ADJUSTABLE INTERDENTAL CLEANING ELEMENT AND A DEVICE AND METHOD THEREFOR
20180353274 ยท 2018-12-13
Inventors
Cpc classification
International classification
Abstract
A dental hygiene device which comprises first and second spaced fixed elements, a third element interconnected with both said first and second elements to define an opening between said first and second elements within which a dental structure to be flossed is receivable, an elongated cleaning element usable in a flossing operation with first and second longitudinal ends, a first member by which said cleaning element is held and selectively directable from said first element to said second element, and a second member associated with said second element by which said cleaning element is detachably secured. The dental hygiene device is preferably operated by one hand only. In addition, the user can clean the entire mouth using one dental hygiene device.
Claims
1. A dental hygiene device, comprising: a) first and second spaced fixed elements; b) a third element interconnected with both said first and second elements to define an opening between said first and second elements within which a dental structure to be flossed is receivable; c) an elongated cleaning element usable in a flossing operation with first and second longitudinal ends; d) a first member by which said cleaning element is held and selectively directable from said first element to said second element; and e) a second member associated with said second element by which said cleaning element is detachably secured.
2. The dental hygiene device according to claim 1, wherein the first member is a displaceable cleaning element holder which is sandwiched between two outer housing sections, and the second member is a retraction inhibiter driven by the holder for stabilizing the cleaning element, when displaced, in preparation for the flossing operation.
3. The dental hygiene device according to claim 2, wherein the second element is configured with an aperture for receiving the cleaning element when fully displaced, and wherein the retraction inhibiter is configured with an indented end which is adapted to frictionally press on the cleaning element at a location spaced from the aperture by a distance equal to no more than five times a maximum thickness of the cleaning element, to prevent retraction of the cleaning element from the aperture as a result of forces applied to the cleaning element during the flossing operation.
4. The dental hygiene device according to claim 3, wherein the second element is also configured with a guide member for guiding the cleaning element to the second element aperture, said guide member having a guide member aperture through which the cleaning element is introducible and whose wall supports the cleaning element during application of forces to the cleaning element during the flossing operation.
5. The dental hygiene device according to claim 4, wherein the guide member is a conical guide member having an inner wall which tapers to a guide member center being aligned with the aperture and having an inner diameter only slightly greater than the maximum thickness of the cleaning element, so that the cleaning element, if misaligned when being displaced towards the second element, will follow curvature of said inner wall until being received in the aperture.
6. The dental hygiene device according to claim 3, wherein the cleaning element is bendable, the device further comprising an arcuate guide fixed to one of the housing sections at the first element, through an interior of said arcuate guide the bendable cleaning element is fed in order to be directed to the second element aperture.
7. The dental hygiene device according to claim 2, further comprising a frangible ampoule retained between the two housing sections and defining a fluid chamber for storing a liquid hygiene useful material, a cavity contiguous to said ampoule and through which a portion of the cleaning element extends, for receiving the hygiene useful material which is dischargeable from said ampoule, and a fixed puncture pin extending through said cavity, wherein one or more of the housing sections is formed with a weakened region, which when pressed, causes said ampoule to become pierced by said puncture pin and said portion of said cleaning element to be applied with said hygiene useful material.
8. The dental hygiene device according to claim 2, wherein the retraction inhibiter is connected to the holder.
9. The dental hygiene device according to claim 1, wherein the first and second elements are spaced first and second arms, respectively, for supporting the cleaning element during the flossing operation.
10. An adjustable interdental cleaning element, which is elongated and has first and second longitudinal ends, for suitably cooperating with a manipulating device in such a way so as to be usable in a flossing operation when said first end is held by a first element of said device and said second end is detachably secured to a second element of said device.
11. The cleaning element according to claim 10, which is displaceable until secured to the second element.
12. The cleaning element according to claim 10, which is coated, covered or impregnated with hygiene useful material.
13. The cleaning element according to claim 12, which has a first covering of first hygiene useful material, said first covering being replaceable with a second covering of second hygiene useful material.
14. The cleaning element according to claim 10, which is a metallic filament that is magnetically and detachably securable to the second element.
