Dental detection device

Information

  • Patent Grant
  • D1042180
  • Patent Number
    D1,042,180
  • Date Filed
    Thursday, May 28, 2020
    5 years ago
  • Date Issued
    Tuesday, September 17, 2024
    10 months ago
  • Inventors
    • Christie; Adam
    • Vernon; Bruce
  • Original Assignees
  • Examiners
    • Kirschbaum; George D.
    • Suiter; Antoinette Martine
    Agents
    • Ostrager Chong Flaherty & Broitman P.C.
Abstract
Description


FIG. 1 is a top view of the dental detection device;



FIG. 2 is a left side view thereof;



FIG. 3 is a front thereof;



FIG. 4 is a bottom view thereof;



FIG. 5 is a right side view thereof;



FIG. 6 is a back view thereof; and,



FIG. 7 is a top, front, and right side perspective view thereof.


The broken lines in FIGS. 3 and 7 depict portions of the article that form no part of the claimed design.


Claims
  • The ornamental design for a dental detection device, as shown and described.
US Referenced Citations (71)
Number Name Date Kind
3716170 Mangels Feb 1973 A
4184196 Moret et al. Jan 1980 A
4290433 Alfano Sep 1981 A
4757381 Cooper Jul 1988 A
5240697 Norfleet Aug 1993 A
5342196 Van Hale Aug 1994 A
5409835 Lakowicz Apr 1995 A
D373636 Martin Sep 1996 S
5604198 Poduslo et al. Feb 1997 A
5810863 Wolf Sep 1998 A
D414867 Moriwaki Oct 1999 S
D461132 Woolston Aug 2002 S
D468429 Bareth Jan 2003 S
6769911 Buchalla et al. Aug 2004 B2
D533946 Lintner Dec 2006 S
7175430 Gasser Feb 2007 B1
D550358 Nakanishi Sep 2007 S
D558345 Witt Dec 2007 S
D599018 Plank Aug 2009 S
7601805 Foti et al. Oct 2009 B2
D613865 De Charentenay Apr 2010 S
D618799 Plank Jun 2010 S
D625819 Kagawa Oct 2010 S
7858394 Wunder Dec 2010 B2
D630747 Shinohara Jan 2011 S
D653340 Goerge Jan 2012 S
D658293 Kagawa Apr 2012 S
D669583 Kagawa Oct 2012 S
8647119 Nagal Feb 2014 B1
9327896 Chiba May 2016 B2
D780182 Klein Feb 2017 S
D785176 Tseng Apr 2017 S
D823468 Frenkler Jul 2018 S
D828562 Sheetz Sep 2018 S
D862697 Kenworthy Oct 2019 S
D866764 Pukall Nov 2019 S
D878588 Chang Mar 2020 S
D884175 Aubailly May 2020 S
D908160 Sun Jan 2021 S
D910850 Hansen Feb 2021 S
D915594 Chang Apr 2021 S
D916288 Hansen Apr 2021 S
D918209 Kenworthy May 2021 S
D928959 Yoon Aug 2021 S
D952851 Chang May 2022 S
D953038 Albay May 2022 S
20020000494 Bryan Jan 2002 A1
20020168610 Papanek Nov 2002 A1
20030076605 Shobet Apr 2003 A1
20030175807 Baubet et al. Sep 2003 A1
20040191884 Isobe et al. Sep 2004 A1
20050003323 Katsuda Jan 2005 A1
20050026103 Wasylucha Feb 2005 A1
20050273867 Brulet et al. Dec 2005 A1
20050283058 Choo-Smith et al. Dec 2005 A1
20050287490 Stookey et al. Dec 2005 A1
20060099548 Rizoiu May 2006 A1
20060127327 Shi Jun 2006 A1
20070031776 Sakaguchi Feb 2007 A1
20070082317 Chuang Apr 2007 A1
20080038686 Nagai Feb 2008 A1
20080082000 Thoms Apr 2008 A1
20080160477 Stookey et al. Jul 2008 A1
20080288007 Malak Nov 2008 A1
20100034750 Perfect et al. Feb 2010 A1
20100239996 Ertl Sep 2010 A1
20110200959 Rizoiu et al. Aug 2011 A1
20130189641 Perfect Jul 2013 A1
20130323671 Dillon Dec 2013 A1
20130323672 Monty et al. Dec 2013 A1
