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Published in: Osteoporosis International 3/2005

01-03-2005 | Original Article

Clinical and panoramic predictors of femur bone mineral density

Authors: Stuart C. White, Akira Taguchi, David Kao, Sam Wu, Susan K. Service, Douglas Yoon, Yoshikazu Suei, Takashi Nakamoto, Keiji Tanimoto

Published in: Osteoporosis International | Issue 3/2005

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Abstract

Dentists are a potentially valuable resource for initial patient screening for signs of osteoporosis, as individuals with osteoporosis have altered architecture of the inferior border of the mandible as seen on panoramic radiographs. Our aim was to evaluate the efficacy of combining clinical and dental panoramic radiographic risk factors for identifying individuals with low femoral bone mass. Bone mineral density was measured at the femoral neck and classified as normal, osteopenic or osteoporotic using WHO criteria in 227 Japanese postmenopausal women (33–84 years). Panoramic radiographs were made of all subjects. Mandibular cortical shape and width was determined and trabecular features were measured in each ramus. Mean subject age, height, and weight were significantly different in the three bone-density groups (P<0.0001). A classification and regression trees (CART) analysis using just clinical risk factors identified 136 (87%) of the 157 individuals with femoral osteopenia or osteoporosis. Mean mandible cortical width (P<0.0001), cortical index (P<0.0001) and trabecular features (P=0.02) were also significantly different in the three bone density groups. A CART analysis considering only radiographic features found 130 (83%) of the 157 individuals with femoral osteopenia or osteoporosis, although none of the subjects with osteoporosis was correctly identified. A CART analysis using both clinical and radiographic features found that the most useful risk factors were thickness of inferior border of the mandible and age. This algorithm identified 130 (83%) of the 157 individuals with femoral osteopenia or osteoporosis. The results of this study suggest that 1) clinical information is as useful as panoramic radiographic information for identifying subjects having low bone mass, and 2) dentists have sufficient clinical and radiographic information to play a useful role in screening for individuals with osteoporosis.
Literature
1.
go back to reference National Osteoporosis Foundation (2002) America’s bone health: the state of osteoporosis and low bone mass in our nation. Washington D.C. National Osteoporosis Foundation (2002) America’s bone health: the state of osteoporosis and low bone mass in our nation. Washington D.C.
2.
go back to reference Cummings SR, Kelsey JL, Nevitt MC, O’Dowd KJ (1985) Epidemiology of osteoporosis and osteoporotic fractures. Epidemiol Rev 7:178–208PubMed Cummings SR, Kelsey JL, Nevitt MC, O’Dowd KJ (1985) Epidemiology of osteoporosis and osteoporotic fractures. Epidemiol Rev 7:178–208PubMed
3.
go back to reference Baudoin C, Fardellone P, Bean K, Ostertag-Ezembe A, Hervy F (1996) Clinical outcomes and mortality after hip fracture: a 2-year follow-up study. Bone 18:149S–57SCrossRefPubMed Baudoin C, Fardellone P, Bean K, Ostertag-Ezembe A, Hervy F (1996) Clinical outcomes and mortality after hip fracture: a 2-year follow-up study. Bone 18:149S–57SCrossRefPubMed
4.
go back to reference Program Overview (1999) Foundation For Osteoporosis Research & Education:http://www.fore.org/program_overview.html Program Overview (1999) Foundation For Osteoporosis Research & Education:http://​www.​fore.​org/​program_​overview.​html
5.
go back to reference Browner WS, Pressman AR, Nevitt MC, Cummings SR (1996) Mortality following fractures in older women. The study of osteoporotic fractures. Arch Intern Med 156:1521–1525CrossRefPubMed Browner WS, Pressman AR, Nevitt MC, Cummings SR (1996) Mortality following fractures in older women. The study of osteoporotic fractures. Arch Intern Med 156:1521–1525CrossRefPubMed
6.
go back to reference Koh LK, Sedrine WB, Torralba TP, Kung A, Fujiwara S, Chan SP et al. (2001) A simple tool to identify Asian women at increased risk of osteoporosis. Osteoporos Int 12:699–705CrossRefPubMed Koh LK, Sedrine WB, Torralba TP, Kung A, Fujiwara S, Chan SP et al. (2001) A simple tool to identify Asian women at increased risk of osteoporosis. Osteoporos Int 12:699–705CrossRefPubMed
