Universal Single-Use Cap For Male And Female Connectors
20210138225 · 2021-05-13
Assignee
Inventors
Cpc classification
A61M39/165
HUMAN NECESSITIES
A61M39/20
HUMAN NECESSITIES
A61M2205/0216
HUMAN NECESSITIES
International classification
Abstract
A device for connection to a medical connector, the device includes a cap, an elastic sealing ring and a peelable seal. The cap configured to define a chamber to contain an absorbent material and disinfectant or antimicrobial agent. The cap includes one or more threads adapted to engage with a female luer connector. The cap is adapted to engage a male luer connector in a press-fit connection. The peelable seal prevents the disinfectant or the antimicrobial agent from exiting the chamber.
Claims
1. A device for connection to a medical connector, the device comprising: a cap comprising an integral body, a closed end, an annular wall having a length L.sub.C extending from the closed end to an open end and defining a chamber containing an absorbent material and disinfectant or antimicrobial agent, the open end defining an end face and having a peripheral ledge extending radially inward from the annular wall, the open end defining an engagement surface; the annular wall having an exterior wall surface and an interior wall surface; an elastic sealing ring having a dilatable opening therethrough sized and adapted to receive a male luer connector, a female luer connector and a hemodialysis connector, the dilatable opening sized to frictionally engage a male luer connector; the interior wall surface comprising internal threads adjacent to the closed end, the internal threads adapted and sized to engage a female luer connectors, wherein when a male luer connector, a female luer connector and a hemodialysis connector is inserted through the dilatable opening, the absorbent material and the disinfectant or the antimicrobial agent contact the a male luer connector, a female luer connector and a hemodialysis connector; and a peelable seal on the end face to prevent the disinfectant or the antimicrobial agent from exiting the chamber.
2. The device of claim 1, wherein the female luer connector is selected from the group consisting of needle-free connectors, catheter luer connectors, stopcocks, and hemodialysis connectors.
3. The device of claim 1, wherein the male connector is an intravenous tubing end, stopcock or male lock luer.
4. The device of claim 1, wherein the elastic sealing ring is in contact with the peripheral ledge.
5. The device of claim 1, wherein the dilatable opening has a diameter that is dilatable from an initial diameter in a range from about 7-9 mm to a dilated diameter in a range from about 9-12 mm.
6. The device of claim 1, wherein the internal threads adjacent the closed end partially extend along a length of the interior wall surface.
7. The device of claim 1, wherein the male luer connector frictionally engages the dilatable opening via a press-fit connection upon insertion into the chamber.
8. The device of claim 1, wherein the open end of the interior wall surface is sized and adapted to receive an elastic sealing ring in a press-fit connection.
9. (canceled)
10. The device of claim 1, wherein the elastic sealing ring comprises an elastomeric material.
11. (canceled)
12. The device of claim 1, wherein the chamber comprises a first portion adjacent the closed end having a first portion diameter and a second portion adjacent the open end having a second portion diameter, the first portion and second portion in fluid communication with each other and the first portion diameter being less than the second portion diameter.
13. The device of claim 1, wherein the annular wall of the cap is frusto-conically shaped.
14. The device of claim 1, wherein the exterior wall surface includes a plurality of grip members.
15-17. (canceled)
18. The device of claim 1, wherein the absorbent material compresses toward the closed end of the chamber upon connection to the female luer connector or the male luer connector.
19. The device of claim 18, wherein compression of the absorbent material disinfects the female luer connector or the male luer connector.
20. The device of claim 1, wherein the absorbent material is under radial compression by the internal threads to retain the absorbent material in the chamber.
21. The device of claim 1, wherein the disinfectant or antimicrobial agent is selected from the group consisting of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorohexidine, chlorhexidine diacetate, chlorohexidine gluconate, povidone iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotic, and mixtures thereof.