15. A method for readjusting an interdental cleaning element, comprising the steps of: a) providing a dental hygiene device comprising first and second spaced fixed elements which are positionable such that a dental structure to be flossed is interposed between said first and second elements; b) selectively directing an elongated cleaning element usable in a flossing operation from said first element to said second element; and c) detachably securing said cleaning element to a member associated with said second element.
16. The method according to claim 15, wherein the step of selectively directing the cleaning element is performed by displacing the cleaning element from the first element to the second element.
17. The method according to claim 15, wherein the step of selectively directing the cleaning element is performed by bending the cleaning element between the first element and the second element.
18. The method according to claim 15, which is performed when the cleaning element is positioned intraorally.
19. The method according to claim 15, which is one hand performable.
20. The method according to claim 15, wherein the member associated with the second element is a retraction inhibiter configured to frictionally engage the cleaning element, and the step of detachably securing the cleaning element to the member associated with the second element is performed by applying a force to a finger engageable actuator mounted on a linearly displaceable holder that holds the cleaning element and that drives the retraction inhibiter until frictionally engaging the cleaning element, wherein the force continues to be applied during performance of the flossing operation.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0064] In the drawings:
[0065]
[0066]
[0067]
[0068]
[0069]
[0070]
[0071]
[0072]
[0073]
[0074]
[0075]
[0076]
[0077]
[0078]
[0079]
[0080]
[0081]
[0082]
[0083]
[0084]
[0085]
[0086]
[0087]
[0088]
[0089]
[0090]
[0091]
[0092]
[0093]
[0094]
[0095]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0096] The present invention is a novel adjustable dental hygiene device for removing food debris from the gingival sulcus and interdental surfaces. This device is particular advantageous for users who have undergone dental treatment involving splints or ligatures that interconnect a few teeth together for one of the reasons described above, since dental floss supported by prior art devices is incapable of accessing the gingival sulcus and interdental surfaces from the occlusal direction of the teeth due to the presence of the interconnecting elements. In one embodiment, the device of the present invention can be used to both floss and pick out food particles when disposed at the same hand position.
[0097] Reference is first made to
[0098] A picking operation with toothpick member 12 has two deficiencies. The first is that tip 13 of toothpick member 12 has a width that is significantly greater than the thickness of dental floss 2, and therefore cannot be introduced into the entire interproximal space between adjacent teeth or into the gingival sulcus in order to remove accumulated food particles. The second deficiency is that body part 7 has to be repositioned by an angle of about 180 degrees in order to suitably direct toothpick member 12 into an interproximal space. Due to the awkward and tedious repositioning operation, many users will be discouraged from picking out food particles with this prior art device.
[0099] It is therefore clear that using two hands to manipulate floss inside a relatively small space of the mouth is difficult and not practical, particularly for children and elderly people.
[0100]
[0101] Pivot member P is fitted within, and positioned perpendicularly to, the pointing direction of arm 3, and urges cleaning element 22, when pivoting thereabout, to be maintained is a plane which is essentially coplanar with the outer surface of arm 3. This pivoting action of cleaning element 22 ensures that it will be reliably secured to engagement element E prior to performance of a flossing operation, yet is assured of being properly positioned prior to the performance of a picking operation without having to reposition one's hand while grasping handle 36.
[0102] Cleaning element 22 is elongated so as to extend between arms 3 and 4, and is sufficiently thin to be used for flossing within interproximal or interdental spaces when secured to engagement element E. Cleaning element 22 may be rigid or flexible (and optionally with memory), and may be coated, covered or impregnated with hygiene useful material that is not harmful to teeth. Examples of hygiene useful material include fluoride, antibacterial agents, whitening agents, anti-inflammatory agents, anti-attachment agents, flavorants, wax and felt. Liquid hygiene useful material may be released into the oral cavity by a slow release process, depending on the physical properties of the cleaning element and on the pressure applied thereto during a flossing operation.
[0103] In one embodiment, dental hygiene device 20 comprises a release device R for detaching cleaning element 22 from pivot member P. The use of release device R allows cleaning element 22 to be replaced or modified, for example to use a second hygiene useful material instead of a first hygiene useful material, while reusing the same main device portion (which may made be for example, from stainless steel) for increased cost savings. According to this embodiment, the dental hygiene device 20 may further comprise a miniature container for slowly releasing hygiene useful material or a medicinal material on cleaning element 22.
