The present disclosure relates to ultrasonic devices, and more particularly, to an ultrasonic device and an ultrasonic control method applicable to an acupuncture operation.
Acupuncture is a common treatment in traditional Chinese medicine, which needs to insert a needle into an effective position of a human body. Therefore, acupuncture is an invasive treatment for the human body and poses a challenge to a doctor's experience and skill.
Since acupuncture is an invasive treatment for the human body, the use of a needle brings strong stimulation, pain and even a risk of infection due to skin puncture. Further, different acupuncture methods required at different acupoints increase the technical difficulty, which not only increases the risk of acupuncture injury and needle breakage, but also makes it difficult for another doctor to imitate the experience and skill of a skilled doctor.
Moreover, since it is not easy to imitate the experience and skill of a skilled doctor, people need to visit specific places (e.g., specific clinics or hospitals) for acupuncture treatment. Consequently, it is especially difficult for people with mobility difficulties to get acupuncture treatment.
Therefore, how to overcome the above-described drawbacks of the prior art has become an urgent issue in the art.
In view of the above-described drawbacks, the present disclosure provides an ultrasonic device, which comprises: a base having an action portion; and a plurality of action members arranged on the action portion for providing ultrasonic waves, wherein the ultrasonic waves generated by the plurality of action members focus at different target positions.
The present disclosure further provides a method of controlling ultrasonic, which comprises: providing the ultrasonic device as described above; emitting ultrasonic waves by the plurality of action members; and focusing the ultrasonic waves generated by the action members at different target positions.
According to the ultrasonic device and the ultrasonic control method of the present disclosure, the ultrasonic waves generated by the plurality of action members focus at different target positions so as to generate an acupuncture effect without invading into a human body. That is, the acupuncture operation is not invasive. Compared with the prior art, the acupuncture operation performed by the ultrasonic device and the ultrasonic control method of the present disclosure has low stimulation and is painless for the human body and prevents the risk of infection due to the absence of a wound.
Further, the action portion of the base can be properly designed in conjunction with an acupoint of the human body such that the ultrasonic waves generated by the action members can easily focus at predetermined target positions. Therefore, compared with the prior art, the ultrasonic device of the present disclosure can use the same method for different acupoints, thus greatly reducing the difficulty of the acupuncture operation, eliminating the need of experience and skill of doctors and preventing the risk of acupuncture injury and needle breakage.
Furthermore, by dispensing with the experience and skill of doctors, the ultrasonic device and the ultrasonic control method of the present disclosure can perform an acupuncture operation immediately. Therefore, compared with the prior art, a person, especially one with mobility difficulties (e.g., a disabled person), can use the ultrasonic device of the present disclosure to perform an acupuncture operation at any time without having to go to a specific place (e.g., a Chinese medicine clinic).
The following illustrative embodiments are provided to illustrate the present disclosure, these and other advantages and effects can be apparent to those in the art after reading this specification.
It should be noted that all the drawings are not intended to limit the present disclosure. Various modifications and variations can be made without departing from the spirit of the present disclosure. Further, terms such as “first,” “second,” “third,” “fourth,” “a,” etc., are merely for illustrative purposes and should not be construed to limit the scope of the present disclosure.
The base 10 has an action portion A for arranging the first action member 11 and the second action member 12.
In an embodiment, one side of the base 10 has two sheets 10a, 10b, which are spaced from one another so as to form a clamping probe serving as the action portion A. For example, a target object 9 can be embedded between the two sheets 10a, 10b (as shown in
Further, at least one sheet 10a of the action portion A is defined with such as a circular configuration region Z for positioning the first action member 11 and the second action member 12 thereon.
The other side of the base 10 has an accommodating space S for placing a circuit board 100 and a battery 101. The circuit board 100 is electrically connected to the first action member 11 and the second action member 12, and the battery 101 supplies power to the circuit board 100, the first action member 11 and the second action member 12. For example, the circuit board 100 can be configured with a Bluetooth control chip, an ultrasonic transmitting circuit, a control system circuit or an intelligent control system according to the practical need.
The first action member 11 is an ultrasonic element such as an ultrasonic piezoelectric sheet, which is arranged on the configuration region Z of the action portion A and generates low energy suitable for the human body.
In an embodiment, referring to
Further, referring to
Therein, the radius of the configuration region Z of the action portion A (i.e., the distance between the position of the action member and the action axis Y) is defined as a mounting distance L, and an angle r is defined between the focusing direction of the action member and the action axis Y (i.e., a mounting angle of the action member). It can be understood that, if the mounting distance L is constant, the action distance H can be adjusted by adjusting the angle r (or the mounting angle) Similarly, if the angle r (or the mounting angle) is constant, the action distance H can be adjusted by adjusting the mounting distance L.
Further, the circuit board 100 drives the first action member 11 to generate ultrasonic energy.
The second action member 12 is an ultrasonic element such as an ultrasonic piezoelectric sheet, which is arranged on the edge line of the configuration region Z of the action portion A and generates low energy suitable for the human body.
In an embodiment, referring to
Further, the action mode of the second action member 12 is identical to that of the first action member 11, as shown in
Alternatively, referring to
Furthermore, the circuit board 100 drives the second action member 12 to generate ultrasonic energy. For example, the circuit board 100 can drive the first action member 11 and the second action member 12 in sequence, and the circuit board 100 can adjust the driving times for the first action member 11 and the second action member 12. Alternatively, the circuit board 100 can drive the first action member 11 and the second action member 12 at the same time.