20200093371 Christie Mar 2020 A1
Foreign Referenced Citations (41)
Number Date Country
1231590 Oct 1999 CN
2562728 Jul 2003 CN
2562728 Jul 2003 CN
101076295 Nov 2007 CN
201175518 Jan 2009 CN
101478931 Jul 2009 CN
103153166 Jun 2013 CN
105212884 Jan 2016 CN
19926728 Dec 2000 DE
1252859 Oct 2002 EP
1686379 Aug 2006 EP
1693021 Aug 2006 EP
1700865 Sep 2006 EP
2036557 Jul 1980 GB
10236914 Sep 1998 JP
H11244236 Sep 1999 JP
2004077217 Mar 2004 JP
2004156017 Jun 2004 JP
2005118420 May 2005 JP
2005168463 Jun 2005 JP
2005168520 Jun 2005 JP
2005304600 Nov 2005 JP
2006503618 Feb 2006 JP
2009518139 May 2009 JP
9812981 Apr 1998 WO
0071565 Nov 2000 WO
200112237 Feb 2001 WO
200192300 Dec 2001 WO
2003082904 Oct 2003 WO
2005025528 Mar 2005 WO
2006010004 Jan 2006 WO
2006023424 Mar 2006 WO
2007038683 Apr 2007 WO
2007123880 Nov 2007 WO
2008001303 Jan 2008 WO
2008075081 Jun 2008 WO
2008113493 Sep 2008 WO
2010023582 Mar 2010 WO
2010136776 Dec 2010 WO
2012007769 Jan 2012 WO
2013109978 Jul 2013 WO
Non-Patent Literature Citations (50)
Entry
CALCiVis Imaging System (CIS), European Product Design Award, COS_ publication date Sep. 25, 2020, (online) URL: https://web.archive.org/web/20200925183137/https:/www.productdesignaward.eu/winners/hm/2017/22264620/ (Year: 2020).
International Search Report in PCT/GB2018/050054 dated May 28, 2018.
PCT Written Opinion in PCT/GB2018/050054 dated May 28, 2018.
Search Report dated Nov. 17, 2015 from the China Patent Office in Application No. 201180034824.5.
Search Report dated Nov. 21, 2013 from the European Patent Office in Application No. 11758542.2.
Notice of Reasons for Rejection dated Mar. 3, 2015 from Japanese Patent Office in Application No. 2013-519161.
http://en.wikipedia.org/wiki/Prism pdf retrieved Jun. 13, 2014.
Chinese Equivalent Application 200780051625.9 Rejection Decision dated May 23, 2013 and English translation.
Hay, Di et al. “Equilibrium dialysis and ultrafiltration studies of calcium and phosphate binding by human salivary proteins. Implications for salivary supersaturation with respect to calcium phosphate salts” Calcif Tissue Int. 1982; 34 (6):531-8 (Abstract Only) cited in response to CN rejection.
Esser, D. et al.; Sample Stability and Protein Composition of Saliva: Implications for Its Use as a Diagnostic Fluid Biomarker Insights 2008:3 25-37.
Material Safety Data Sheet—BAPTA—cited in response to Chinese rejection.
Zhong, F. et al., “Bcl-2 differentially regulates Ca 2+ signals according to the strength of T cell receptor activation” Journal of Cell Biology 2006: 172(1) 127-137.
Gorokhovatsky, Ay et al., “Fusion of Aequorea victoria GFP and aequorin provides their Ca2+ induced interaction that results in red shift of GFP absorption and efficient bioluminescense energy transfer” J. Biochemical and Biophysical Research Communications 2004: 320 703-711.
Baubet et al., “ Chimeric green flourescent protein-aequorin as bioluminescent Ca21 reporters at the single-cell level”, PNAS, vol. 97, No. 13, pp. 2760-7265, Jun. 20, 2020. (Year: 2020).