[0104] Alternatively, the entire dental hygiene device may be disposable.
[0105]
[0106] Locking mechanism L2 for preventing additional angular displacement may be embodied by a spring loaded pin or interlocking key, a bolt-catch device, a cammed tongue-slot arrangement, or any other mechanism well known to those skilled in the art. Similar arrangements may also be implemented for locking mechanism L1.
[0107]
[0108] Filament 42 may be pivotally connected to arm 43 by means of pin 49 fitted in an circular aperture 48 formed in arm 43, for example passing through spaced sheaths or any other type of support elements. Through cooperation with pin 49, filament 42 is able to be pivoted in a plane which is essentially coplanar with the outer surface of arm 43.
[0109] Alternatively, filament 42 may be fixedly connected to a ring (not shown), which is received in circular aperture 48 formed in arm 43 in such a way so as to surround the terminal end of arm 43. The ring may be suitably sized to occupy a majority space of aperture 48 so that it will assured of engaging diametrically opposite wall surfaces of aperture 48. In this fashion, the ring functions as a pivot member that urges filament 42 to be pivoted in a plane which is essentially coplanar with the outer surface of arm 43.
[0110] The locking mechanism may be advanced within a slot formed internally within arm 43, so that, when actuated, will engage a portion of the pin or of the ring to prevent additional angular displacement. The engagement with the locking mechanism is sufficiently strong to support a picking operation even though filament 42 protrudes from arm 43 in cantilevered fashion.
[0111] In use, a flossing operation is carried out when the cleaning element is set to the flossing position and is locked in position. The cleaning element is then introduced into an interproximal space, by reciprocating the dental hygiene device being held by its handle, and afterwards vertically displacing the device while the cleaning element contacts a tooth surface and removes food particles or plaque that has accumulated. As referred to herein, a tooth surface is meant to include also a surface of an implant or of an element fixedly added to a tooth. Although not imperative, adjustment to the picking position may be simplified when the arm carrying the pivot member and the second locking mechanism is outwardly located, i.e. in a direction pointing outwardly from the oral cavity.
[0112] If a complete vertical stroke along the length of the contacted tooth surface cannot be completed due to the presence of an interproximally interconnecting element, adjustment from the flossing position to the picking position may be made in one-handed fashion without having to change the hand's grip position by first decoupling the first locking mechanism and then disengaging the cleaning element from the engagement element. While the disengaged cleaning element remains positioned in the interproximal space, the handle is rotated about the pivot member and away from the unattached end of the cleaning element until the cleaning element is disposed at a desired angle with respect to the arm carrying the pivot member, for example a coplanar disposition. The actuator is then activated to set the second locking mechanism, such as by pressing a suitable button on the handle, to maintain the cleaning element in the locked state throughout a picking operation. If interconnecting elements are deployed on the teeth, the cleaning element in the picking position is moved to an interproximal space that is apically spaced from the interconnecting elements in order to selectively remove food debris therefrom.
[0113] An improved cleaning action may be realized when the dental hygiene device is reset to the flossing position, after having been temporarily set to the picking position. With reference to
[0114] These steps may be reversed in order to readjust the cleaning element from the picking position to the flossing position.
[0115]
[0116] With reference now to
[0117] Main region 71 and interconnecting element 79 have a common and continuous upper edge 77, while the bottom edge 84 of main region 71 terminates at bottom opened opening 86, e.g. square shaped or rounded, formed below upper edge 77 and separating main region 71 from forward region 69 which is provided with guide member 82. Aperture 76 is located closer to forward edge 83 of main region 71 than rear edge 87 thereof, which may be curved to ensure that a user's hand grasping device 70 during a flossing operation will not be injured.
[0118] When actuator 75 is in a retracted position as shown, a portion of the cleaning element holder is adapted to be received between the main region 71 of the two opposed housing sections and the retraction inhibiter is adapted to be received between the L-shaped configuration of the two opposed sections.