22-25. (canceled)
26. A device for connection to a medical connector, the device comprising: a cap comprising an integral body, a closed end, an annular wall having a length L.sub.C extending from the closed end to an open end and defining a chamber containing an absorbent material and disinfectant or antimicrobial agent, the open end defining an end face and having a peripheral ledge extending radially inward from the annular wall, the open end defining an engagement surface; the annular wall having an exterior wall surface and an interior wall surface; an elastic sealing ring having one or more undercuts and a dilatable opening therethrough sized and adapted to receive a male luer connector, a female luer connector and a hemodialysis connector, the dilatable opening sized to frictionally engage a male luer connector; the interior wall surface comprising internal threads adjacent to the closed end, the internal threads adapted and sized to engage a female luer connectors, wherein when a male luer connector, a female luer connector and a hemodialysis connector is inserted through the dilatable opening, the absorbent material and the disinfectant or the antimicrobial agent contact the a male luer connector, a female luer connector and a hemodialysis connector; and a peelable seal on the end face to prevent the disinfectant or the antimicrobial agent from exiting the chamber.
27. The device of claim 26, wherein the one or more undercuts and/or tapered surfaces are disposed on the surface of the elastic sealing ring facing the dilatable opening.
28. The device of claim 26, wherein the one or more undercuts and/or tapered surfaces are disposed on the surface of the elastic sealing ring facing the peripheral ledge.
29. The device of claim 26, wherein the one or more undercuts and/or tapered surfaces are disposed on the surface of the elastic sealing ring facing the dilatable opening and on the surface of the elastic sealing ring facing the peripheral ledge
30-31. (canceled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0043] Before describing several exemplary embodiments of the disclosure, it is to be understood that the disclosure is not limited to the details of construction or process steps set forth in the following description. The disclosure is capable of other embodiments and of being practiced or being carried out in various ways.
[0044] Embodiments of the disclosure pertain to a universal single-use device for connection to and disinfection of a medical connector, including male luer connectors and female luer connectors, in which the device comprises a cap, an elastic sealing ring, absorbent material, a disinfectant or the antimicrobial agent and a peelable seal. The device provides a mechanical barrier for connectors and contains an antimicrobial agent for disinfection. The device of the present disclosure allows the practitioner to streamline the disinfecting process.
[0045] With respect to terms used in this disclosure, the following definitions are provided.
[0046] As used herein, the use of “a,” “an,” and “the” includes the singular and plural.
[0047] As used herein, the term “catheter related bloodstream infection” or “CRBSI” refers to any infection resulting from the presence of a catheter or IV line.
[0048] As used herein, the term “Luer connector” refers to a connection collar that is the standard way of attaching syringes, catheters, hubbed needles, IV tubes, etc. to each other. The Luer connector consists of male and female interlocking tubes, slightly tapered to hold together better with even just a simple pressure/twist fit. Luer connectors can optionally include an additional outer rim of threading, allowing them to be more secure. The Luer connector male end is generally associated with a flush syringe and can interlock and connect to the female end located on the vascular access device (VAD). A Luer connector comprises a distal end, a proximal end, an irregularly shaped outer wall, a profiled center passageway for fluid communication from the chamber of the barrel of a syringe to the hub of a VAD. A Luer connector also has a distal end channel that releasably attaches the Luer connector to the hub of a VAD, and a proximal end channel that releasably attaches the Luer connector to the barrel of a syringe.
[0049] The assembled device 100 according to one or more embodiments is shown in
[0050] The annular wall 108 of the cap 102 comprises an exterior wall surface 122 and an interior wall surface 124. The interior wall surface 124 defines an opening 132 adjacent the open end 110.
[0051] The elastic sealing ring 126 comprises a dilatable opening 128 therethrough sized and adapted to receive a male luer connector, a female luer connector, and a hemodialysis connector. The dilatable opening 128 can be sized to frictionally engage a male luer connector or female luer connector with a compatible diameter. In one or more embodiments, the dilatable opening 128 has a diameter that is dilatable from an initial diameter in a range from about 7-9 mm to a dilated diameter in a range from about 9-12 mm. In one or more embodiments, the elastic sealing ring 126 is in contact with the peripheral ledge 118. In one or more embodiments, the male luer connector frictionally engages the dilatable opening 128 via a press-fit connection upon insertion into the chamber 112 through the dilatable opening 128 of the elastic sealing ring 126. In one or more embodiments, the elastic sealing ring 126 is in contact with the peripheral ledge 118.
