automated external defibrillator

The integration of a sound and visual notification system in AEDs addresses the issue of unclear discharge timing, ensuring rescuers are alerted effectively, thereby reducing delays in administering the shock.

JP7817838B2Active Publication Date: 2026-02-19NIHON KOHDEN CORP
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Patent Information

Application Number
JP2022001892
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-01-07
Publication Date
2026-02-19
Estimated Expiration
2042-01-07

AI Technical Summary

Technical Problem

Existing automated external defibrillators (AEDs) may not effectively notify rescuers of an impending discharge, particularly in models without a shock button, leading to potential delays in recognizing the timing of automatic discharge.

Method used

Incorporating a sound output unit that provides a timing sound and a warning sound, controlled by a sound control unit, to clearly indicate when a high voltage discharge is about to occur, accompanied by visual cues on the screen display unit.

Benefits of technology

Ensures rescuers are promptly notified of an impending discharge through auditory and visual signals, enhancing awareness and reducing the risk of delays in administering the shock.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Abstract

To provide an AED that clearly notifies a rescuer of timing for electric discharge so that the rescuer can recognize that the electric discharge will be performed.SOLUTION: An automated external defibrillator 1 includes: a sound generator 101 that outputs a timing sound expressing, by sound, timing until the electric shock is delivered, and a warning sound expressing a state in which an internal capacitor in the automated external defibrillator 1 has been charged with a high voltage; and a sound controller 103B that controls the sound generator 101, wherein the sound controller 103B changes the warning sound in accordance with presence or absence of output of the timing sound.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present disclosure relates to automated external defibrillators. [Background technology]

[0002] Automated external defibrillators (hereinafter also referred to as AEDs), which restore cardiac function in victims who have suffered sudden cardiac arrest due to ventricular fibrillation by delivering a strong electric shock for defibrillation to the heart, are rapidly becoming popular. When delivering an electric shock to a victim, AEDs discharge a high voltage, so mechanisms are known to prevent rescuers from receiving an electric shock. For example, Patent Document 1 discloses an AED equipped with a safety interlock that prevents discharge until the rescuer releases their hands from the victim. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Special Publication No. 2014-521476 Summary of the Invention [Problem to be solved by the invention]

[0004] In the AED disclosed in Patent Document 1, the rescuer may not realize that the discharge will not occur unless the rescuer releases his or her hands from the injured person, which may result in a delay in discharge. In particular, in the case of an automated external defibrillator (hereinafter also referred to as an autoshock AED) that does not have a shock button, there are cases where the rescuer is unaware that the automatic discharge will occur, or where the rescuer is unable to recognize the timing of the automatic discharge from the simple voice or on-screen countdown notification.

[0005] The present disclosure aims to provide an AED that clearly notifies a rescuer when discharge will occur so that the rescuer can recognize that discharge will occur. [Means for solving the problem]

[0006] An automated external defibrillator according to one aspect of the present disclosure includes: configured to deliver a defibrillating electric shock to the subject's heart, a sound output unit that outputs a timing sound that indicates the timing until the electric shock is administered and a warning sound that indicates that a high voltage is being charged in an internal capacitor of the automated external defibrillator; a sound control unit that controls the sound output unit, The sound control unit changes the warning sound depending on whether or not the timing sound is output. [Effects of the Invention]

[0007] According to the present disclosure, it is possible to provide an AED that clearly notifies a rescuer of the timing of discharge so that the rescuer can recognize that discharge is about to occur. [Brief explanation of the drawings]