[0119] Although main region 71 is shown to be rectangular and forward region 69 is shown to be elongated, it will be appreciated that they may be configured in other ways as well, insofar as the two main regions 71 are able to house the cleaning element holder and the two forward regions 69 are able to house the retraction inhibiter. The two housing sections 73 and 74 may be attached to each other by any means well known to those skilled in the art, including mechanical fasteners, fusion, adhesion and sewing, for example releasable attachment means.
[0120] The directional terms describe dental hygiene device 70 when the latter is vertically disposed such that region 69 is positioned forwardly from main region 71 and edge 77 is located above actuator 75; however, it will be appreciated that device 70 is also operable when it is oriented in any other desired fashion.
[0121] Forward edge 83 is provided with a protuberance 89 aligned with the center of guide member 82. Protuberance 89 is bored with a central lumen within which cleaning element 91 is received when its holder is retracted, as controlled by the position of actuator 75. Protuberance 89 is used to locate a dental structure, by a tactile sensation, which is need of a flossing operation.
[0122]
[0123]
[0124]
[0125] As shown in
[0126] Housing section 114, and likewise housing section 113, has a lip 119 that extends along the entire periphery of the housing section, both the upper and lower edges thereof, until extending to conical guide member 82. Lip 119 inwardly protrudes from the external surface of the housing section and serves as a guiding surface along which retraction inhibiter 118 and cleaning element holder 124 are able to be displaced, while also defining their dimensions as they are fitted between two opposed lip surfaces. A lip portion 116, e.g. rectangular, may protrude into the interspace of groove 81 of interconnecting element 79 at the intersection of housing section upper edge 77 and leg 78, for temporarily seating retraction inhibiter 118 if dental hygiene device 100 were inverted. The lip of housing section 113 is adapted to be placed in abutting relation with the lip of 114 prior to attachment with each other.
[0127] Cleaning element holder 124 has an upper elongated portion 126 of a width substantially equal to the width between the lip portion adjoining upper edge 77 of the housing section and the lip portion adjoining opening 86, in order to direct its displacement within the recessed groove 81 of interconnecting element 79. The bottom edge 121 of upper portion 126 is shorter than upper edge 122 thereof. Oblique edge 127 extends upwardly from the forward end of bottom edge 121. A ram surface 128 substantially perpendicular to upper edge 122 of upper portion 126 extends upwardly from the forward end of oblique edge 127.
[0128] Cleaning element holder 124 also has a central portion 131 and a bottom portion 137. Central portion 131 is positioned rearwardly from upper portion 126, while adjoining a portion of the latter. Upper edge 133 and lower edge 134 of central portion 131 are spaced from the adjacent lip portion, in order to afford bottom portion 137 with sufficient resiliency. Bottom portion 137 is elongated and spaced downwardly from lower edge 134 of central portion 131, and is significantly shorter than central portion 131. A thickened interface 139 within which cleaning element 91 is embedded connects bottom portion 137 to the forward edge 129 of central portion 131. Interface 139 may be convex and may protrude forwardly from forward edge 129 of central portion 131.
[0129] Cleaning element 91, in the illustrated partially advanced position, extends through cavity 111 (
[0130] Retraction inhibiter 118, which is shown to be positioned in near contact to housing section upper edge 77 but which is generally positioned downwardly therefrom due to the influence of gravity, has an elongated portion 136 of substantially the same width as, but shorter than, the recessed groove 72 of leg 78 along which elongated portion 136 is able to be displaced. A shortened transverse portion 141 extends transversely from elongated portion 136 into groove 81 of interconnecting element 79 for a sufficiently short length such that it can be contacted by upper portion 126 of cleaning element holder 124 only when cleaning element holder 124 is displaced forwardly to a fullest extent. Transverse portion 141, which terminates with an oblique edge 142 substantially parallel to oblique edge 127 of cleaning element holder 124, has a dimension which is less than the width of groove 81. The displacement of retraction inhibiter 118 along groove 72 is accordingly limited by the contact between the bottom edge of transverse portion 141, which may be parallel to upper edge 77, and the lip portion adjoining opening 86. The intersection of elongated portion 136 and transverse portion 141 may be configured with a removed portion that is complementary to protruding lip portion 116.
