PHYSIOLOGICAL SIGNAL MONITORING DEVICE AND SENSOR HOLDER THEREOF
20230062824 · 2023-03-02
Inventors
Cpc classification
A61B5/6801
HUMAN NECESSITIES
A61B2562/226
HUMAN NECESSITIES
A61B5/0004
HUMAN NECESSITIES
A61B5/14546
HUMAN NECESSITIES
A61B2562/16
HUMAN NECESSITIES
A61B5/14503
HUMAN NECESSITIES
A61B2562/242
HUMAN NECESSITIES
A61B2562/166
HUMAN NECESSITIES
A61B5/0002
HUMAN NECESSITIES
H01R12/737
ELECTRICITY
A61B5/14865
HUMAN NECESSITIES
A61B5/14532
HUMAN NECESSITIES
A61B2562/14
HUMAN NECESSITIES
A61B2562/0295
HUMAN NECESSITIES
A61B5/6867
HUMAN NECESSITIES
A61B2560/063
HUMAN NECESSITIES
A61B2560/045
HUMAN NECESSITIES
International classification
A61B5/145
HUMAN NECESSITIES
A61M5/315
HUMAN NECESSITIES
A61B5/00
HUMAN NECESSITIES
A61B5/1486
HUMAN NECESSITIES
Abstract
The present invention discloses a holder carrying thereon a sensor to measure a physiological signal of an analyte in a biological fluid, wherein the sensor has a signal detection end and a signal output end, and the holder includes an implantation hole being a channel for implanting the sensor and containing a part of the sensor, a fixing indentation containing the sensor, a filler disposed in the fixing indentation to retain the sensor in the holder, and a blocking element disposed between the implantation hole and the fixing indentation to hold the sensor in the holder and restrict the filler in the fixing indentation.
Claims
1. A holder carrying thereon a sensor to measure a physiological signal of an analyte in a biological fluid, wherein the sensor has a signal detection end and a signal output end, comprising: an implantation hole being a channel for implanting the sensor, and containing a part of the sensor; a fixing indentation containing the sensor; a filler disposed in the fixing indentation to retain the sensor in the holder; a waterproof seal disposed above the implantation hole; an elastic divider disposed in the implantation hole to separate the implantation hole as two parts; and a blocking element being an elastic element disposed between the implantation hole and the fixing indentation to hold the sensor in the holder and restrict the filler in the fixing indentation.
2. The holder as claimed in claim 1, wherein the filler is a glue or an inserter filling in the fixing indentation.
3. The holder as claimed in claim 1, wherein the elastic divider has a cross-sectional area the same as that of the implantation hole.
4. The holder as claimed in claim 1, wherein the elastic divider is disposed above the signal detection end of the sensor in the implantation hole.
5. The holder as claimed in claim 1, wherein the waterproof seal, the elastic divider and the blocking element are integrally formed and embedded in the implantation hole.
6. The holder as claimed in claim 1, further comprising a limiter provided at the bottom of the holder for restricting the sensor.
7. The holder as claimed in claim 6, wherein the limiter comprises a hook portion or a pressing portion.
8. A holder carrying thereon a sensor to measure a physiological signal of an analyte in a biological fluid, wherein the sensor has a signal detection end and a signal output end, comprising: an implantation hole being a channel for implanting the sensor, and containing a part of the sensor; a fixing indentation containing the sensor; a filler disposed in the fixing indentation to retain the sensor in the holder; and a blocking element disposed between the implantation hole and the fixing indentation to hold the sensor in the holder and restrict the filler in the fixing indentation, wherein the blocking element is electrically insulative and comprises a first end adjacent to the implantation hole and a second end against the filler and opposite to the first end.
9. The holder as claimed in claim 8, further comprising: a waterproof seal disposed above the implantation hole; and an elastic divider disposed in the implantation hole to separate the implantation hole as two parts, and the elastic divider has a cross-sectional area the same as that of the implantation hole.
10. The holder as claimed in claim 8, wherein the elastic divider is disposed above the signal detection end of the sensor in the implantation hole.
11. The holder as claimed in claim 8, wherein the waterproof seal, the elastic divider and the blocking element are integrally formed and embedded in the implantation hole.
12. The holder as claimed in claim 8, wherein the blocking element is an elastic element.
13. The holder as claimed in claim 8, further comprising a limiter provided at the bottom of the holder for restricting the sensor.
