This invention relates to a shoe, such as a street shoe, athletic shoe, and especially a running shoe with a contoured sole. More particularly, this invention relates to a novel contoured sole design for a running shoe which improves the inherent stability and efficient motion of the shod foot in extreme exercise. Still more particularly, this invention relates to a running shoe wherein the shoe sole conforms to the natural shape of the foot, particularly the sides, and has a constant thickness in frontal plane cross sections, permitting the foot to react naturally with the ground as it would if the foot were bare, while continuing to protect and cushion the foot.
By way of introduction, barefoot populations universally have a very low incidence of running “overuse” injuries, despite very high activity levels. In contrast, such injuries are very common in shoe shod populations, even for activity levels well below “overuse”. Thus, it is a continuing problem with a shod population to reduce or eliminate such injuries and to improve the cushioning and protection for the foot. It is an understanding of the reasons for such problems, and proposing a novel solution to the problems, to which this improved shoe is directed.
A wide variety of designs are available for running shoes which are intended to provide stability, but which lead to a constraint in the natural efficient motion of the foot and ankle. However, such designs which can accommodate free, flexible motion in contrast create a lack of control or stability. A popular existing shoe design incorporates an inverted, outwardly-flared shoe sole wherein the ground engaging surface is wider than the heel engaging portion. However, such shoes are unstable in extreme situations because the shoe sole, when inverted or on edge, immediately becomes supported only by the sharp bottom sole edge. The entire weight of the body, multiplied by a factor of approximately three at running peak, is concentrated at the sole edge. Since an unnatural lever arm and a force moment are created under such conditions, the foot and ankle are destabilized. When the destabilization is extreme, beyond a certain point of rotation about the pivot point of the shoe sole edge, ankle strain occurs. In contrast, the unshod foot is always in stable equilibrium without a comparable lever arm or force moment. At its maximum range of inversion motion, about 20°, the base of support on the barefoot heel actually broadens substantially as the calcaneal tuberosity contacts the ground. This is in contrast to the conventionally available shoe sole bottom which maintains a sharp, unstable edge.
It is thus an overall objective of this invention to provide a novel shoe design which approximates the barefoot. It has been discovered, by investigating the most extreme range of ankle motion to near the point of ankle sprain, that the abnormal motion of an inversion ankle sprain, which is a tilting to the outside or an outward rotation of the foot, is accurately simulated while stationary. With this observation, it can be seen that the extreme range stability of the conventionally shod foot is distinctly inferior to the barefoot and that the shoe itself creates a gross instability which would otherwise not exist.
Even more important, a normal barefoot running motion, which approximately includes a 7° inversion and a 7° eversion motion, does not occur with shod feet, where a 30° inversion and eversion is common. Such a normal barefoot motion is geometrically unattainable because the average running shoe heel is approximately 60% larger than the width of the human heel. As a result, the shoe heel and the human heel cannot pivot together in a natural manner; rather, the human heel has to pivot within the shoe but is resisted from doing so by the shoe heel counter, motion control devices, and the lacing and binding of the shoe upper, as well as various types of anatomical supports interior to the shoe.
Thus, it is an overall objective to provide an improved shoe design which is not based on the inherent contradiction present in current shoe designs which make the goals of stability and efficient natural motion incompatible and even mutually exclusive. It is another overall object of the invention to provide a new contour design which simulates the natural barefoot motion in running and thus avoids the inherent contradictions in current shoe designs.
It is another objective of this invention to provide a running shoe which overcomes the problems of the prior art.
It is another objective of this invention to provide a shoe wherein the outer extent of the flat portion of the sole of the shoe includes all of the support structures of the foot but which extends no further than the outer edge of the flat portion of the foot sole so that the transverse or horizontal plane outline of the top of the flat portion of the shoe sole coincides as nearly as possible with the load-bearing portion of the foot sole.
It is another objective of the invention to provide a shoe having a sole which includes a side contoured like the natural form of the side or edge of the human foot and conforming to it.
It is another objective of this invention to provide a novel shoe structure in which the contoured sole includes a shoe sole thickness that is precisely constant in frontal plane cross sections, and therefore biomechanically neutral, even if the shoe sole is tilted to either side, or forward or backward.
It is another objective of this invention to provide a shoe having a sole fully contoured like and conforming to the natural form of the non-load-bearing human foot and deforming under load by flattening just as the foot does.