[0131] As shown in
[0132] Ampoule 117 positioned adjacent to tab 107 (
[0133] As shown in
[0134] With reference to
[0135] When tab 107 (
[0136]
[0137] When cleaning element 91 is being received within passageway 143, it contacts a bottom edge of retraction inhibiter 118, causing the retraction inhibiter to be upwardly displaced. Following the slight upward displacement of retraction inhibiter 118, the bottom edge of ram 128 of cleaning element holder 124 contacts oblique edge 142 of retraction inhibiter 118. During subsequent advancement of cleaning element holder 124 in response to manipulation of the actuator, ram 128 forces retraction inhibiter 118 downwardly, and then oblique edge 127 of cleaning element holder 124 contacts oblique edge 142 of retraction inhibiter 118 to force retraction inhibiter 118 to its extreme downward position whereby indented end 138 of retraction inhibiter 118 (
[0138] As an added feature, cleaning element holder 124 is able to be displaced to one or more discrete positions, to assist the user in manipulating the actuator. Resilient bottom portion 137 of cleaning element holder 124 may be configured with a terminal bulbous protrusion 146, which may be seated in a semispherical recess 149 (
[0139] In use, a flossing operation may be easily carried out by flossing in an apical direction from interconnecting elements that extend mesiodistally or interproximally between teeth. The dental hygiene device is first positioned such that the dental structure to be flossed is interposed between the forward and rearward regions while the element interconnecting the forward and rearward regions is coronally disposed. While the actuator is retracted, the device is laterally displaced until the protuberance at the forward edge of the rearward region is in contact with dental structure intended to be flossed. The actuator is then fully advanced until the cleaning element is stabilized and frictionally engaged, whereupon a flossing operation is able to be performed. When the actuator is subsequently retracted, the device is laterally displaced to a different dental structure and the steps are repeated.
[0140]
[0141] With reference to the cross sectional view of
[0142] A groove 164 is defined between forward edge 162 and rearward edge 166 of forward region 169, which are positioned at an angle, e.g. 190-200 degrees, with respect to forward edge 183 of rearward region 171. Rearward edge 166 extends downwardly until abutting guide member 182. The groove 164 formed within forward region 169 is in communication with another groove formed between the downward lip of interconnecting element 179 and the bottom coplanar edge of a plurality of mutually parallel, longitudinally spaced spacers 177, which extend downwardly from a portion of the upper lip of housing section 173 between interconnecting element 179 and an intermediate region of rearward region 171. A plurality of mutually parallel and longitudinally spaced spacers 178 defining an upper coplanar edge extend upwardly from a portion of the bottom lip of housing section 173 at an intermediate region of rearward region 171, such that most of lower spacers 178 are located rearwardly from upper spacers 177.
[0143] An assembled dental hygiene device 170 is illustrated in
[0144] As shown in
[0145] In this embodiment, the retraction inhibiter comprises an elongated and flexible element 204 that may extend forwardly from the upper edge 199 of upper gliding surface 194, and a bulbous head element 207 positioned at the terminal end of flexible element 204, to assist in navigation and in frictionally engaging cleaning element 91. Flexible element 204, which has a small thickness on the order of a few millimeters, is made from a material that has sufficient mechanical strength to transmit the force being applied onto actuator 175 to head element 207 when contacting a cleaning element 91 during a flossing operation in order to inhibit retraction of the latter as will be described hereinafter, yet has sufficient fatigue resistance to be able to be cyclically bent and unbent by a bend angle greater than 90 degrees when introduced through, and removed from, the groove provided in the forward region. Exemplary materials which are suitable for use with the thin flexible element 204 include polypropylene and copper. Although not shown, head element 207 is configured with a notch, such as a V-shaped notch, within which the elongated cleaning element 91 is receivable.
[0146]
[0147] In this fully advanced position, cleaning element 91, after extending through holding element 197 and the bored protuberance 189, passes through aligned apertures 213 and 214 formed at the center of conical guide member 182 and in the forward edge 162 of the forward region, respectively. Apertures 213 and 214 have a diameter slightly larger than that of cleaning element 91, and their walls are therefore not normally contacted by cleaning element 91. If a flossing operation were performed without use of the retraction inhibiter, the force applied by a dental structure within an interproximal or interdental space onto the flossable portion of cleaning element 91, i.e. between conical guide member 182 and bored protuberance 189, would cause the cleaning element held by holding element 197 to retract from aperture 214 and be slack, reducing the efficacy of the flossing operation.