[0008] [Figure 1] 1 is an external view of an AED according to an embodiment of the present disclosure. FIG. [Figure 2] 1 is a block diagram showing the configuration of an AED according to an embodiment of the present disclosure. FIG. [Figure 3] FIG. 10 is a diagram showing a rescue processing flow of an AED according to an embodiment of the present disclosure. [Figure 4] FIG. 2 is an explanatory diagram showing a screen display unit of an AED according to an embodiment of the present disclosure. [Figure 5] FIG. 2 is a diagram showing a screen display processing flow of the AED according to the first embodiment of the present disclosure. [Figure 6] FIG. 2 is a diagram showing a transition flow of the screen display section of the AED according to the first embodiment of the present disclosure. [Figure 7] FIG. 10 is a diagram showing a sound output processing flow of an AED according to a second embodiment of the present disclosure. [Figure 8] FIG. 10 is a diagram showing a sound output processing flow of an AED according to a third embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION

[0009] Hereinafter, embodiments of the present disclosure will be described with reference to the drawings. For the sake of convenience, descriptions of components having the same reference numerals as those already described in the description of the embodiments will be omitted. Furthermore, for the sake of convenience, the dimensions of each component shown in the drawings may differ from the actual dimensions of each component.

[0010] FIG. 1 is an external view of an AED according to an embodiment of the present disclosure. The AED 1 according to an embodiment of the present disclosure includes an AED main body 10 (housing main body) and a cover 12 that covers the AED main body 10, and is configured to be connectable to a battery pack 11, a cable 13, and electrode pads 14 and 15. The battery pack 11 incorporates a battery cell 11A (see FIG. 2) and supplies power to the AED main body 10 for operating the AED main body 10 and the electrode pads 14 and 15. The battery pack 11 is detachably connected to the rear side of the AED main body 10. The cover 12 is configured to cover the AED main body 10. When the cover 12 is open, the main power supply of the AED 1 is turned ON, and when the cover 12 is closed, the main power supply of the AED 1 is turned OFF. Note that the configuration is not limited to turning the power ON / OFF by opening and closing the cover 12; for example, a power button may be provided on the housing main body 10. The cable 13 electrically connects the AED main body 10 and the electrode pads 14 and 15. The electrode pads 14, 15, when attached to an injured or sick person (subject), enable treatment such as electrocardiogram analysis and electric shock (hereinafter also referred to as "discharge treatment") to the injured or sick person.

[0011] The AED main unit 10 includes a screen display unit 100, a sound output unit 101, and an indicator 102 as user interfaces. The screen display unit 100 is a display capable of displaying illustrations, text, etc., and visually indicates to the rescuer how to attach the electrode pads 14, 15, how to administer an electric shock, etc. The sound output unit 101 is a speaker that audibly notifies the rescuer of how to attach the electrode pads 14, 15, how to administer an electric shock, and a warning sound indicating that a high voltage is being charged inside the AED main unit 10. The indicator 102 is composed of a lamp that can light up or flash, etc., and visually indicates to the rescuer whether the AED 1 is ready for use, etc.

[0012] 2 is a block diagram showing the configuration of an AED according to an embodiment of the present disclosure. The battery pack 11 includes a battery cell 11A. The AED main body 10 includes a screen display unit 100, a sound output unit 101, an indicator 102, a control unit 103, a memory unit 104, a high-voltage unit 105, and an electrocardiogram analysis unit 106. The control unit 103 controls various operations of the AED 1. The control unit 103 has a display control unit 103A, a sound control unit 103B, a power control unit 103C, and an electrode pad control unit 103D. When the cover unit 12 is opened and the main power supply of the AED 1 is turned ON, the control unit 103 reads out programs and the like stored in the memory unit 104, executes the programs and the like, and controls various operations of the AED 1.

[0013] The display control unit 103A reads image data relating to guidance for the rescuer, such as how to attach the electrode pads 14, 15, how to administer an electric shock, and time information relating to the time until the discharge process is performed (hereinafter, explanation will be given using count characters, which are one form of time information, as an example), which are pre-stored in the storage unit 104, and transmits the read image data to the screen display unit 100. The screen display unit 100 displays the received image data on the screen.

[0014] Furthermore, the display control unit 103A transmits a control signal for a lamp or the like of the indicator 102 to the indicator 102 in order to notify the rescuer whether the AED 1 is in a usable state. The indicator 102 turns on, off, or flashes based on the control signal received.