14. The holder as claimed in claim 13, wherein the limiter comprises a hook portion or a pressing portion.
15. A holder carrying thereon a sensor to measure a physiological signal of an analyte in a biological fluid, wherein the sensor has a signal detection end, a connecting section and a signal output end, comprising: an implantation hole being a channel for implanting the sensor, and containing a part of the sensor; a fixing indentation containing the sensor; a filler disposed in the fixing indentation to retain the sensor in the holder; and a blocking element being an elastic element disposed between the implantation hole and the fixing indentation to hold the connecting section of the sensor in the holder and restrict the filler in the fixing indentation.
16. The holder as claimed in claim 15, further comprising: a waterproof seal disposed above the implantation hole; and an elastic divider disposed in the implantation hole to separate the implantation hole as two parts, and the elastic divider has a cross-sectional area the same as that of the implantation hole.
17. The holder as claimed in claim 15, wherein the blocking element is electrically insulative and comprises a first end adjacent to the implantation hole and a second end against the filler and opposite to the first end.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The objectives and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed descriptions and accompanying drawings.
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0026] The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of the preferred embodiments of this invention are presented herein for purpose of illustration and description only; they are not intended to be exhaustive or to be limited to the precise form disclosed.
[0027] The physiological signal monitoring device of the present invention is used to measure the physiological signals of an analyte in a biological fluid. The term “biological fluid” as used herein refers the biological fluid such as blood, interstitial fluid, cerebrospinal fluid, lymphatic fluid, etc.
[0028] The term “analyte” as used herein refers to substances from the above biological fluid that can reflect the physiological state of a living body, including but not limited to sugar, protein, lipid, cholesterol, vitamins and cytokines, or other substances present in the biological fluid. The term “biological signal” as used herein refers to the amount or concentration of the analyte above. In one embodiment, the physiological signal is the glucose concentration in the human body, preferably the glucose concentration in the interstitial fluid. In some embodiments, the physiological signals may be also constituted by content or concentration of metabolites, antigens, antibodies, etc. that naturally occur in the body fluids or are endogenous. Alternatively, the physiological signal may also be the content or concentration of the substance introduced into the body or the exogenous substance, for example, the concentration of the chemical agent, drug, pharmaceutical composition, or metabolite of the pharmaceutical composition. In one embodiment, the exogenous substance may be insulin or glucagon.
[0029] Please refer to
[0030] Please refer to
[0031] Please refer to
[0032] Please continue to refer to
[0033] As shown in
[0034] The first elastic body 18 is disposed on the accommodating portion 14 on the top surface of the base 10, and is made of an elastic material and formed with the base body 13 by double injection molding so as to form an interference fit with the holder 20 made by a harder material. In one embodiment, the first elastic body 18 is circularly disposed on the accommodating portion 14 to form a concave slot for containing the holder 20. Preferably, the first elastic body 18 is formed on the inner surface, the outer surface, and the top surface of the peripheral wall of the accommodating portion 14. In another embodiment, the first elastic body 18 is dispersedly disposed on the accommodating portion 14 to define a fixation area for containing the holder 20 in this fixation area. Preferably, the first elastic body 18 is dispersedly arranged on the inner surface, the outer surface and the top surface of the peripheral wall of the accommodating portion 14.
[0035] As shown in
[0036] Please refer to
[0037] The holder 20 also has a implantation hole 24, wherein the implantation hole 24 corresponds to the through-hole 12 on the base 10 to form an implanting channel. The implanting channel is adapted for the inserting tool (not shown) to extend therethrough, so as to insert the signal detection end 44 under the skin of the living body. The implantation hole 24 penetrates the upper and lower surfaces of the holder 20 and communicates with the containing indentation 22, to contain a part of the sensor 40.
[0038] Please refer to
[0039] The holder 20 further has a second elastic body 25 for sealing the implantation hole 24 and fixing the sensor 40. The second elastic body 25 includes a waterproof seal 25A, an elastic divider 25B and a blocking element 25C. The waterproof seal 25A is disposed above the implantation hole 24, preferably at the outer edge of the implantation hole 24, to abut against the transmitter 30 and form therebetween a waterproof sealing structure. The waterproof seal 25A corresponds to a fitting portion 346 of the port 342 of the transmitter 30 (as shown in
[0040] The elastic divider 25B is disposed in the implantation hole 24 and corresponds to the space above the implanting channel defined by the implantation hole 24 and the through-hole 12, to separate the implantation hole 24 and covers all over the cross-sectional area of the implantation hole 24. When the inserting tool of the implanting device passes through the elastic divider 25B, drives the signal detection end 44 to be implanted under the skin and is retracted, the design of the elastic divider 25B restores and tightly closes the hole punctured by the inserting tool due to its elasticity. This design avoids blood refluxing through the implanting channel from leaking toward the transmitter 30 and causing visual discomfort to the user.