7.
go back to reference Cadarette SM, Jaglal SB, Kreiger N, McIsaac WJ, Darlington GA, Tu JV (2000) Development and validation of the Osteoporosis Risk Assessment Instrument to facilitate selection of women for bone densitometry. CMAJ 162:1289–94PubMed Cadarette SM, Jaglal SB, Kreiger N, McIsaac WJ, Darlington GA, Tu JV (2000) Development and validation of the Osteoporosis Risk Assessment Instrument to facilitate selection of women for bone densitometry. CMAJ 162:1289–94PubMed
8.
go back to reference Black DM, Steinbuch M, Palermo L, Dargent-Molina P, Lindsay R, Hoseyni MS, et al. (2001) An assessment tool for predicting fracture risk in postmenopausal women. Osteoporos Int 12:519–28CrossRefPubMed Black DM, Steinbuch M, Palermo L, Dargent-Molina P, Lindsay R, Hoseyni MS, et al. (2001) An assessment tool for predicting fracture risk in postmenopausal women. Osteoporos Int 12:519–28CrossRefPubMed
9.
go back to reference Sedrine WB, Chevallier T, Zegels B, Kvasz A, Micheletti MC, Gelas B, et al. (2002) Development and assessment of the Osteoporosis Index of Risk (OSIRIS) to facilitate selection of women for bone densitometry. Gynecol Endocrinol 16:245–250PubMed Sedrine WB, Chevallier T, Zegels B, Kvasz A, Micheletti MC, Gelas B, et al. (2002) Development and assessment of the Osteoporosis Index of Risk (OSIRIS) to facilitate selection of women for bone densitometry. Gynecol Endocrinol 16:245–250PubMed
10.
go back to reference Lydick E, Cook K, Turpin J, Melton M, Stine R, Byrnes C (1998) Development and validation of a simple questionnaire to facilitate identification of women likely to have low bone density. Am J Manag Care 4:37–48PubMed Lydick E, Cook K, Turpin J, Melton M, Stine R, Byrnes C (1998) Development and validation of a simple questionnaire to facilitate identification of women likely to have low bone density. Am J Manag Care 4:37–48PubMed
11.
go back to reference Cummings SR, Nevitt MC, Browner WS, Stone K, Fox KM, Ensrud KE, et al. (1995) Risk factors for hip fracture in white women. Study of Osteoporotic Fractures Research Group. N Engl J Med 332:767–773CrossRefPubMed Cummings SR, Nevitt MC, Browner WS, Stone K, Fox KM, Ensrud KE, et al. (1995) Risk factors for hip fracture in white women. Study of Osteoporotic Fractures Research Group. N Engl J Med 332:767–773CrossRefPubMed
12.
go back to reference Dargent-Molina P, Douchin MN, Cormier C, Meunier PJ, Breart G (2002) Use of clinical risk factors in elderly women with low bone mineral density to identify women at higher risk of hip fracture: the EPIDOS prospective study. Osteoporos Int 13:593–599CrossRefPubMed Dargent-Molina P, Douchin MN, Cormier C, Meunier PJ, Breart G (2002) Use of clinical risk factors in elderly women with low bone mineral density to identify women at higher risk of hip fracture: the EPIDOS prospective study. Osteoporos Int 13:593–599CrossRefPubMed
13.
go back to reference National Oral Health Surveillance System (1999) Dental visits. Centers for Disease Control, Atlanta, Ga. National Oral Health Surveillance System (1999) Dental visits. Centers for Disease Control, Atlanta, Ga.
14.
go back to reference Devlin H, Horner K (2002) Mandibular radiomorphometric indices in the diagnosis of reduced skeletal bone mineral density. Osteoporos Int 13:373–378CrossRefPubMed Devlin H, Horner K (2002) Mandibular radiomorphometric indices in the diagnosis of reduced skeletal bone mineral density. Osteoporos Int 13:373–378CrossRefPubMed
15.
go back to reference Ledgerton D, Horner K, Devlin H, Worthington H (1999) Radiomorphometric indices of the mandible in a British female population. Dentomaxillofac Radiol 28:173–181CrossRefPubMed Ledgerton D, Horner K, Devlin H, Worthington H (1999) Radiomorphometric indices of the mandible in a British female population. Dentomaxillofac Radiol 28:173–181CrossRefPubMed
16.