[0052] In one or more embodiments, the opening 132 adjacent the open end 110 of the interior wall surface 124 is sized and adapted to receive an elastic sealing ring 126 in a press-fit connection.
[0053] The interior wall surface 124 comprises internal threads 130 adjacent to the closed end 106. The internal threads 130 are adapted and sized to engage a female luer connector. In one or more embodiments, the internal threads 130 adjacent the closed end 106 of the cap 102 partially extend along a length of the interior wall surface 124 of the cap 102.
[0054] The absorbent material 114 and the disinfectant or the antimicrobial agent contacts the male luer connector, the female luer connector, and the hemodialysis connector after insertion of the connector through the dilatable opening 128 of the elastic sealing ring 126.
[0055] The peelable seal 150 is disposed on the end face 116 of the cap 102 to prevent the disinfectant or the antimicrobial agent from exiting the chamber 112.
[0056] The interior wall surface 124 comprises internal threads 130 adjacent to the closed end 106. The internal threads 130 are adapted and sized to engage a female luer connector. The absorbent material 114 and the disinfectant or the antimicrobial agent contacts the male luer connector, the female luer connector, and the hemodialysis connector after insertion of the connector into the open end 110 of the cap 102.
[0057] In one or more embodiments, the exterior wall surface 122 of the cap 102 comprises a plurality of grip members 134.
[0058] The cap 102 comprises an annular cap wall 108 having a cap wall length L.sub.C extending from a cap closed end 106 to a cap open end 110. The cap 102 comprises an interior wall surface 124 and an exterior wall surface 122.
[0059] The peelable seal 150 is disposed on the cap open end 110 to prevent the disinfectant or the antimicrobial agent from exiting the chamber 112.
[0060] In one or more embodiments, the female connector may be selected from the group consisting of needle-free connectors, catheter luer connectors, stopcocks, and hemodialysis connectors. In one or more embodiments, the needleless connector is selected from a Q-Syte connector, MaxPlus, MaxPlus Clear, MaxZero, UltraSite, Caresite, InVision-Plus, Safeline, OneLink, V-Link, ClearLink, NeutraClear, Clave, MicroClave, MicroClave Clear, Neutron, NanoClave, Kendall, Nexus, InVision, Vadsite, Bionector, etc.
[0061] In one or more embodiments, the male connector may be an intravenous tubing end, stopcock or male lock luer.
[0062] In one or more embodiments, the male luer connector rests on the peripheral ledge 118 upon being fully inserted in into the chamber 112.
[0063] In one or more embodiments, the internal threads 130 adjacent the closed end 106 of the cap 102 partially extend along a length of the interior wall surface 124 of the cap 102.
[0064] In one or more embodiments, the male luer connector frictionally engages the interior wall surface 124 via a press-fit connection upon insertion into the chamber 112.
[0065] In one or more embodiments, the opening 132 adjacent the open end 110 of the interior wall surface 124 of the cap 102 is sized and adapted to receive a male luer connector in a press-fit connection.
[0066] The elastic sealing ring 126 comprises an elastomeric material.
[0067] In one or more embodiments, the elastomeric material of the elastic sealing ring 126 comprises a thermoplastic elastomer.
[0068] In one or more embodiments, the chamber 112 comprises a first portion 136 adjacent the closed end 106 having a first portion diameter D.sub.1 and a second portion 138 adjacent the open end 110 having a second portion diameter D.sub.2, the first portion 136 and second portion 138 in fluid communication with each other and the first portion diameter D.sub.1 being less than the second portion diameter D.sub.2. In one or more embodiments, the annular wall 108 of the cap 102 is frusto-conically shaped.
[0069] The cap 102 is made from any of a number of types of plastic materials such as polycarbonate, polypropylene, polyethylene, glycol-modified polyethylene terephthalate, acrylonitrile butadiene styrene or any other moldable plastic material used in medical devices. In one or more embodiments, the cap 102 comprises a polypropylene or polyethylene material. In one or more embodiments, the exterior wall surface 122 includes a plurality of grip members 134.