[0015] The sound control unit 103B reads out sound data relating to guidance to the rescuer, such as how to attach the electrode pads 14 and 15, how to administer an electric shock, a warning sound indicating that a high voltage is being charged inside the AED main body 10, and a timing sound until the discharge process is performed, which are pre-recorded in the memory unit 104, and transmits the read sound data to the sound output unit 101. The sound output unit 101 outputs sound based on the received sound data.

[0016] The power supply control unit 103C controls the battery cell 11A and the internal capacitor so that the internal capacitor of the high voltage unit 105 is charged by the battery cell 11A and discharged from the electrode pads 14 and 15.

[0017] The electrode pad control unit 103D determines whether the electrode pads 14, 15 are attached to the injured person, and controls the electrode pads 14, 15 and the electrocardiogram analysis unit 106 so as to cause the electrocardiogram analysis unit 106 to perform electrocardiogram analysis.

[0018] The storage unit 104 stores programs for controlling various operations of the AED 1 and the like. The electrocardiogram analysis unit 106 performs electrocardiogram analysis of the injured person through the electrode pads 14 and 15 .

[0019] 3 is a diagram showing a rescue process flow of the AED according to the embodiment of the present disclosure. When the cover 12 is opened and the main power supply of the AED 1 is turned ON, the control unit 103 reads out a program stored in the memory unit 104 and starts the rescue process (S100).

[0020] The power supply control unit 103C starts charging the internal capacitor of the high voltage unit 105 using the battery cell 11A (S102).

[0021] Next, the display control unit 103A and the sound control unit 103B provide guidance to the rescuer on how to attach the electrode pads 14, 15 to the injured person (S103). Specifically, the display control unit 103A transmits image data relating to how to attach the electrode pads 14, 15 to the injured person to the screen display unit 100, and the screen display unit 100 displays the image data to the rescuer. At the same time, the sound control unit 103B transmits sound data relating to how to attach the electrode pads 14, 15 to the injured person to the sound output unit 101, and the sound output unit 101 outputs sound to the rescuer based on the received sound data.

[0022] Next, the electrode pad control unit 103D measures the impedance between the electrode pads 14, 15 and determines whether the electrode pads 14, 15 are attached to the injured person based on the measured impedance (S104). If it is determined that the electrode pads 14, 15 are not attached to the injured person, the display control unit 103A and the sound control unit 103B again provide guidance to the rescuer on how to attach the electrode pads 14, 15 to the injured person (S103). If it is determined that the electrode pads 14, 15 are attached to the injured person, the electrode pad control unit 103D instructs the electrocardiogram analysis unit 106 to perform electrocardiogram analysis. The electrocardiogram analysis unit 106 performs electrocardiogram analysis based on the instruction from the electrode pad control unit 103D (S105). After starting the electrocardiogram analysis, the electrode pad control unit 103D determines whether the electrode pads 14, 15 are attached to the injured person, and if the electrode pads 14, 15 are removed, similar to step S103, provides guidance to the rescuer on how to attach the electrode pads 14, 15 to the injured person. If the electrode pads 14, 15 are reattached, the electrocardiogram analysis unit 106 performs the electrocardiogram analysis again.

[0023] Next, the electrode pad control unit 103D determines whether an electric shock is necessary based on the electrocardiogram analysis result of the electrocardiogram analysis unit 106 (S106). If the electrode pad control unit 103D determines that an electric shock is necessary, the power supply control unit 103C determines whether charging of the internal capacitor of the high-voltage unit 105 is complete (S107). If the power supply control unit 103C determines that charging of the internal capacitor is complete, the sound control unit 103B starts outputting an alarm sound to the rescuer, notifying the rescuer that a high voltage is being charged inside the AED main body 10 (S108). The alarm sound is, for example, a continuous buzzer sound. By hearing the alarm sound, the rescuer can recognize that a high voltage may be discharged from the AED main body 10.