[0148] The use of the retraction inhibiter thus facilitates proper operation of the dental hygiene device. Flexible element 204 is advanced forwardly simultaneously with the longitudinal displacement of holder member 180 and of cleaning element 91 in a similar direction. When holder member 180 is displaced forwardly, upper 194 and lower 195 gliding surfaces slidably contact the inner face of each housing section as well as the edge of spacers 177 and 178. At the same time, head element 207 is urged through the groove defined between the downward lip 181 of the interconnecting element and the bottom coplanar edge of spacers 177. When head element 207 subsequently contacts forward edge 162 of the forward region in response to the force continued to be applied to actuator 175, flexible element 204 is forced to deform to follow the path of head element 207 being displaced downwardly within the groove formed in the forward region. Dental hygiene device 170 is configured such that cleaning element 91 will be automatically fed through apertures 213 and 214 before being frictionally engaged by the retraction inhibiter.
[0149] Following continued force applied to the actuator, head element 207 is displaced downwardly to a fullest extent within groove 164 of the forward region until frictionally engaging the retractable portion 208 of cleaning element 91, i.e. between apertures 213 and 214, through which cleaning element 91 is introduced without contact, as shown in
[0150] As shown in the cross sectional view of an undeformed flexible element 204 illustrated in
[0151] When viewing head element 207 in front view, as shown in
[0152] Similar frictional engagement may be achieved when the notch has a different cross section.
[0153] Referring back to
[0154] Without being bound by any theory, the retraction of cleaning element 91 from aperture 214 during a flossing operation is able to be inhibited despite the application of forces by a dental structure thereto during a flossing operation when the notch of head element 207 is spaced from aperture 214 or from aperture 213 by a distance equal to no more than five times a maximum thickness of cleaning element 91, e.g. no more than three or four times a maximum thickness of cleaning element 91. This short distance of retractable portion 208, for example between the notch of head element 207 and aperture 214, constitutes a sufficiently short moment arm on which the applied dental structure forces act during a flossing operation to resist generation of a moment that would normally cause slackening of the retractable portion and consequently retraction of the cleaning element from aperture 214.
[0155] By virtue of the releasable frictional engagement applied by head element 207, the retraction inhibitor provides a safety function by which it becomes disengaged from cleaning element 91 if the force applied to actuator 175 or the force applied by a dental structure to the cleaning element is excessive.
[0156] It will be appreciated that this arrangement of the retraction inhibitor is also applicable to other embodiments described herein.
[0157]
[0158] In order to accommodate this configuration, the dental hygiene device comprises a semi-rigid elongated and bendable cleaning element, two guides for the bendable cleaning element, and a retraction inhibiter for inhibiting retraction of the displaced cleaning element in preparation for a flossing operation. The dental hygiene device is inexpensively manufactured, for example the housing sections may be made from injected plastic or from any other suitable thin and rigid material, and may be disposable.
[0159] With reference to the cross sectional view of
[0160] Housing section 253 has elongated upper 262 and lower 263 spacers vertically extending from the upper and lower lip portions, respectively, to define surfaces along which upper 266 and lower 267 smooth gliding surfaces slide when holder member 260, which laterally protrudes at both lateral faces of laterally central surface 261 thereof, is driven by a force applied to actuator 265 in a similar direction. Upper spacer 262 is longer than lower spacer 263, and its forward edge 268, which may be obliquely oriented, is located forwardly to the forward edge 269 of lower spacer 263.
