern application icon, chooses the exercise pattern template, clicks on βYESβ from a displayed ready message the person can start to move or trace the cursor in the pattern from the starting-point towards the block in the center of the pattern (screen), which is the end-point (target), by the simultaneous and/or independent physical gestures of the extremities (left-hand, right-hand, left-foot, right-foot). The person's extremities move: the top left blue cursor in the pattern by the left-hand towards the block in the pattern's center screen (target); the top right green cursor in the pattern by the right-hand towards the block in the pattern's center screen (target); the bottom left yellow cursor in the pattern by the left-foot towards the block in the pattern's center screen (target), and the bottom right red cursor in the pattern by the right-foot towards the block in the pattern's center screen (target). Only the speed results are displayed in the pattern after the four cursors have arrived at the center pattern (screen), ideally at the same time. The displayed speed results of the cursors allow a person to compare the competitiveness of the extremity against the other. Repeating the exercise improves the speed results of the extremity against the others and prepares the person for the next exercise template which employs a different pattern and skill set.
FIG. 2 template (level 2) illustrates the template with four identical rectangular exercise patterns with an equal number of pixels that are displayed on the computer screen by the HMI exercise pattern application. The pattern is for the left-hand, the pattern is for the right-hand, the pattern is for the left-foot and the pattern is for the right-foot. The pattern displays the two-dimensional colored blinking computerized cursors which is located at the top left of the pattern and a specific path for the cursor to traverse. The cursor path in the pattern traverses horizontally (left to right) from the starting-point βAβ to midpoint βBβ; downwards from midpoint βBβ to midpoint βCβ; horizontally (right to left) from midpoint βCβ to midpoint βDβ; and upwards from midpoint βBβ to the end-point βAβ (formerly starting-point βAβ). Once the person appends the mice to the extremities as discussed in paragraph [0015], clicks on the HMI exercise pattern template application icon, chooses the exercise pattern template and selects a displayed ready message βYESβ, activates the exercise application for cognitive abilities. After activation of the pattern application, a person can now start to simultaneously and/or independently move the top left cursor in the pattern from starting-point βAβ to the ending-point βAβ by the physical gestures of the extremities (both the hands and the feet). When FIG. 2 template application is activated, and the person appends the mice to the extremities, the person can:
FIG. 3 template (level 3) illustrates a template with four identical rectangular exercise patterns with an equal number of pixels that is displayed on the computer screen by the HMI exercise pattern application. The pattern is for the left-hand; the pattern is for the right-hand; the pattern is for the left-foot and the pattern is for the right-foot. The pattern displays a two-dimensional colored blinking computerized cursor which is located at the top left of the pattern and a specific path for the cursor to traverse. The cursor path in the pattern traverses horizontally (left to right) from the starting-point βDβ to midpoint βCβ; upwards from midpoint βCβ to midpoint βBβ, horizontally (right to left) from midpoint βBβ to midpoint βAβ; and downward from midpoint βAβ to the end-point βDβ (formerly starting-point βD). Once the person appends the mice to the extremities, as discussed in paragraph [0015], clicks on the HMI exercise pattern application icon, chooses the exercise pattern template application, selects the displayed ready message βYESβ, activates the exercise application of cognitive abilities. After activation of the exercise pattern application, the person can now start to simultaneously and/or independently move the bottom left cursor in the pattern from starting point βDβ to the ending-point βDβ by the physical gestures of the extremities (both the hands and the feet). When FIG. 3 template application is activated, and the person appends the mice to the extremities, the person can:
FIG. 4 template (level 4) illustrates the template with four identical triangular exercise patterns with an equal number of pixels that is displayed on the computer screen by the HMI exercise pattern application. The pattern is for the left-hand; the pattern is for the right-hand; the pattern is for the left-foot; and the pattern is for the right-foot. The pattern displays a two-dimensional colored blinking computerized cursor which is located at the top angle βAβ of the pattern, and a specific path for the cursor to traverse. The cursor path in each triangular pattern traverses from a starting-point angle βAβ to midpoint angle βBβ; from midpoint angle βBβ to midpoint angle βCβ; and midpoint angle βCβ to the end-point angle βAβ (formerly starting-point angle βAβ). The person appends the mice to the extremities as discussed in paragraph [0015], clicks on the HMI exercise pattern application icon, chooses the exercise template application and selects the displayed ready message βYESβ, to activate the exercise application of cognitive abilities. After activation of the pattern application, the person can now start to simultaneously and/or independently move the top angle βAβ cursor in the pattern from a starting point angle βAβ to the ending-point angle βAβ by the physical gestures of the person's extremities. When FIG. 4 template application is activated, and the person appends the mice to the extremities, the person can:
FIG. 5 template (level 5) illustrates a template with four identical triangular exercise patterns with an equal number of pixels that are displayed on the computer screen by the HMI exercise pattern application. The pattern is for the left-hand, the pattern is for the right-hand, the pattern is for the left-foot and the pattern is for the right-foot. The pattern displays a two-dimensional colored blinking computerized cursor which is located at angle (βCβ) of the pattern, and a specific path for the cursor to traverse. The cursor path in each triangular pattern traverses from the starting-point angle βCβ to midpoint angle βBβ; from midpoint angle βBβ to midpoint angle βAβ; and midpoint angle βAβ to the end-point angle βCβ (formerly starting-point angle βCβ). Once the person appends the mice to the extremities as discussed in paragraph [0015], clicks on the HMI exercise pattern application icon, chooses the exercise template application and selects the displayed ready message βYESβ, activates the exercise application of cognitive abilities. After activation of the pattern application, the person can now start to simultaneously and/or independently move starting-point angle βCβ cursor in the pattern from starting-point angle βCβ to the ending-point angle βCβ by the physical gestures of the extremities. When FIG. 5 template application is activated, and the person appends the mice to the extremities, the person can:
FIG. 6 template (level 6) illustrates the template with four identical pentagram exercise patterns with an equal number of pixels that are displayed on the computer screen by the HMI exercise pattern application. The pattern is for the left-hand, the pattern is for the right-hand, the pattern is for the left-foot and the pattern is for the right-foot. The pattern displays a two-dimensional colored blinking computerized cursor which is located on the top angle βAβ of a pattern, and a specific path for the cursor to traverse. The cursor path in each pentagram pattern traverses from a starting-point angle βAβ to midpoint angle βBβ; from midpoint angle βBβ to midpoint angle βCβ; from midpoint angle βCβ to midpoint angle βDβ; from midpoint angle βDβ to midpoint angle βEβ; from midpoint angle βEβ to midpoint angle βFβ, from midpoint angle βFβ to midpoint angle βGβ: from midpoint angle βGβ to midpoint angle βHβ; from midpoint angle βHβ to midpoint angle βIβ; from midpoint angle βIβ to midpoint angle βJβ; and from midpoint angle βJβ to the end-point angle βAβ (formerly starting-point angle βAβ). Once the person appends the mice to the extremities as discussed in paragraph [0015] and clicks on the HMI exercise pattern application icon, chooses the exercise template and selects the displayed ready message βYESβ, activates the exercise application of cognitive abilities. After activation of the pattern application, the person can now start to simultaneously and/or independently move the top angle βAβ cursor in the pattern from starting-point angle βAβ to the ending-point angle βAβ by the physical gestures of the extremities. When FIG. 6 template application is activated, and the person appends the mice to the extremities, a person can:
FIG. 7 template (level 7) illustrates a template with four identical pentagram exercise patterns with an equal number of pixels that is displayed on a computer screen by an HMI exercise pattern application. A pattern is for a left-hand, a pattern is for a right-hand, a pattern is for a left-foot and a pattern is for a right-foot. A pattern displays two-dimensional colored blinking computerized cursors which are located on the mid-point angle βGβ of the pattern, and a specific path for a cursor to traverse. A cursor path in each pentagram pattern traverses from the starting-point angle βGβ to midpoint angle βFβ; from midpoint angle βFβ to midpoint angle βEβ; and midpoint angle βEβ to midpoint angle βDβ; from midpoint angle βDβ to midpoint angle βCβ; from midpoint angle βCβ to midpoint angle βBβ, from midpoint angle βBβ to midpoint angle βAβ: from midpoint angle βAβ to midpoint angle βJβ; from midpoint angle βJβ to midpoint angle βIβ; from midpoint angle βIβ to midpoint angle βHβ; and from midpoint angle βHβ to the end-point angle βGβ (formerly starting-point βGβ). Once the user appends the mice to the extremities as discussed in paragraph [0015] and clicks on the HMI exercise pattern application icon, chooses an exercise template and selects the displayed ready message βYESβ, activates the exercise application of cognitive abilities. After activation of the pattern application, the person can now start to simultaneously and/or independently move the mid-point angle βGβ cursor in the pattern from starting-point angle βGβ to the ending-point angle βGβ by the physical actions of the four extremities. When FIG. 7 template application is activated, and a user appends the mice to the extremities, the person can:
1. An apparatus for moving four computerized cursors simultaneously by corresponding gestures controlled by a person's left-hand, right-hand, left-foot and right-foot, said apparatus comprising:
a left-hand mouse controlled by the left-hand to manipulate a first cursor of the four computerized cursors,
a right-hand mouse controlled by the right-hand to manipulate a second cursor of the four computerized cursors,
a left-foot mouse controlled by the left-foot to manipulate a third cursor of the four computerized cursors, and
a right-foot mouse controlled the right foot to manipulate a fourth cursor of the four computerized cursors;
a computer to communicate with the person, said computer comprising:
a) a processor to monitor, analyze, calculate, record, and transmit real-time movement data of said four computerized cursors,
b) a memory to store said real-time movement data,
c) a display to exhibit said real-time movement data,
d) four USB ports connected to the left-hand mouse, right-hand mouse, left-foot mouse and right-foot mouse with a one-to-one correspondence; and
e) a cognitive human-man-interface (HMI) application to instruct the person to execute the movement of said four computerized cursors simultaneously on a pattern of a plurality of patterns of various skill levels, wherein the exercise apparatus will enhance mental agility of the person by simultaneously moving said four computerized cursors on said pattern from a starting-point to a target in the fastest time possible;
wherein the processor and the memory transmit said real-time movement data of said four computerized cursors in real-time to four cursor counters on said display wherein each cursor counter is associated with one of the four cursors and simultaneously displays the cursor movement data by gestures of the right-hand mouse, left-hand mouse, left-foot mouse and right-foot mouse; said cursor data movement counters displaying: a) said cursors speed, b) said cursors completion time, c) said cursors path deviation, d) said cursors distance, and e) said cursors accuracy of the left-hand mouse, right-hand mouse, left-foot mouse, and right-foot mouse.
2. The apparatus of claim 1, wherein said cursor counters are located at the top left, top right, bottom left, bottom right of said display,
wherein said four computerized cursors can be assigned a specific color and can blink; and
wherein said plurality of patterns includes seven patterns of various skill levels.
3. The apparatus of claim 1, wherein said left-hand mouse, said right-hand mouse, said left-foot mouse, and said right-foot mouse are connected hard-wired or wirelessly to said four USB ports and said left-hand mouse, said right-hand mouse, said left-foot mouse, and said right-foot mouse are appended to the person's left-hand, right-hand, left-foot and right-foot, respectively.