The application claims the benefit of Taiwan application serial No. 104124929, filed on Jul. 31, 2015, and the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The present disclosure generally relates to an electrocardiogram detector and, more particularly, to an electrocardiogram detector that can be placed on a certain part of the body of the user for detecting the electrocardiogram signals.
2. Description of the Related Art
Electrocardiography is a main process to determine the functioning of the heart of the user. During the electrocardiogram (ECG) detection, a plurality of electrodes needs to be placed on certain body parts of the user to attain an accurate detection.
In the ECG detector 9, although the through-holes 92 can indicate the locations of the body parts on which the electrode plates E should be placed, there are no retaining members provided at the through-holes 92 for retaining the electrode plates E. In addition, with the absence of the retaining members, the electrode plates E cannot be fixed to the surface of the pad 91 via the retaining members. In a case where the ECG detector 9 does not include the electrode plates E, it is impossible for the ECG detector 9 to detect the ECG signals simply by placing the ECG detector 9 on the chest of the user. Instead, the ECG detector 9 requires the electrode plates E to be disposed on the body of the user one by one. Therefore, the operation of the ECG detector 9 is inconvenient.
In light of the disadvantage of the conventional ECG detector 9, it is necessary to provide an electrocardiogram detector with convenient operation.
It is therefore the objective of this disclosure to provide an electrocardiogram detector that is convenient to operate.
In an embodiment of the disclosure, an electrocardiogram detector is disclosed. The electrocardiogram detector includes a pad, an electrical connection unit, a plurality of retaining members, and a plurality of electrode pieces. The pad has a first face, a second face, and a plurality of through-holes extending through the pad from the first face to the second face. The electrical connection unit has an electrical connection port and a plurality of conducting lines electrically connected to the electrical connection port. The plurality of conducting lines is arranged on the first face of the pad. The plurality of retaining members is fixed to the first face of the pad and electrically connected to the plurality of conducting lines. Each of the plurality of retaining members includes a fixing portion. Each of the fixing portions of the plurality of retaining members forms a space in communication with a respective one of the plurality of through-holes. The plurality of electrode pieces is electrically connected to the plurality of retaining members. Each of the plurality of electrode pieces includes a connection portion and a detection portion. Each of the connection portions of the plurality of electrode pieces extends through a respective one of the plurality of through-holes and is engaged with the fixing portion of a respective one of the plurality of retaining members.
In another embodiment of the disclosure, an electrocardiogram detector is disclosed. The electrocardiogram detector includes a pad, an electrical connection unit, a plurality of retaining members, and a plurality of electrode pieces. The pad has a first face and a second face. The pad includes a plurality of through-holes extending through the pad from the first face to the second face. The electrical connection unit has an electrical connection port and a plurality of conducting lines electrically connected to the electrical connection port. The plurality of conducting lines is arranged on the first face of the pad. The plurality of retaining members is electrically connected to the plurality of conducting lines. Each of the plurality of retaining members includes a fixing portion. Each of the fixing portions of the plurality of retaining members forms a space in communication with a respective one of the plurality of through-holes, and is fixed to the pad. The plurality of electrode pieces is electrically connected to the plurality of retaining members. Each of the plurality of electrode pieces includes a connection portion and a detection portion. Each of the connection portions of the plurality of electrode pieces is engaged with the fixing portion of a respective one of the plurality of retaining members.
In a form shown, each of the plurality of retaining members includes a first fitting member and a second fitting member. The first fitting member includes a first cylindrical portion and a first extending portion. The first extending portion is located at a closed end of the first cylindrical portion. The second fitting member includes a second cylindrical portion and a second extending portion. The second extending portion is located at an open end of the second cylindrical portion. The second cylindrical portion of the second fitting member is received in the first cylindrical portion of the first fitting member. The first extending portion abuts with the first face of the pad via one of the plurality of conducting lines. The second extending portion abuts with the second face of the pad. The fixing portion is formed in the second cylindrical portion of the second fitting member.
In the form shown, the fixing portion is in a form of a recess having a first positioning portion. The connection portion includes a second positioning portion, and the first positioning portion is configured to fix the second positioning portion.
In the form shown, the detection portion includes a fixing plate, and one face of the fixing plate facing away from the pad includes an adhesive layer.
In the form shown, the electrocardiogram detector further includes a covering piece attached to the adhesive layers of the plurality of electrode pieces.
In the form shown, the electrocardiogram detector further includes a protective layer arranged on the first face of the pad. The protective layer and the pad jointly cover the plurality of conducting lines.
Based on this, since the electrocardiogram detector uses the retaining members to fix the electrode pieces to the pad, the electrocardiogram detector of the disclosure does not need to dispose the electrode pieces one by one. Advantageously, convenient operation of the electrocardiogram detector can be attained.
The present disclosure will become more fully understood from the detailed description given hereinafter and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present disclosure, and wherein:
In the various figures of the drawings, the same numerals designate the same or similar parts. Furthermore, when the terms “first”, “second”, “third”, “fourth”, “inner”, “outer”, “top”, “bottom”, “front”, “rear” and similar terms are used hereinafter, it should be understood that these terms have reference only to the structure shown in the drawings as it would appear to a person viewing the drawings, and are utilized only to facilitate describing the disclosure.
Referring to
The electrical connection unit 2 includes an electrical connection port 21 and a plurality of conducting lines 22 connected to the electrical connection port 21. The conducting lines 22 are arranged on the first face 11 of the pad 1. The conducting lines 22 may be formed on the first face 11 of the pad 1 by electroplating or printing process, so as to avoid the mutual interference and large space occupation of the conducting lines 22. Thus, the detection of the ECG signals is smooth and the utility is improved. Each conducting line 22 connects to the electrical connection port 21 at one end, extends to the through-hole 13 along the first face 11, and connects to the through-hole 13 at another end thereof. In this arrangement, when the retaining members 3 are coupled with the peripheries of the through-hole 13, the retaining members 3 can be electrically connected to the conducting lines 22. In this arrangement, the ECG detection can be carried out, increasing the utility thereof.