It is still another objective of this invention to provide a new stable shoe design wherein the heel lift or wedge increases in the sagittal plane the thickness of the shoe sole or toe taper decrease therewith so that the sides of the shoe sole which naturally conform to the sides of the foot also increase or decrease by exactly the same amount, so that the thickness of the shoe sole in a frontal planar cross section is always constant.
These and other objectives of the invention will become apparent from a detailed description of the invention which follows taken in conjunction with the accompanying drawings.
In the drawings:
A perspective view of an athletic shoe, such as a typical running shoe, according to the prior art, is shown in
Another significant feature of the applicant's invention is illustrated diagrammatically in
As shown in
The embodiment of
For the special case shown in
The theoretically ideal stability plane for the special case is composed conceptually of two parts. Shown in FIGS. 10 and 3A–3D the first part is a line segment 31b of equal length and parallel to 30b at a constant distance (s) equal to shoe sole thickness. This corresponds to a conventional shoe sole directly underneath the human foot, and also corresponds to the flattened portion of the bottom of the load-bearing foot sole 28b. The second part is the naturally contoured stability side outer edge 31a located at each side of the first part, line segment 31b. Each point on the contoured side outer edge 31a is located at a distance which is exactly shoe sole thickness (s) from the closest point on the contoured side inner edge 30a; consequently, the inner and outer contoured edges 31A and 30A are by definition parallel.
In summary, the theoretically ideal stability plane is the essence of this invention because it is used to determine a geometrically precise bottom contour of the shoe sole based on a top contour that conforms to the contour of the foot. This invention specifically claims the exactly determined geometric relationship just described. It can be stated unequivocally that any shoe sole contour, even of similar contour, that exceeds the theoretically ideal stability plane will restrict natural foot motion, while any less than that plane will degrade natural stability, in direct proportion to the amount of the deviation.
In contrast, the new design, as illustrated in
Thus, the contoured shoe design of the invention brings together in one shoe design the cushioning and protection typical of modern shoes, with the freedom from injury and functional efficiency, meaning speed, and/or endurance, typical of barefoot stability and natural freedom of motion. Significant speed and endurance improvements are anticipated, based on both improved efficiency and on the ability of a user to train harder without injury.
More particularly,
The theoretically ideal stability can also be approximated by a plurality of line segments 110, such as tangents, chords, or other lines, as shown in
Thus, it will clearly be understood by those skilled in the art that the foregoing description has been made in terms of the preferred embodiment and various changes and modifications may be made without departing from the scope of the present invention which is to be defined by the appended claims.