Translation of Office Action prepared on Jun. 14, 2012 for corresponding Japanese patent application No. JP2009-542225.
Translation of second Office Action dated Sep. 13, 2012 for corresponding Chinese patent application No. 2007800516259.
Amaechi, B.T. et al., “Factors affecting the development of carious lesions in bovine teeth in vitro,” Archives of Oral Biology, 1998, vol. 43, pp. 619-628, Elsevier Science Ltd.
Callan, J.F. et al. “Switching between molecular switch types by module rearrangement: CA2+enabled, H+ driven ‘Off-On-Off’, H+driven YES and PASS 0 as well as H+, Ca2+ driven AND logic operations,” Chem. Commun., 2004 pp. 2048-2049, The Royal Society of Chemistry 2004, U.K.
Charbonneau, H. et al., “Amino Acid Sequence of the Calcium-Dependent Photoprotein Aequorion,” Biochemistry, 1985, vol. 24, pp. 6762-6771, American Chemical Society, Washington, D.C.
Fagan, T.F., et al., “Cloning, expression and sequence analysis of cDNA for the Ca2+binding photoprotein, mitrocomin,” Federation of European Biochemical Societies, vol. 333, No. 3, pp. 301-305, Elsevier Science Publishers B.V.
Head, James F. et al., “The crystal structure of the photoprotein aequorin at 2.3A resolution,” Nature, vol. 405, pp. 372-376, May 18, 2000, Macmillan Magazines Ltd.
Hemingway, C.A., et al. “Enamel erosion by soft drinks with and without abrasion,” British Dental Journal, vol. 201, No. 7, p. 439, Oct. 7, 2006.
Illarionov, B.A. et al., “Cloning and expression of the cDNA of the Calium-Activated photoprotein obeline from hydroid polypobelia longissima,” Proceedings of the Academy of Sciences, 1992, vol. 326, No. 5, UDC 575 113. Genetics, Russia.
Illarionov, B.A., et al., “Sequence of the CDNA encoding the Ca2+ activated photoprotein obelin from the hydroid polyp Obelia longissima,” Gene, vol. 153, pp. 273-274, 1995, Elsevier Science B.V.
Inouye, S. et al., “Cloning and sequence analysis of cDNA for the Ca2+activated photoprotein, clytin, ”Federation of European Biochemical Societies, vol. 315, No. 3, pp. 343-346, 1993, Elsevier Science Publishers B.V.
Inouye, S. et al., “Cloning and sequence analysis of cDNA for the luminescent protein aequorin, ”Proceedings of the National Academy of Sciences, USA, Biochemistry, vol. 82, pp. 3154-3158, May 1985.
Kim, T-H, et al., “A Fluorescent Self-Amplifying Wavelength-Responsive Sensory Polymer for Fluoride lons,” Angew, Chem. Int. Ed. 2003, vol. 42, pp. 4803-4806, Wiley-VCH Verlag Gmbh & Co. KGaA, Weinheim, Germany.
Markova, S.V. et al., “Obelin from the Bioluminescent Marine Hydroid Obelia geniculata: Cloning, Expression, and Comparison of Som Properties with Thise of Other Ca2+Regulated Photoproteins,” Biochemistry 2002, vol. 41, pp. 2227-2236, American Chemical Society, Washington, D.C.
Miyawaki, A. et al., “Fluorescent indicators for Ca2+ based on green fluorescent proteins and calmodulin,” Nature, vol. 388, pp. 882-887, Aug. 28, 1997, Macmillan Publishers Ltd.
Miyawaki, A. et al., “Dynamic and quantitative Ca2+ measurements using improved cameleons, ”Mar. 1999, Proceedings of the National Academy of Science, USA Cell Biology, vol. 296, pp. 2135-2140.