[0024] Approximately simultaneously with step S108, the display control unit 103A and the sound control unit 103B start providing pre-discharge attention guidance to the rescuer (S109). Details of the pre-discharge attention guidance will be described later. Note that the display control unit 103A and the sound control unit 103B may start step S109 before step S108.

[0025] If it is determined that the electrode pads 14, 15 are attached to the injured person, the power supply control unit 103C performs a discharge process on the injured person (S110). The power supply control unit 103C may perform the discharge process automatically after performing a pre-discharge warning guidance, or may be configured to perform the discharge process after the rescuer presses a discharge button (not shown).

[0026] After performing the discharge process, the control unit 103 stops outputting the pre-discharge attention-calling guidance and warning sound (S111). The control unit 103 repeats the above-mentioned steps S102 to S111 (S101). In step S106, if the electrode pad control unit 103D determines that the discharge process is unnecessary based on the electrocardiogram analysis result of the electrocardiogram analysis unit 106, the control unit 103 ends the rescue process (S112).

[0027] An example of the pre-discharge attention guidance (S109) shown in FIG. 3 will be described with reference to FIG. 4 is an explanatory diagram showing a screen display unit of an AED according to an embodiment of the present disclosure. Screen display unit 100 has a timing display unit 107, a background display unit 108, an illustration display unit 109, and a warning character display unit 110. Timing display unit 107, background display unit 108, illustration display unit 109, and warning character display unit 110 perform the following processing as an example of the pre-discharge attention guidance (S109) shown in FIG.

[0028] The timing display unit 107 displays time information regarding the time remaining until the discharge process is performed. The time information is preferably count characters indicating the remaining time until the discharge process as a numerical value, and the following explanation will use the count characters. Note that the time information (count characters) may also be information showing decimal points. The background display unit 108 displays background colors, background patterns, etc. Furthermore, the background display unit 108 changes the background color, background patterns, etc. to inform the rescuer of the risk of electric shock due to the discharge process being performed. The illustration display unit 109 displays an illustration, such as that shown in FIG. 4, to encourage the rescuer to stay away from the injured person. The warning character display unit 110 displays characters such as "Please move away" as shown in FIG. 4 to encourage the rescuer to stay away from the injured person. Here, the term "illustration" refers to an illustration of people such as rescuers and injured people, and equipment such as an AED. The background area other than the people and equipment within the dashed line indicated by reference numeral 109 in FIG. 4 is not included in the illustration display section 109, but is included in the background display section 108.

[0029] As an example of the above-mentioned attention-calling guidance (S109), the display control unit 103A shown in FIG. 2 changes the color displayed on the screen display unit 100 depending on the time remaining until the discharge process is performed. Here, "color" means at least one of hue, saturation, and brightness. Note that instead of changing the color displayed on the screen display unit 100, the pattern displayed on the screen display unit 100 (solid color, diagonal hatching) may be changed. According to this configuration, the rescuer can easily notice the change in the display screen of the screen display unit 100 and can recognize that discharge has started.

[0030] The display control unit 103A may change the color displayed on the screen display unit 100 at a predetermined time interval (for example, 0.5 seconds) that is shorter than the time interval at which the numerical value of the time information (count characters) changes. For example, if the color displayed on the screen display unit 100 changes at 0.5 second intervals, two colors are displayed while the same time information (count characters) is displayed. Note that the time information here is information consisting of discrete numerical values. According to this configuration, the color of the time information (count characters) etc. displayed on the screen display unit 100 changes even while the numerical values ​​of the time information (count characters) are not updated, so the rescuer can easily notice the change in the display screen of the screen display unit 100 and recognize that discharge has begun.

[0031] Furthermore, the display control unit 103A may change the color displayed on the screen display unit 100 at the timing when the value of the time information until the discharge process is performed changes. Note that the time information here is information made up of discrete values. According to this configuration, the rescuer can easily notice the change in the display screen of the screen display unit 100 when the numerical value of the time information (count characters) until the discharge process is performed changes, and can recognize that the discharge process is about to begin.