[0161] Retraction inhibiter 264, which is configured with a notch or with an indented portion as described hereinabove in order to frictionally engage cleaning element 241, protrudes forwardly from upper gliding surface 266 by means of interface element 276 which may be coplanar with central surface 261. Interface element 276 is configured complementarily to the portion of upper spacer 262 which protrudes from upper gliding surface 266 when holder member 260 is in the illustrated fully retracted position, for example is angled. Interface element 276 may be made of low friction material to provide low friction contact when holder member 260 is linearly displaced. An upper edge 277 of interface element 276 continuous with retraction inhibiter 264 is adapted to movably contact the upper lip portion, and intermediate edge 278 vertically spaced from and substantially parallel to upper edge 277 is adapted to movably contact upper spacer 262. Retraction inhibiter 264 protrudes forwardly from forward edge 279 of interface element 276, which is substantially parallel to forward edge 268 of upper spacer 262.
[0162] The forwardly extending cleaning element 241 is integrated with, or otherwise held by, generally rectangular holding element 273, which is in abutment from below with lower gliding surface 267. In the illustrated fully retracted position of cleaning element 241, holding element 273 is in contact with the forward edge 269 of lower spacer 263 and thereby limits the rearward displacement of holder member 260. Also, the forwarded portion of interface element 276 may contact forward edge 268 of upper spacer 262 in order to limit the rearward displacement of holder member 260.
[0163] Conical guide member 248 is fitted in upper arm 258, so as to be continuous with both the upper lip and the inner peripheral region 252. A planar arcuate guide 243 laterally protrudes inwardly from, and is attached to, the inner face of housing section 253 at the lower arm 259, and is further attached from below to peripheral region 252. Arcuate guide 243, which has an inner cavity 246 through which cleaning element 241 is fed, is configured with a rearward straight portion substantially parallel to the longitudinal axis of aperture 257 and with a forward curved portion which is continuous with the rearward straight portion. Inner cavity 246 of arcuate guide 243 is continuous with the central bore 272 bored within protuberance 271, which protrudes upwardly from inner peripheral region 252 and which is aligned with apertures 249 and 256 formed at the center of conical guide member 248 and in the upper lip 251, respectively. Apertures 248 and 256 have a diameter slightly larger than that of cleaning element 241, and their walls are therefore not normally contacted by cleaning element 241. In the illustrated fully retracted position of cleaning element 241, the terminal end 242 of the cleaning element is located approximately at the forward end of the straight portion of arcuate guide 243.
[0164]
[0165] While holder member 260 is being forwardly displaced, cleaning element 241 is fed through the curved portion 244 of the arcuate guide and is therefore urged to bend, and then to pass through bore 272 bored within protuberance 271 and through aligned apertures 249 and 256 formed at the center of conical guide member 248 and in the upper lip 251, respectively. Since cleaning element 241 has been previously introduced into the cavity of the arcuate guide, the cleaning element will be fed through apertures 249 and 256 before forward edge 279 of interface element 276 contacts the rearward surface of conical guide member 248, thus enabling retraction inhibiter 264 to frictionally engage the retractable portion of cleaning element 241.
[0166] In use, device 240 is introduced into the oral cavity while being inclined, such that the two arms 258 and 259 are located at a different height than rearward region 254, in order to access a selected molar tooth with minimal stretching of the nearby cheek. While the dental structure to be flossed is located between the two arms 258 and 259 and actuator 265 is retracted, the device is displaced until protuberance 271 is in contact with the dental structure intended to be flossed. After a force is applied to actuator 265 that causes holding member 260 to be advanced, cleaning element 241 to be introduced into an interproximal space, and less than half the length of retraction inhibiter 264 to frictionally engage the retractable portion of cleaning element 241, a flossing operation is performed while a force continues to be applied to the actuator by displacing the device in an apical direction so that the cleaning element will contact a tooth surface and remove food particles or plaque that has accumulated.
[0167]
[0168]
[0169]
[0170]
[0171] The device of the present invention is user friendly, easy to use, and can be manipulated with one hand only. It allows penetrating the interproximal areas from buccal to lingual-palatal with ease and accuracy. This way, patients will be able to maintain a high level of hygiene and substantially improve the prognosis of all the different kinds of dental treatments, which are costly and time consuming.
[0172] While some embodiments of the invention have been described by way of illustration, it will be apparent that the invention can be carried out with many modifications, variations and adaptations, and with the use of numerous equivalents or alternative solutions that are within the scope of persons skilled in the art, without exceeding the scope of the claims.