[0070] In one or more embodiments, the absorbent material 114 is under radial compression by the internal threads 130 to retain the absorbent material 114 in the chamber 112. In one or more embodiments, the absorbent material is retained in the chamber without radial compression by the internal threads. In one or more embodiments, the absorbent material 114 is a nonwoven material, foam, or a sponge. In a specific embodiment, the foam is a polyurethane foam. In a specific embodiment the absorbent material 114 is in the form of a foam plug.
[0071] The device 100 can achieve disinfection when used on luer connectors by integrating disinfectant or antimicrobial agent in the chamber 112 of the cap 102. The disinfectant or antimicrobial agent can be directly included in the chamber 112 or disinfectant or antimicrobial agent can be absorbed into sponges or foam material that fills the chamber 112 of the cap 102. The device 100 is designed to be compatible in interacting with various disinfectants. In one or more embodiments, the disinfectant or antimicrobial agent may include variations of alcohol or chlorhexidine. In one or more embodiments, the disinfectant or antimicrobial agent is selected from the group consisting of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorohexidine, chlorhexidine diacetate, chlorohexidine gluconate, povidone iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotic, and mixtures thereof. In a specific embodiment, the disinfectant or antimicrobial agent comprises at least one of chlorhexidine gluconate and chlorhexidine diacetate. In one or more embodiments, the disinfectant or antimicrobial agent is a fluid or a gel.
[0072] Compression of the absorbent material 114 toward the closed end 106 of the chamber 112 upon connection to the female luer connector or the male luer connector allows the connector to contact the disinfectant or antimicrobial agent to disinfect the female luer connector or the male luer connector.
[0073] In one or embodiments, the peelable seal 150 may be placed on the end face 116 to prevent the disinfectant or the antimicrobial agent from exiting the chamber 112.
[0074] In one or more embodiments, the peelable seal 150 comprises an aluminum or multi-layer polymer film peel back top. In a specific embodiment, the peelable seal 150 is heat-sealed or induction sealed to the cap open end. In one or more embodiments, the peelable seal 150 comprises a moisture barrier.
[0075] In one or more embodiments, the cap exterior wall surface 122 includes a plurality of grip members 134.
[0076] Disinfecting caps currently on the market are capable of only disinfecting one of the three types of luer fitting, namely female luer of needle-free connectors, female luer of stopcocks, and male luer connectors on intravenous injection sites. Thus, to avoid having to use different types of disinfecting caps to clean different types of connectors, cap 102 engages with male luer connectors and also with female luer connectors, thereby allowing the user to clean different types of connectors with a single device. Upon mounting the cap 102 onto female luer connectors, the female luer connectors is inserted into the chamber 112 and screwed onto the internal threads 130 of the cap 102. Upon mounting the cap 102 onto a male luer connector, the male luer connector frictionally engages the interior wall surface 124 upon insertion into the chamber 112. Hence, the device 100 of the present disclosure can be mounted onto both male and female luer connectors thus fulfilling a current need in the art.
[0077] Another aspect of the present disclosure, as shown in
[0078] Referring to
[0079] The annular wall 208 of the cap 202 comprises an exterior wall surface 222 and an interior wall surface 224. The interior wall surface 224 defines an opening 232 adjacent the open end 210.
[0080] The elastic sealing ring 226 comprises one or more cuts and/or tapered surfaces 227 providing improved adaptability to various types of connectors and a dilatable opening 228 therethrough sized and adapted to receive a male luer connector, a female luer connector, and a hemodialysis connector. The dilatable opening 228 can be sized to frictionally engage a male luer connector or female luer connector with a compatible diameter. In one or more embodiments, the dilatable opening 228 has a diameter that is dilatable from an initial diameter in a range from about 7-9 mm to a dilated diameter in a range from about 9-12 mm. In one or more embodiments, as shown in
[0081] In one or more embodiments, the opening 232 adjacent the open end 210 of the interior wall surface 224 is sized and adapted to receive an elastic sealing ring 226 in a press-fit connection. The elastic sealing ring 226 comprises one or more undercuts and/or tapered surfaces 227 providing improved adaptability to various types of connectors. As shown in
[0082] The interior wall surface 224 comprises internal threads 230 adjacent to the closed end 206. The internal threads 230 are adapted and sized to engage a female luer connector. In one or more embodiments, the internal threads 230 adjacent the closed end 206 of the cap 202 partially extend along a length of the interior wall surface 224 of the cap 202.