[0032] In addition, the display control unit 103A may change at least one of the color and pattern of part or all of at least one of the time information (count characters) displayed on the timing display unit 107, the background color or background pattern displayed on the background display unit 108, the illustration information displayed on the illustration display unit 109, and the text information displayed on the warning text display unit 110, depending on the time until the discharge process is performed. According to this configuration, by changing at least one of the color and pattern of the time information (count characters) etc. displayed on the timing display unit 107, the rescuer can easily grasp the current time information (count characters) when looking at the screen display unit 100, and the rescuer can easily recognize that discharge will start. Alternatively, according to this configuration, by changing the background color etc. of the background display unit 108, the rescuer can easily notice the change in the screen display unit 100 when he or she is not looking at the screen display unit 100, and can recognize that discharge will start.

[0033] In addition, the display control unit 103A may change the color of part or all of at least one of the time information (count characters) displayed on the timing display unit 107, the background color or background pattern displayed on the background display unit 108, the illustration information displayed on the illustration display unit 109, and the text information displayed on the warning text display unit 110, so that the angle of the hue difference in a hue circle divided into 24 equal parts is at least 45 degrees. According to this configuration, by changing the hue of the time information (count characters), etc. to a hue that is not a similar hue, the change in the screen display unit 100 becomes more noticeable, making it easier for the rescuer to notice the change in the screen display unit 100 and recognize that discharge has begun.

[0034] Returning to FIG. 2, an example of the pre-discharge attention guidance (S109) shown in FIG. 3 will be described. As another example of the pre-discharge attention guidance (S109) shown in Fig. 3, sound output unit 101 shown in Fig. 2 outputs a warning sound indicating that a high voltage is being charged in the internal capacitor of high-voltage unit 105, and a timing sound until the discharge process is performed. Here, the timing sound means a counting sound consisting of discrete numbers such as "3," "2," and "1."

[0035] Sound control unit 103B changes the warning sound depending on whether or not a timing sound is output. That is, sound control unit 103B may change at least one of the volume, scale, and tone of the warning sound depending on whether or not a timing sound is output. According to this configuration, the rescuer can easily notice the timing sound even while the warning sound is sounding, and can easily recognize that discharge is about to begin.

[0036] Specifically, sound control unit 103B may set the volume of the warning sound when a timing sound is output lower than the volume of the warning sound when the timing sound is not output, or may set it to zero; may set the pitch of the warning sound when a timing sound is output lower than the pitch of the warning sound when the timing sound is not output; or may set the tone of the warning sound when a timing sound is output different from the tone of the warning sound when the timing sound is not output. According to this configuration, by reducing the volume of the warning sound when the timing sound is output, the rescuer can easily notice the timing sound even while the warning sound is sounding, and can recognize that discharge is about to begin. Alternatively, by lowering the pitch of the warning sound when the timing sound is output, the rescuer can easily notice the timing sound even while the warning sound is sounding, and can recognize that discharge is about to begin. Alternatively, by making the tone of the warning sound when the timing sound is output different from the tone of the warning sound when the timing sound is not output, the rescuer can easily notice the timing sound even while the warning sound is sounding, and can recognize that discharge is about to begin.

[0037] Furthermore, sound control unit 103B may change at least one of the volume, scale, and tone of the timing sound depending on the number of times the timing sound is output. Regarding the number of times the timing sound is output, for example, if the timing sound is a counting sound that outputs the numbers "3," "2," and "1" as sounds, the number of times the timing sound is output is three. According to this configuration, as the number of times the timing sound is output increases, the volume of the timing sound is increased, the pitch of the timing sound is raised, or the tone of the timing sound is made different from that of the warning sound, so that the rescuer can easily notice the timing sound even while the warning sound is sounding, and can be made to recognize that discharge is about to begin.