[0041] In order to prevent blood from refluxing through the implanting channel and damaging the electronic components in the transmitter 30, a sealing member 12A disposed on the through-hole 12 of the base 10 and the elastic divider 25B disposed in the implantation hole 24 of the holder 20 are provided in the present invention, to seal the through-hole 12 and the implantation hole 24, respectively. The sealing member 12A and the elastic divider 25B are arranged so that blood effusing from the implantation site of the skin surface of the living body cannot penetrate into the transmitter 30 through the implanting channel above, so as to avoid the electronic components inside the transmitter 30 from being damaged. The material of the sealing member 12A and the elastic divider 25B can be an elastic body (such as rubber), so that it can enclose after the implantation needle is withdrawn and be densely pressed against the signal detection end 44 of the sensor 40 to maintain the seal performance inside the device. Furthermore, the sealing member 12A can also be omitted if the bottom of the holder 20 is sealed by gluing or any form of sealing. In other embodiment, one of the sealing member 12A and the elastic divider 25B can be selected to prevent the blood effusing.
[0042] The blocking element 25C is disposed between the implantation hole 24 and the fixing indentation 27 for holding the connecting section 46 of the sensor 40 so as to fix the sensor 40. In the present invention, the material of both of the waterproof seal 25A and the elastic divider 25B is rubber but not limited thereto, it may also be other elastic materials that prevent liquid leakage. The blocking element 25C may be an elastic element or a non-elastic element. In one embodiment, the waterproof seal 25A, the elastic divider 25B and the blocking element 25C are integrally formed and embedded in the implantation hole 24. In other embodiments, the waterproof seal 25A, the elastic divider 25B and the blocking element 25C may be separate elements.
[0043] Please refer to
[0044] After fixing the sensor 40 to the holder 20, the bottom of the holder 20 is further sealed. The purposes of waterproofing and fixing the sensor 40 is achieved in the present invention by configuring a filler (i.e. the dotted area as shown in
[0045] According to the second embodiment of the present invention, the holder 20 is made as one-piece by an insert molding. For example, the holder 20 directly covers the sensor 40 during the insert molding, so as to partially encapsulate the sensor 40 in the holder 20.
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[0047] Through the detailed description above, it can be understood that the physiological signal monitoring device 1 of the present invention has the following advantages over the prior art:
[0048] 1. Thin Design
[0049] As shown in
[0050] With regard to the assembly of the transmitter 30 and the holder 20, the port 342 of the transmitter 30 is accommodated in the space S1 of the containing indentation 22 of the holder 20. In addition, the top of the holder 20 is lower than the top of the signal output end 42, thereby the signal output end 42 partially protrudes beyond the holder 20 and is contained in the connecting slot 344 of the port 342 and the recess 332 of the printed circuit board 33 (as shown in
[0051] 2. Waterproof Sealing Effect
[0052] In the present invention, the second elastic body 25 disposed in the implantation hole 24 of the holder 20 includes the waterproof seal 25A and the elastic divider 25B. The waterproof seal 25A abuts against the transmitter 30 to form therebetween a waterproof sealing structure, to prevent external liquid from flowing into the space between the transmitter 30 and the base 10 and affecting the electrical properties of the transmitter 30 and the detection sensitivity of the sensor 40. The elastic divider 25B is disposed in the implantation hole 24 and corresponds to the space above the implanting channel defined by the implantation hole 24 and the through-hole 12, to prevent blood refluxing through the implanting channel from leaking toward the transmitter 30.
[0053] 3. Fixing Effect for the Sensor
[0054] The holder 20 of the present invention is used to carry the sensor 40 through the filler filling the fixing indentation 27 and the limiters 29 arranged between the containing indentation 22 and the fixing indentation 27. In addition, the blocking element 25C of the second elastic body 25 holds the connecting section 46 of the sensor 40 so as to fix the sensor 40. Therefore, the present invention enables the sensor 40 to be more stably carried on the holder 20 through the limiting and fixing means of the filler, the limiter 29 and the blocking element 25C.