Nagai, T. et al., “Circularly permuted green fluorescent proteins engineered to sense Ca2+,” PNAS, Mar. 13, 2001, vol. 98, No. 6, pp. 3197-3202.
“Strontium and Dental Carries,” Nutrition Reviews, vol. 41, No. 11, Nov. 1983.
Prasher, D. et al., “Cloning and expression of the cDNA Coding for aequorin, A Bioluminescent Calcium-Binding Protein,” Biochemical and Biophysical Research Communications, vol. 126, No. 3, Feb. 15, 1985, pp. 1259-1268, Academic Press, Inc.
Prasher, D. et al., “Sequence Comparisons of Complementary DNAs Encoding Aequorin Isotypes,” Biochemistry 1987, vol. 26, pp. 1326-1332, American Chemical Society, Washington D.C.
Rawls, H.R., “Demonstration of Dye-Uptake as a Potential Aid in Early Diagnosis of Incipient Caries,” Caries Res., vol. 12, pp. 69-75 (1978).
Rudolf, R. et al., “Looking Forward to Seeing Calcium,” Nature Reviews / Molecular Cell Biology, vol. 4, Jul. 2003, pp. 570-586.
Shimomura, O., et al., “Halistaurin, phialidin and modified forms of aequorin as Ca2+ indicator in bioloical systems,” Biochem J. (1985) vol. 228, lines 745-749, Great Britain.
Shimomura, O., et al., The discovery of aequorin and green fluorescent protein, Journal of Microscopy, vol. 217, Pt. 1, Jan. 2005, pp. 3-15, The Royal Microscopical Society.
Shimomura, O., et al., “Peroxidized coelenterazine, the active group in the photoprotein aequorin,” Proceedings of the National Academy of Science USA/ Biochemistry, vol. 75, No. 6, pp. 2611-2615, Jun. 1978.
Thorpe, J.H. et al., “Conformational and hydration effects of site-selective Sodium, Calcium and Strontium lon Binding to the DNA Holliday Junction Structure d(TCGGTACCGA),” Journal of Molecular Biology (2003) vol. 327, lines 97-109, Elsevier Science Ltd.
Tsuji, F.I., et al., “Molecular Evolution of the Ca2+binding photoprotein if the hydroza,” Photochemistry and Photobiology, vol. 62, No. 4, pp. 657-661, 1995 American Society for Photobiology, U.S.
Ward, W.W., et al., “Properties of Mnemiopsin and Berovin, Calcium-Activated Photoproteins from the Ctenophores Mnemiopsis sp. and Beroe ovata,” Biochemistry, vol. 13, No. 7, 1994.
Pouls (The Townsend Letter for Doctors and Patients, EDTA Chelation Therapy, Jul. 31, 1999, http://www. townsendletter.com/Chelation/chelation_extreme.htm, pp. 1-28) (Year: 1999).
The Second Office Action, Application No. 201880014017.9, mailed Feb. 8, 2022.
Notification of Grounds of refusal, Patent Application No. 2019-557689, mailed Feb. 8, 2022.
Rejection Decision in China Application No. 201880014017.9, dated Sep. 8, 2022 from the China Patent Office.
Communication pursuant to Article 94(3) EPC in Application No. 18 708 168.2-1113, dated Oct. 10, 2022 from the European Patent Office.
Notification of grounds of refusal in Japanese Application No. 2019-557689, dated Jan. 31, 2022 from the Japanese Patent Office.
Final Office Action mailed May 10, 2019 in U.S. Appl. No. 13/810,141.
Office Action dated Sep. 16, 2021 from China National Intellectual Property Administration in corresponding China Application No. 201880014017.9.