This invention is a continuation of U.S. application Ser. No. 08/477,640, filed Jun. 7, 1995, now U.S. Pat. No. 6,629,376, which is a continuation of U.S. application Ser. No. 08/162,962, filed Dec. 8, 1993, now U.S. Pat. No. 5,544,429, which is a continuation of U.S. application Ser. No. 07/930,469, filed Aug. 20, 1992, now U.S. Pat. No. 5,317,819, which is a continuation of U.S. application Ser. No. 07/239,667, filed Sep. 2, 1988, now abandoned.
| Number | Name | Date | Kind |
|---|---|---|---|
| 193914 | Berry | Aug 1877 | A |
| 280791 | Brooks | Jul 1883 | A |
| 288127 | Shepard | Nov 1883 | A |
| 500385 | Hall | Jun 1893 | A |
| 532429 | Rogers | Jan 1895 | A |
| 584373 | Kuhn | Jun 1897 | A |
| 1283335 | Shillcock | Oct 1918 | A |
| 1289106 | Bullock | Dec 1918 | A |
| D55115 | Barney | May 1920 | S |
| 1458446 | Shaefer | Jun 1923 | A |
| 1622860 | Cutler | Mar 1927 | A |
| 1639381 | Manelas | Aug 1927 | A |
| 1701260 | Fischer | Feb 1929 | A |
| 1735986 | Wray | Nov 1929 | A |
| 1853034 | Bradley | Apr 1932 | A |
| 1870751 | Reach | Aug 1932 | A |
| 2120987 | Murray | Jun 1938 | A |
| 2124986 | Pipes | Jul 1938 | A |
| 2147197 | Glidden | Feb 1939 | A |
| 2155166 | Kraft | Apr 1939 | A |
| 2162912 | Craver | Jun 1939 | A |
| 2170652 | Brennan | Aug 1939 | A |
| 2179942 | Lyne | Nov 1939 | A |
| D119894 | Sherman | Apr 1940 | S |
| 2201300 | Prue | May 1940 | A |
| 2206860 | Sperry | Jul 1940 | A |
| D122131 | Sannar | Aug 1940 | S |
| D128817 | Esterson | Aug 1941 | S |
| 2251468 | Smith | Aug 1941 | A |
| 2328242 | Witherill | Aug 1943 | A |
| 2345831 | Pierson | Apr 1944 | A |
| 2433329 | Adler et al. | Dec 1947 | A |
| 2434770 | Lutey | Jan 1948 | A |
| 2470200 | Wallach | May 1949 | A |
| 2627676 | Hack | Feb 1953 | A |
| 2718715 | Spilman | Sep 1955 | A |
| 2814133 | Herbst | Nov 1957 | A |
| 3005272 | Shelare et al. | Oct 1961 | A |
| 3100354 | Lombard et al. | Aug 1963 | A |
| 3110971 | Chang | Nov 1963 | A |
| 3305947 | Kalsoy | Feb 1967 | A |
| 3308560 | Jones | Mar 1967 | A |
| 3416174 | Novitske | Dec 1968 | A |
| 3512274 | McGrath | May 1970 | A |
| 3535799 | Onitsuka | Oct 1970 | A |
| 3806974 | Di Paolo | Apr 1974 | A |
| 3824716 | Di Paolo | Jul 1974 | A |
| 3863366 | Auberry et al. | Feb 1975 | A |
| 3958291 | Spier | May 1976 | A |
| 3964181 | Holcombe, Jr. | Jun 1976 | A |
| 3997984 | Hayward | Dec 1976 | A |
| 4003145 | Liebscher et al. | Jan 1977 | A |
| 4030213 | Daswick | Jun 1977 | A |
| 4043058 | Hollister et al. | Aug 1977 | A |
| 4068395 | Senter | Jan 1978 | A |
| 4083125 | Benseler et al. | Apr 1978 | A |
| 4096649 | Saurwein | Jun 1978 | A |
| 4098011 | Bowerman et al. | Jul 1978 | A |
| 4128950 | Bowerman et al. | Dec 1978 | A |
| 4128951 | Tansill | Dec 1978 | A |
| 4141158 | Benseler et al. | Feb 1979 | A |
| 4145785 | Lacey | Mar 1979 | A |
| 4149324 | Lesser et al. | Apr 1979 | A |
| 4161828 | Benseler et al. | Jul 1979 | A |
| 4161829 | Wayser | Jul 1979 | A |
| 4170078 | Moss | Oct 1979 | A |
| 4183156 | Rudy | Jan 1980 | A |