[0038] Fig. 5 is a diagram showing a screen display processing flow of the AED according to the first embodiment of the present disclosure. The display control unit 103A shown in Fig. 2 performs a screen display process (S200) to change the color displayed on the screen display unit 100 according to the time remaining until the discharge process is performed, as an example of the attention-calling guidance (S109) shown in Fig. 3.

[0039] Control unit 103 starts counting the time until discharge processing is performed (S201). Simultaneously with the start of counting, timing display unit 107 displays time information (count characters) in a first color (S202). Note that instead of timing display unit 107 displaying time information (count characters) in the first color, background display unit 108 may display a background color or background pattern in the first color, illustration display unit 109 may display the above-mentioned illustration information in the first color, or warning character display unit 110 may display the above-mentioned character information in the first color.

[0040] Next, after a predetermined time between 0 and 1 second has elapsed since the start of counting (S204), the timing display unit 107 changes the color of the time information (count characters) from the first color to the second color (S205). Next, the control unit 103 updates the value of the time information (count characters) one second after the start of counting (S206) (S207). Specifically, 1 is subtracted from the value N of the time information (count characters). If the value N of the updated time information (count characters) is greater than 0, steps S204 to S207 are repeated, and if the value N of the updated time information (count characters) is 0, the display control unit 103A ends the screen display process (S208). Note that the value N of the time information (count characters) is a discrete value.

[0041] In this embodiment, the timing display unit 107 is configured to change the color of the time information (count characters) from a first color to a second color (S205), but it may also be configured to change the color of the time information (count characters) from the second color to a third color multiple times while the numerical value of the time information (count characters) is being updated. Note that instead of changing the color, the background or the pattern (solid color, diagonal hatching) of the time information (count characters) may be changed.

[0042] FIG. 6 is a diagram showing a transition flow of the screen display unit of the AED according to the first embodiment of the present disclosure. In FIG. 6, the vertical axis represents time, and shows a flow in which the background color displayed in the background display unit 108 changes with the passage of time until the discharge process is performed. 2 alternately changes the background color displayed on background display unit 108 between a first color and a second color at predetermined time intervals (e.g., 0.5 second intervals) that are shorter than the time intervals (e.g., 1 second intervals) at which the numerical values ​​of the time information (count characters) change. In this case, two background colors, the first color and the second color, are displayed on background display unit 108 while the same count characters are displayed.

[0043] 7 is a diagram showing a sound output processing flow of the AED according to the second embodiment of the present disclosure. As another example of the attention-calling guidance (S109) shown in FIG. 3, the sound control unit 103B performs sound output processing to change the warning sound depending on whether or not a timing sound is output (S300).

[0044] The sound output unit 101 outputs a guidance sound such as "Please move away" to encourage the rescuer to move away from the injured person because the discharge process is being performed (S301).

[0045] Next, the control unit 103 starts counting until the discharge process is performed (S302). After the countdown starts, the sound control unit 103B changes the volume setting of the warning sound (S304). At the same time as changing the volume of the warning sound to be output, the sound output unit 101 starts outputting a timing sound (S305). Here, the timing sound may be a sound that indicates the time until the discharge process is performed using numbers or the like, or it may be a beep sound. By having the sound output unit 101 lower the volume of the warning sound and output the timing sound, the rescuer can easily hear both the timing sound and the warning sound and recognize that discharge is about to start.

[0046] Next, after a predetermined time has elapsed since the start of counting (S306), sound output unit 101 stops outputting the timing sound (S307), and sound control unit 103B returns the volume setting of the warning sound to the original (S308). As a result, sound output unit 101 outputs only the warning sound at the original volume setting. Next, one second after the start of counting (S309), the control unit 103 updates the value of the time information (count characters) (S310). Specifically, 1 is subtracted from the value N of the time information (count characters). If the value N of the updated time information (count characters) is greater than 0, steps S304 to S310 are repeated, and if the value N of the updated time information (count characters) is 0, the sound control unit 103B ends the sound output process (S311).