In use of the ultrasonic device 1, the first action member 11 and the second action member 12 emit ultrasonic waves to a target object 9, and the ultrasonic waves generated by the first action member 11 and the second action member 12 focus at different target positions O1, O2 of the target object 9. Therein, if the circuit board 100 drives in the sequence of the first action member 11 and the second action member 12, a needle pulling (needle withdrawing) effect is generated. On the other hand, if the circuit board 100 drives in the sequence of the second action member 12 and the first action member 11, a needle pushing (needle inserting) effect is generated.
According to the ultrasonic control method of the ultrasonic device 1 of the present disclosure, further referring to
Referring to
In an embodiment, the third action member 13 is an ultrasonic element such as an ultrasonic piezoelectric sheet, and the type of the third action member 13 can be identical to or different from those of the first action member 11 and the second action member 12.
Further, the action mode of the third action member 13 is identical to that of the first action member 11. Referring to
Furthermore, the circuit board 100 drives the third action member 13 to generate ultrasonic energy. The circuit board 100 can drive the first action member 11, the second action member 12 and the third action member 13 separately (i.e., not at the same time), and the circuit board 100 can also adjust the driving time for the third action member 13. Alternatively, the circuit board 100 can drive the first action member 11, the second action member 12 and the third action member 13 at the same time, or arbitrarily set the driving sequence of the first action member 11, the second action member 12 and the third action member 13.
In addition, the first action member 11, the second action member 12 and the third action member 13 can be arranged equidistantly along the edge line of the configuration region Z, as shown in
In use of the ultrasonic device 2, the first to third action members 11, 12, 13 emit ultrasonic waves to a target object 9 (as shown in
Therefore, according to the ultrasonic control method of the ultrasonic device 2 of the present disclosure, the ultrasonic waves generated by the first to third action members 11, 12, 13 focus at different target positions O1, O2, O3 to generate an acupuncture effect during an acupuncture operation. Therefore, the base 10 can be properly designed in conjunction with an acupoint of the human body so as to facilitate the acupuncture operation of the ultrasonic device 2 on the human body.
Referring to
In an embodiment, the fourth action member 14 is an ultrasonic element such as an ultrasonic piezoelectric sheet, and the type of the fourth action member 14 can be identical to or different from those of the first to third action members 11, 12, 13.
Further, the action mode of the fourth action member 14 is identical to that of the first action member 11. Referring to
Furthermore, the circuit board 100 drives the fourth action member 14 to generate ultrasonic energy. The circuit board 100 can drive the first action member 11, the second action member 12, the third action member 13 and the fourth action member 14 separately (i.e., not at the same time), and the circuit board 100 can also adjust the driving time for the fourth action member 14. Alternatively, the circuit board 100 can drive the first action member 11, the second action member 12, the third action member 13 and the fourth action member 14 at the same time, or arbitrarily set the driving sequence of the first action member 11, the second action member 12, the third action member 13 and the fourth action member 14.
In addition, the first action member 11, the second action member 12, the third action member 13 and the fourth action member 14 can be arranged equidistantly along the edge line of the configuration region Z, as shown in
In use of the ultrasonic device 3, the first to fourth action members 11, 12, 13, 14 emit ultrasonic waves to a target object 9, and the ultrasonic waves generated by the first to fourth action members 11, 12, 13, 14 focus at different target positions O1, O2, O3, O4 of the target object 9. Therein, if the circuit board 100 drives in the sequence of the first action member 11, the second action member 12, the third action member 13 and the fourth action member 14, a needle pulling effect is generated. On the other hand, if the circuit board 100 drives in the sequence of the fourth action member 14, the third action member 13, the second action member 12 and the first action member 11, a needle pushing effect is generated.
Therefore, according to the ultrasonic control method of the ultrasonic device 3 of the present disclosure, the ultrasonic waves generated by the first to fourth action members 11, 12, 13, 14 focus at different target positions O1, O2, O3, O4 to generate an acupuncture effect during an acupuncture operation. Therefore, the base 10 can be properly designed in conjunction with an acupoint of the human body so as to facilitate the acupuncture operation of the ultrasonic device 3 on the human body.
According to the ultrasonic device and the ultrasonic control method of the present disclosure, the ultrasonic waves generated by the action members focus at different target positions so as to generate an acupuncture effect without invading into the human body. That is, the acupuncture operation is not invasive. Compared with the prior art, the acupuncture operation performed by the ultrasonic device and the ultrasonic control method of the present disclosure has low stimulation and is painless for the human body and prevents the risk of infection due to the absence of a wound.
Further, the action portion of the base can be properly designed in conjunction with an acupoint of the human body such that the ultrasonic waves generated by the action members can easily focus at predetermined target positions. Therefore, compared with the prior art, the ultrasonic device of the present disclosure can use the same method for different acupoints, thus simplifying the acupuncture operation, eliminating the need of experience and skill of doctors and preventing the risk of acupuncture injury and needle breakage.
Furthermore, since the ultrasonic device and the ultrasonic control method of the present disclosure eliminates the need of imitating experience and skill of doctors and the ultrasonic device of the present disclosure can be light and portable so as to allow an acupuncture operation to be performed immediately, a person, especially one with mobility difficulties (e.g., a disabled person), can use the ultrasonic device of the present disclosure to perform an acupuncture operation at any time without having to go to a specific place (e.g., a Chinese medicine clinic).
The above-described descriptions of the detailed embodiments are to illustrate the preferred implementation according to the present disclosure, and it is not to limit the scope of the present disclosure. Accordingly, all modifications and variations completed by those with ordinary skill in the art should fall within the scope of present disclosure defined by the appended claims.