| 4194310 | Bowerman | Mar 1980 | A |
| D256180 | Turner | Aug 1980 | S |
| D256400 | Famolare, Jr. | Aug 1980 | S |
| 4217705 | Donzis | Aug 1980 | A |
| 4219945 | Rudy | Sep 1980 | A |
| 4223457 | Borgeas | Sep 1980 | A |
| 4227320 | Borgeas | Oct 1980 | A |
| 4235026 | Plagenhoef | Nov 1980 | A |
| 4237627 | Turner | Dec 1980 | A |
| 4240214 | Sigle et al. | Dec 1980 | A |
| 4241523 | Daswick | Dec 1980 | A |
| 4245406 | Landay et al. | Jan 1981 | A |
| 4250638 | Linnemann | Feb 1981 | A |
| 4258480 | Famolare, Jr. | Mar 1981 | A |
| 4259792 | Halberstadt | Apr 1981 | A |
| 4262433 | Hagg et al. | Apr 1981 | A |
| 4263728 | Frecentese | Apr 1981 | A |
| 4266349 | Schmohl | May 1981 | A |
| 4268980 | Gudas | May 1981 | A |
| 4271606 | Rudy | Jun 1981 | A |
| 4272858 | Hlustik | Jun 1981 | A |
| 4274211 | Funck | Jun 1981 | A |
| 4297797 | Meyers | Nov 1981 | A |
| 4302892 | Adamik | Dec 1981 | A |
| 4305212 | Coomer | Dec 1981 | A |
| 4308671 | Bretschneider | Jan 1982 | A |
| 4309832 | Hunt | Jan 1982 | A |
| 4314413 | Dassler | Feb 1982 | A |
| 4316332 | Giese et al. | Feb 1982 | A |
| 4316335 | Giese et al. | Feb 1982 | A |
| 4319412 | Muller et al. | Mar 1982 | A |
| D264017 | Turner | Apr 1982 | S |
| 4322895 | Hockerson | Apr 1982 | A |
| D265019 | Vermonet | Jun 1982 | S |
| 4335529 | Badalamenti | Jun 1982 | A |
| 4340626 | Rudy | Jul 1982 | A |
| 4342161 | Schmohl | Aug 1982 | A |
| 4348821 | Daswick | Sep 1982 | A |
| 4354319 | Block et al. | Oct 1982 | A |
| 4361971 | Bowerman | Dec 1982 | A |
| 4366634 | Giese et al. | Jan 1983 | A |
| 4370817 | Ratanangsu | Feb 1983 | A |
| 4372059 | Ambrose | Feb 1983 | A |
| 4398357 | Batra | Aug 1983 | A |
| 4399620 | Funck | Aug 1983 | A |
| D272294 | Watanabe | Jan 1984 | S |
| 4449306 | Cavanagh | May 1984 | A |
| 4451994 | Fowler | Jun 1984 | A |
| 4454662 | Stubblefield | Jun 1984 | A |
| 4455765 | Sjöswärd | Jun 1984 | A |
| 4455767 | Bergmans | Jun 1984 | A |
| 4468870 | Sternberg | Sep 1984 | A |
| 4484397 | Curley, Jr. | Nov 1984 | A |
| 4494321 | Lawlor | Jan 1985 | A |
| 4505055 | Bergmans | Mar 1985 | A |
| 4506462 | Cavanagh | Mar 1985 | A |
| 4521979 | Blaser | Jun 1985 | A |
| 4527345 | Lopez Lopez | Jul 1985 | A |
| D280568 | Stubblefield | Sep 1985 | S |
| 4542598 | Misevich et al. | Sep 1985 | A |
| 4546559 | Dassler | Oct 1985 | A |
| 4557059 | Misevich et al. | Dec 1985 | A |
| 4559723 | Hamy et al. | Dec 1985 | A |
| 4559724 | Norton | Dec 1985 | A |
| 4561195 | Onoda et al. | Dec 1985 | A |
| 4577417 | Cole | Mar 1986 | A |
| 4578882 | Talarico, II | Apr 1986 | A |
| 4580359 | Kurrash et al. | Apr 1986 | A |
| 4624061 | Wezel et al. | Nov 1986 | A |
| 4624062 | Autry | Nov 1986 | A |
| 4641438 | Laird et al. | Feb 1987 | A |
| 4642917 | Ungar | Feb 1987 | A |
| 4651445 | Hannibal | Mar 1987 | A |
| D289341 | Turner | Apr 1987 | S |
| 4670995 | Huang | Jun 1987 | A |
| 4676010 | Cheskin | Jun 1987 | A |
| 4694591 | Banich et al. | Sep 1987 | A |
| 4697361 | Ganter et al. | Oct 1987 | A |
| D293275 | Bua | Dec 1987 | S |
| 4715133 | Hartjes et al. | Dec 1987 | A |
| 4724622 | Mills | Feb 1988 | A |
| D294425 | Le | Mar 1988 | S |
| 4727660 | Bernhard | Mar 1988 | A |