[0047] 8 is a diagram showing a sound output processing flow of the AED according to the third embodiment of the present disclosure. As another example of the attention-calling guidance (S109) shown in FIG. 3, the sound control unit 103B performs sound output processing to change the warning sound depending on the number of times the timing sound is output (S400).

[0048] The sound output unit 101 outputs a guidance sound such as "Please move away" to encourage the rescuer to move away from the injured person because the discharge process is being performed (S401).

[0049] Next, the control unit 103 starts counting until the discharge process is performed (S402). After starting the count, the sound output unit 101 changes the volume of the warning sound to be output and simultaneously starts outputting a timing sound (S404). Here, the timing sound may be a sound that indicates the time until the discharge process is performed using numbers or the like, or may be a beep sound.

[0050] Next, after a predetermined time between 0 and 1 second has elapsed since the start of counting (S405), the sound output unit 101 stops outputting the timing sound (S406). One second after the start of counting (S407), the sound control unit 103B changes the volume setting of the timing sound (S408), and the control unit 103 updates the value of the time information (count characters) (S409). If the value N of the updated time information (count characters) is greater than 0, steps S404 to S409 are repeated. As a result, the sound control unit 103B changes the volume setting of the timing sound every time the value of the time information (count characters) is updated, in other words, every time the number of times the timing sound is output increases. By increasing the volume of the timing sound output by the sound output unit 101 as the number of times the timing sound is output increases, the rescuer can easily notice the count sound even while the warning sound is being sounded, and can recognize that the start of discharge is approaching.

[0051] Although the embodiments of the present disclosure have been described above, it goes without saying that the technical scope of the present disclosure should not be interpreted as being limited by the description of the present embodiments. The present embodiments are merely examples, and it will be understood by those skilled in the art that various modifications of the embodiments are possible within the scope of the invention described in the claims. The technical scope of the present disclosure should be determined based on the scope of the invention described in the claims and its equivalents. [Explanation of symbols]

[0052] 1 AED 10 AED body (casing body) 11 Battery pack 11A battery cell 12 Lid 13 Cable 14, 15 Electrode pads 100 Screen display section 101 Sound output unit 102 indicator 103 Control Unit 103A Display control unit 103B Sound control section 103C Power supply control unit 103D Electrode pad control unit 104 Storage section 105 High-pressure unit 106 Electrocardiogram Analysis Unit

Claims

1. 1. An automated external defibrillator configured to deliver a defibrillating electric shock to a subject's heart, comprising: The automated external defibrillator comprises: a sound output unit that outputs a timing sound that indicates the timing until the electric shock is administered and a warning sound that indicates that a high voltage is being charged in an internal capacitor of the automated external defibrillator; a sound control unit that controls the sound output unit, The sound control unit The volume of the warning sound when the timing sound is output is set to be smaller than the volume of the warning sound when the timing sound is not output, or set to 0. The pitch of the warning sound when the timing sound is output is set lower than the pitch of the warning sound when the timing sound is not output, or The tone of the warning sound when the timing sound is output is made different from the tone of the warning sound when the timing sound is not output. Automated external defibrillator.

2. The sound control unit At least one of the volume, scale, and tone of the timing sound is changed depending on the number of times the timing sound is output.

10. The automated external defibrillator of claim 1.

3. The sound control unit 3. The automatic external defibrillator according to claim 2, wherein the volume of the timing sound increases according to the number of times the timing sound is output.

4. The sound control unit increasing the pitch of the timing sound according to the number of times the timing sound is output; 3. The automated external defibrillator of claim 2.

5. The sound control unit outputting a guidance sound from the sound output unit to alert the rescuer to move away from the target person at least before outputting the timing sound; 10. The automated external defibrillator of claim 1.

6. The automated external defibrillator comprises: a screen display unit that displays at least one of time information regarding the time until the electric shock is administered, an illustration regarding the electric shock, and a warning message regarding the electric shock; a display control unit that controls the screen display unit, the display control unit changes the color displayed on the screen display unit depending on the time until the electric shock is administered.

10. The automated external defibrillator of claim 1.

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