[0083] The absorbent material 214 and the disinfectant or the antimicrobial agent contacts the male luer connector, the female luer connector, and the hemodialysis connector after insertion of the connector through the dilatable opening 228 of the elastic sealing ring 226.
[0084] The peelable seal 250 is disposed on the end face 216 of the cap 202 to prevent the disinfectant or the antimicrobial agent from exiting the chamber 212.
[0085] The interior wall surface 224 comprises internal threads 230 adjacent to the closed end 206. The internal threads 230 are adapted and sized to engage a female luer connector. The absorbent material 214 and the disinfectant or the antimicrobial agent contacts the male luer connector, the female luer connector, and the hemodialysis connector after insertion of the connector into the open end 210 of the cap 202.
[0086] In one or more embodiments, the exterior wall surface 222 of the cap 202 comprises a plurality of grip members.
[0087] The cap 202 comprises an annular cap wall 208 having a cap wall length L.sub.C extending from a cap closed end 206 to a cap open end 210. The cap 202 comprises an interior wall surface 224 and an exterior wall surface 222.
[0088] The peelable seal 250 is disposed on the cap open end 210 to prevent the disinfectant or the antimicrobial agent from exiting the chamber 212.
[0089] In one or more embodiments, the female connector may be selected from the group consisting of needle-free connectors, catheter luer connectors, stopcocks, and hemodialysis connectors.
[0090] In one or more embodiments, the male connector may be an intravenous tubing end, stopcock or male lock luer.
[0091] In one or more embodiments, the male luer connector rests on the peripheral ledge 218 upon being fully inserted in into the chamber 212.
[0092] In one or more embodiments, the internal threads 230 adjacent the closed end 206 of the cap 202 partially extend along a length of the interior wall surface 224 of the cap 202.
[0093] In one or more embodiments, the male luer connector frictionally engages the interior wall surface 224 via a press-fit connection upon insertion into the chamber 212.
[0094] In one or more embodiments, the opening 232 adjacent the open end 210 of the interior wall surface 224 of the cap 202 is sized and adapted to receive a male luer connector in a press-fit connection.
[0095] The elastic sealing ring 226 comprises an elastomeric material.
[0096] In one or more embodiments, the elastomeric material of the elastic sealing ring 226 comprises a thermoplastic elastomer.
[0097] In one or more embodiments, the chamber 212 comprises a first portion 236 adjacent the closed end 206 having a first portion diameter D.sub.1 and a second portion 238 adjacent the open end 210 having a second portion diameter D.sub.2, the first portion 236 and second portion 238 in fluid communication with each other and the first portion diameter D.sub.1 being less than the second portion diameter D.sub.2. In one or more embodiments, the annular wall 208 of the cap 202 is frusto-conically shaped.
[0098] The cap 202 is made from any of a number of types of plastic materials such as polycarbonate, polypropylene, polyethylene, glycol-modified polyethylene terephthalate, acrylonitrile butadiene styrene or any other moldable plastic material used in medical devices. In one or more embodiments, the cap 202 comprises a polypropylene or polyethylene material. In one or more embodiments, the exterior wall surface 222 includes a plurality of grip members.
[0099] In one or more embodiments, the absorbent material 214 is under radial compression by the internal threads 230 to retain the absorbent material 214 in the chamber 212. In one or more embodiments, the absorbent material is retained in the chamber without radial compression by the internal threads. In one or more embodiments, the absorbent material 214 is a nonwoven material, foam, or a sponge. In a specific embodiment, the foam is a polyurethane foam. In a specific embodiment the absorbent material 214 is in the form of a foam plug.