| 4730402 | Norton et al. | Mar 1988 | A |
| 4731939 | Parracho et al. | Mar 1988 | A |
| 4747220 | Autry et al. | May 1988 | A |
| D296149 | Diaz | Jun 1988 | S |
| D296152 | Selbiger | Jun 1988 | S |
| 4748753 | Ju | Jun 1988 | A |
| 4754561 | Dufour | Jul 1988 | A |
| 4756098 | Boggia | Jul 1988 | A |
| 4757620 | Tiitola | Jul 1988 | A |
| 4759136 | Stewart et al. | Jul 1988 | A |
| 4768295 | Ito | Sep 1988 | A |
| 4769926 | Meyers | Sep 1988 | A |
| D298684 | Pitchford | Nov 1988 | S |
| 4785557 | Kelley et al. | Nov 1988 | A |
| 4817304 | Parker et al. | Apr 1989 | A |
| 4827631 | Thornton | May 1989 | A |
| 4833795 | Diaz | May 1989 | A |
| 4837949 | Dufour | Jun 1989 | A |
| D302900 | Kolman et al. | Aug 1989 | S |
| 4854057 | Misevich et al. | Aug 1989 | A |
| 4858340 | Pasternak | Aug 1989 | A |
| 4866861 | Noone | Sep 1989 | A |
| 4876807 | Tiitola et al. | Oct 1989 | A |
| 4890398 | Thomasson | Jan 1990 | A |
| 4894933 | Tonkel et al. | Jan 1990 | A |
| 4897936 | Fuerst | Feb 1990 | A |
| 4906502 | Rudy | Mar 1990 | A |
| 4934070 | Mauger | Jun 1990 | A |
| 4934073 | Robinson | Jun 1990 | A |
| D310131 | Hase | Aug 1990 | S |
| D310132 | Hase | Aug 1990 | S |
| 4947560 | Fuerst et al. | Aug 1990 | A |
| 4949476 | Anderie | Aug 1990 | A |
| D310906 | Hase | Oct 1990 | S |
| 4982737 | Guttmann | Jan 1991 | A |
| 4989349 | Ellis, III | Feb 1991 | A |
| D315634 | Yung-Mao | Mar 1991 | S |
| 5010662 | Dabuzhsky et al. | Apr 1991 | A |
| 5014449 | Richard et al. | May 1991 | A |
| 5024007 | DuFour | Jun 1991 | A |
| 5025573 | Giese et al. | Jun 1991 | A |
| D320302 | Kiyosawa | Oct 1991 | S |
| 5052130 | Barry et al. | Oct 1991 | A |
| 5077916 | Beneteau | Jan 1992 | A |
| 5079856 | Truelsen | Jan 1992 | A |
| 5092060 | Frachey et al. | Mar 1992 | A |
| D327164 | Hatfield | Jun 1992 | S |
| D327165 | Hatfield | Jun 1992 | S |
| 5131173 | Anderie | Jul 1992 | A |
| D328968 | Tinker | Sep 1992 | S |
| D329528 | Hatfield | Sep 1992 | S |
| D329739 | Hatfield | Sep 1992 | S |
| D330972 | Hatfield et al. | Nov 1992 | S |
| D332344 | Hatfield et al. | Jan 1993 | S |
| D332692 | Hatfield et al. | Jan 1993 | S |
| 5191727 | Barry et al. | Mar 1993 | A |
| 5224280 | Preman et al. | Jul 1993 | A |
| 5224810 | Pitkin | Jul 1993 | A |
| 5237758 | Zachman | Aug 1993 | A |
| D347105 | Johnson | May 1994 | S |
| 5317819 | Ellis, III | Jun 1994 | A |
| 5369896 | Frachey et al. | Dec 1994 | A |
| D372114 | Tuner et al. | Jul 1996 | S |
| 5543194 | Rudy | Aug 1996 | A |
| 5544429 | Ellis, III | Aug 1996 | A |
| 5572805 | Giese et al. | Nov 1996 | A |
| D388594 | Turner et al. | Jan 1998 | S |
| D409362 | Turner et al. | May 1999 | S |
| D409826 | Tuner et al. | May 1999 | S |
| D410138 | Turner et al. | May 1999 | S |
| 5909948 | Ellis, III | Jun 1999 | A |
| 6115941 | Ellis, III | Sep 2000 | A |
| 6115945 | Ellis, III | Sep 2000 | A |
| 6163982 | Ellis, III | Dec 2000 | A |
| D444293 | Turner et al. | Jul 2001 | S |
| D450916 | Turner et al. | Nov 2001 | S |
| 6629376 | Ellis, III | Oct 2003 | B1 |
| Number | Date | Country |
|---|---|---|
| 200963 | May 1958 | AT |
| 1 138 194 | Dec 1982 | CA |
| 1 176 458 | Oct 1984 | CA |