Referring to
Each electrode piece 4 includes a connection portion 41 and a detection portion 42. The connection portion 41 of each electrode piece 4 extends through a respective through-hole 13 and is engaged with the fixing portion 31 of a respective retaining member 3. The electrode pieces 4 are electrically connected to the retaining members 3.
Specifically, the connection portion 41 of each electrode piece 4 may include a second positioning portion 411. When the second positioning portion 411 of the electrode piece 4 is engaged with the first positioning portion 311 of the fixing portion 31, the electrode piece 4 can be fixed in place by the retaining member 3. The first positioning portion 311 and the second positioning portion 411 are of any structures that can be engaged with each other. In the first embodiment, the first positioning portion 311 is a concave structure, and the second positioning portion 411 is a convex structure. Since the retaining member 3 is made of an electrically conductive material, when the connection portion 41 of the electrode piece 4 is engaged with the fixing portion 31 of the retaining member 3, the electrode piece 4 can be electrically connected to the retaining member 3. As a result, the electrode pieces 4 can be in electrical connection to the conducting lines 22. When the pad 1 is placed on the body of the user, the electrode pieces 4 can be in contact with the body of the user, permitting the ECG detection of the user. Thus, the utility is improved.
Furthermore, the detection portion 42 of each electrode piece 4 may further include a fixing plate 43. One face of the fixing plate 43 facing away from the pad 1 includes an adhesive layer 431. When the pad 1 is placed on the body of the user, the adhesive layer 431 can be adhered to the skin of the user, permitting the electrode pieces 4 to be fixed to the body of the user. Therefore, the utility is improved.
Moreover, the electrocardiogram detector according to the embodiment of the disclosure may further include a covering piece 5 attached to the adhesive layers 431 of the electrode pieces 4. The covering pieces 5 can be torn off when it is desired to use the adhesive layers 431. As such, the viscidity of the adhesive layers 431 can be maintained. The arrangement of the covering piece 5 is not limited herein. For example, the adhesive layer 431 of each electrode piece 4 can be attached by a covering piece 5. In this arrangement, according to different requirements, only those covering pieces 5 whose adhesive layers 431 are needed for use can be torn off. This can prevent the unused electrode pieces 4 from being adhered to the skin of the user via the adhesive layers 431 thereof, providing a flexible use of the electrocardiogram detector. In another option, the adhesive layers 431 of the electrode pieces 4 can be coupled with just a single covering piece 5. As such, when the covering piece 5 is torn off, each adhesive layer 431 can be exposed for use, permitting all of the electrode pieces 4 to be adhered to the skin of the user at once. In this case, it takes a shorter time to tear off one covering piece 5 as compared with the case of multiple covering pieces 5, improving the utility thereof.
Referring to
In the second embodiment, each retaining member 3′ includes a fixing portion 31′. The fixing portion 31′ includes a first positioning portion 311′. Each retaining member 3′ extends through a respective through-hole 13 and is fixed to the pad 1. The retaining members 3′ are electrically connected to the conducting lines 22. The connection portion 41 of the electrode piece 4 is engaged with the fixing portion 31′ of the retaining member 3′, and the second positioning portion 411 is fixed to the first positioning portion 311′.
Specifically, each retaining member 3′ includes a first fitting member 32 and a second fitting member 33. The first fitting member 32 includes a first cylindrical portion 321 and a first extending portion 322. The first extending portion 322 is located at a closed end of the first cylindrical portion 321. The second fitting member 33 includes a second cylindrical portion 331 and a second extending portion 332. The second extending portion 332 is located at an open end of the second cylindrical portion 331. The second cylindrical portion 331 of the second fitting member 33 is received in the first cylindrical portion 321 of the first fitting member 32. The first extending portion 322 abuts with the first face 11 of the pad 1 via the conducting line 22, and the second extending portion 332 abuts with the second face 12 of the pad 1. The first extending portion 322 is electrically connected to the conducting lines 22. The fixing portion 31′ is formed in the second cylindrical portion 331 of the second fitting member 33. The second cylindrical portion 331 of the second fitting member 33 can be received in the first cylindrical portion 321 of the first fitting member 32 in a press fitting manner. Alternatively, the first cylindrical portion 321 of the first fitting member 32 and the second cylindrical portion 331 of the second fitting member 33 can be engaged with each other via a tongue and groove structure. In such an arrangement, when the retaining members 3′ extend through the through-holes 13, the first extending portion 322 and the second extending portion 332 can prevent the disengagement of the retaining member 3′ from the through-hole 13. Thus, the positioning effect of the retaining members 3′ can be ensured. The first fitting member 32 and the second fitting member 33 are made of electrically conductive material. When the first fitting member 32 and the second fitting member 33 are combined with each other, the retaining member 3′ can provide an electrically conductive effect.
Referring to
Referring to
In summary, since the electrocardiogram detector uses the retaining members 3 to fix the electrode pieces 4 to the pad 1, the electrocardiogram detector of the disclosure can be directly used to detect the ECG signals of the testee without having to dispose the electrode pieces 4 one by one. Advantageously, convenient operation of the electrocardiogram detector can be attained.
Although the disclosure has been described in detail with reference to its presently preferable embodiments, it will be understood by one of ordinary skill in the art that various modifications can be made without departing from the spirit and the scope of the disclosure, as set forth in the appended claims.
Number | Date | Country | Kind |
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104124929 | Jul 2015 | TW | national |