[0100] The device 200 can achieve disinfection when used on luer connectors by integrating disinfectant or antimicrobial agent in the chamber 212 of the cap 202. The disinfectant or antimicrobial agent can be directly included in the chamber 212 or disinfectant or antimicrobial agent can be absorbed into sponges or foam material that fills the chamber 212 of the cap 202. The device 200 is designed to be compatible in interacting with various disinfectants. In one or more embodiments, the disinfectant or antimicrobial agent may include variations of alcohol or chlorhexidine. In one or more embodiments, the disinfectant or antimicrobial agent is selected from the group consisting of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorohexidine, chlorhexidine diacetate, chlorohexidine gluconate, povidone iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotic, and mixtures thereof. In a specific embodiment, the disinfectant or antimicrobial agent comprises at least one of chlorhexidine gluconate and chlorhexidine diacetate. In one or more embodiments, the disinfectant or antimicrobial agent is a fluid or a gel.
[0101] Compression of the absorbent material 214 toward the closed end 206 of the chamber 212 upon connection to the female luer connector or the male luer connector allows the connector to contact the disinfectant or antimicrobial agent to disinfect the female luer connector or the male luer connector.
[0102] In one or embodiments, the peelable seal 250 may be placed on the end face 216 to prevent the disinfectant or the antimicrobial agent from exiting the chamber 212.
[0103] In one or more embodiments, the peelable seal 250 comprises an aluminum or multi-layer polymer film peel back top. In a specific embodiment, the peelable seal 250 is heat-sealed or induction sealed to the cap open end. In one or more embodiments, the peelable seal 250 comprises a moisture barrier.
[0104] Referring to
[0105] In one or more embodiments, the cap of the device of the present disclosure has threads that have a size and pitch to engage a threadable segment of a female connector, such as for example, a female luer connector. Such connectors are generally and commonly used as catheter and other fluid-tight protective connectors in medical applications. In some embodiments, the cap provides a protective cover for a female luer connector when engaged with the connector when threads from the female luer connector engage and form a releasable connection with threads of the cap.
[0106] In some embodiments, the connector comprises a needleless injection site, which may sometimes be referred to as a needleless injection port, hub, valve, or device, or as a needleless access site, port, hub, valve, or device, and which can include such brands as, for example, Clave® (available from ICU Medical, Inc.), SmartSite® (available from Cardinal Health, Inc.), and Q-Syte™ (available from Becton, Dickinson and Company). In some embodiments, the cap can be connected with any of a variety of different needleless injection sites, such as those previously listed. In one or more embodiments, after the cap has been coupled with connector, it is unnecessary to disinfect (e.g. treat with an alcohol swab) the connector prior to each reconnection of the connector with another connector, as the connector will be kept in an uncontaminated state while coupled with the cap. Use of the cap replaces the standard swabbing protocol for cleaning connectors.
[0107] In one or more embodiments, threads of the cap are sized and pitched to engage threads of a male luer-lock connector. For example, connector can comprise the end of an IV tubing set that is disconnected from an IV catheter needleless injection site.
[0108] Other aspects of the present disclosure are directed to methods of disinfecting medical connectors and assemblies. In one or more embodiments, a method of disinfecting a medical connector comprises connecting the device of one or more embodiments to a medical connector, wherein connecting includes frictionally engaging the interior wall surface upon insertion into the chamber such that the medical connector contacts the absorbent material and the disinfectant or antimicrobial agent.
[0109] In one or more embodiments, an assembly comprises the device of one or more embodiments connected to a medical connector. In one or more embodiments, the medical connector is selected from a male luer connector, a female luer connector, and needleless connector.
[0110] Reference throughout this specification to “one embodiment,” “certain embodiments,” “one or more embodiments” or “an embodiment” means that a particular feature, structure, material, or characteristic described in connection with the embodiment is included in at least one embodiment of the disclosure. Thus, the appearances of the phrases such as “in one or more embodiments,” “in certain embodiments,” “in one embodiment” or “in an embodiment” in various places throughout this specification are not necessarily referring to the same embodiment of the disclosure. Furthermore, the particular features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments.
[0111] Although the disclosure herein has provided a description with reference to particular embodiments, it is to be understood that these embodiments are merely illustrative of the principles and applications of the present disclosure. It will be apparent to those skilled in the art that various modifications and variations can be made to the method and apparatus of the present disclosure without departing from the spirit and scope of the disclosure. Thus, it is intended that the present disclosure include modifications and variations that are within the scope of the appended claims and their equivalents.