| B 23257 VII71 | May 1956 | DE |
| 1918131 | Jun 1965 | DE |
| 1918132 | Jun 1965 | DE |
| 1 287 477 | Jan 1969 | DE |
| 1 290 844 | Mar 1969 | DE |
| 2036062 | Jul 1970 | DE |
| 1948620 | May 1971 | DE |
| 1685293 | Jul 1971 | DE |
| 1 685 260 | Oct 1971 | DE |
| 2045430 | Mar 1972 | DE |
| 2522127 | Nov 1976 | DE |
| 2525613 | Dec 1976 | DE |
| 2602310 | Jul 1977 | DE |
| 2613312 | Oct 1977 | DE |
| 27 06 645 | Aug 1978 | DE |
| 2654116 | Jan 1979 | DE |
| 27 37 765 | Mar 1979 | DE |
| 28 05 426 | Aug 1979 | DE |
| 3021936 | Apr 1981 | DE |
| 8219616.8 | Sep 1982 | DE |
| 3113295 | Oct 1982 | DE |
| 32 45 182 | May 1983 | DE |
| 33 17 462 | Oct 1983 | DE |
| 831831.7 | Dec 1984 | DE |
| 3347343 | Jul 1985 | DE |
| 8530136.1 | Feb 1988 | DE |
| 36 29 245 | Mar 1988 | DE |
| 0 048 965 | Sep 1981 | EP |
| 0 083 449 | Jul 1983 | EP |
| 0 130 816 | Jan 1985 | EP |
| 0 185 781 | Jul 1986 | EP |
| 0207063 | Oct 1986 | EP |
| 0 206 511 | Dec 1986 | EP |
| 0 213 257 | Mar 1987 | EP |
| 0 215 974 | Apr 1987 | EP |
| 0 238 995 | Sep 1987 | EP |
| 0 260 777 | Mar 1988 | EP |
| 0 301 331 | Feb 1989 | EP |
| 0 410 087 | Jan 1991 | EP |
| 0 329 391 | May 1995 | EP |
| 602.501 | Mar 1926 | FR |
| 925.961 | Sep 1947 | FR |
| 1.004.472 | Mar 1952 | FR |
| 1245672 | Oct 1960 | FR |
| 1.323.455 | Feb 1963 | FR |
| 2 006 270 | Dec 1969 | FR |
| 2 261 721 | Sep 1975 | FR |
| 2 511 850 | Mar 1983 | FR |
| 2 622 411 | May 1989 | FR |
| 9591 | Jan 1913 | GB |
| 16143 | Jan 1891 | GB |
| 764956 | Jan 1957 | GB |
| 807305 | Jan 1959 | GB |
| 1504615 | Mar 1978 | GB |
| 2 023 405 | Jan 1980 | GB |
| 2 039 717 | Aug 1980 | GB |
| 2076633 | Dec 1981 | GB |
| 2133668 | Aug 1984 | GB |
| 2 136 670 | Sep 1984 | GB |
| 39-15597 | Aug 1964 | JP |
| 45-5154 | Mar 1970 | JP |
| 50-71132 | Nov 1975 | JP |
| 57-139333 | Aug 1982 | JP |
| 59-23525 | Jul 1984 | JP |
| 61-55810 | Apr 1986 | JP |
| 1129505 | Jun 1986 | JP |
| 61-167810 | Oct 1986 | JP |
| 1-195803 | Aug 1989 | JP |
| 2136505 | May 1990 | JP |
| 2279103 | Nov 1990 | JP |
| 3-85102 | Apr 1991 | JP |
| 3086101 | Apr 1991 | JP |
| 4-279102 | Oct 1992 | JP |
| 5-123204 | May 1993 | JP |
| 189890 | Sep 1981 | NZ |
| WO 8707480 | Dec 1987 | WO |
| WO8707481 | Dec 1987 | WO |
| WO 8808263 | Nov 1988 | WO |
| WO 8906500 | Jul 1989 | WO |
| WO 9000358 | Jan 1990 | WO |
| WO 9100698 | Jan 1991 | WO |
| WO 9103180 | Mar 1991 | WO |
| WO 9104683 | Apr 1991 | WO |
| WO 9105491 | May 1991 | WO |
| WO 9110377 | Jul 1991 | WO |
| WO 9111124 | Aug 1991 | WO |
| WO 9111924 | Aug 1991 | WO |
| WO 9119429 | Dec 1991 | WO |
| WO 9207483 | May 1992 | WO |
| WO 9218024 | Oct 1992 | WO |
| WO 9313928 | Jul 1993 | WO |
| WO 9403080 | Feb 1994 | WO |
| WO 9700029 | Jan 1997 | WO |
| WO 0064293 | Nov 2000 | WO |
| Number | Date | Country | |
|---|---|---|---|
| 20030070320 A1 | Apr 2003 | US |
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|---|---|---|---|
| Parent | 08477640 | Jun 1995 | US |
| Child | 10291319 | US | |
| Parent | 08162962 | Dec 1993 | US |
| Child | 08477640 | US | |
| Parent | 07930469 | Aug 1992 | US |
| Child | 08162962 | US | |
| Parent | 07239667 | Sep 1988 | US |
| Child | 07930469 | US |