go back to reference Taguchi A, Suei Y, Ohtsuka M, Otani K, Tanimoto K, Ohtaki M (1996) Usefulness of panoramic radiography in the diagnosis of postmenopausal osteoporosis in women. Width and morphology of inferior cortex of the mandible. Dentomaxillofac Radiol 25:263–267PubMed Taguchi A, Suei Y, Ohtsuka M, Otani K, Tanimoto K, Ohtaki M (1996) Usefulness of panoramic radiography in the diagnosis of postmenopausal osteoporosis in women. Width and morphology of inferior cortex of the mandible. Dentomaxillofac Radiol 25:263–267PubMed
17.
18.
go back to reference Taguchi A, Tanimoto K, Suei Y, Otani K, Wada T (1995) Oral signs as indicators of possible osteoporosis in elderly women. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 80:612–616PubMed Taguchi A, Tanimoto K, Suei Y, Otani K, Wada T (1995) Oral signs as indicators of possible osteoporosis in elderly women. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 80:612–616PubMed
19.
go back to reference Law AN, Bollen AM, Chen SK (1996) Detecting osteoporosis using dental radiographs: a comparison of four methods. J Am Dent Assoc 127:1734–1742PubMed Law AN, Bollen AM, Chen SK (1996) Detecting osteoporosis using dental radiographs: a comparison of four methods. J Am Dent Assoc 127:1734–1742PubMed
20.
go back to reference Horner K, Devlin H (1998) The relationship between mandibular bone mineral density and panoramic radiographic measurements. J Dent 26:337–343CrossRefPubMed Horner K, Devlin H (1998) The relationship between mandibular bone mineral density and panoramic radiographic measurements. J Dent 26:337–343CrossRefPubMed
21.
go back to reference Klemetti E, Kolmakov S, Kroger H (1994) Pantomography in assessment of the osteoporosis risk group. Scand J Dent Res 102:68–72PubMed Klemetti E, Kolmakov S, Kroger H (1994) Pantomography in assessment of the osteoporosis risk group. Scand J Dent Res 102:68–72PubMed
22.
go back to reference Geraets WG, van der Stelt PF, Netelenbos CJ, Elders PJ (1990) A new method for automatic recognition of the radiographic trabecular pattern. J Bone Miner Res 5:227–233PubMed Geraets WG, van der Stelt PF, Netelenbos CJ, Elders PJ (1990) A new method for automatic recognition of the radiographic trabecular pattern. J Bone Miner Res 5:227–233PubMed
23.
go back to reference Geraets WG, van der Stelt PF (1991) Analysis of the radiographic trabecular pattern. Pattern Recognition Letters 12:575–581 Geraets WG, van der Stelt PF (1991) Analysis of the radiographic trabecular pattern. Pattern Recognition Letters 12:575–581
24.
go back to reference Caligiuri P, Giger ML, Favus MJ, Jia H, Doi K, Dixon LB (1993) Computerized radiographic analysis of osteoporosis: preliminary evaluation. Radiology 186:471–474PubMed Caligiuri P, Giger ML, Favus MJ, Jia H, Doi K, Dixon LB (1993) Computerized radiographic analysis of osteoporosis: preliminary evaluation. Radiology 186:471–474PubMed
25.
go back to reference Croucher PI, Garrahan NJ, Compston JE (1996) Assessment of cancellous bone structure: comparison of strut analysis, trabecular bone pattern factor, and marrow space star volume. J Bone Miner Res 11:955–961PubMed Croucher PI, Garrahan NJ, Compston JE (1996) Assessment of cancellous bone structure: comparison of strut analysis, trabecular bone pattern factor, and marrow space star volume. J Bone Miner Res 11:955–961PubMed
26.
go back to reference Garrahan NJ, Mellish RW, Compston JE (1986) A new method for the two-dimensional analysis of bone structure in human iliac crest biopsies. J Microsc 142:341–349PubMed Garrahan NJ, Mellish RW, Compston JE (1986) A new method for the two-dimensional analysis of bone structure in human iliac crest biopsies. J Microsc 142:341–349PubMed
27.
go back to reference Cortet B, Dubois P, Boutry N, Bourel P, Cotten A, Marchandise X (1999) Image analysis of the distal radius trabecular network using computed tomography. Osteoporos Int 9:410–419CrossRefPubMed Cortet B, Dubois P, Boutry N, Bourel P, Cotten A, Marchandise X (1999) Image analysis of the distal radius trabecular network using computed tomography. Osteoporos Int 9:410–419CrossRefPubMed
28.
go back to reference Breiman L, Friedman J, Olshen R, Stone C (1984) Classification and regression trees. Wadsworth International Group, Belmont, Calif. Breiman L, Friedman J, Olshen R, Stone C (1984) Classification and regression trees. Wadsworth International Group, Belmont, Calif.
29.
go back to reference Clark LA, Pregibon D (1992) Tree-based models. In: Chambers JM, Hastie TJ (eds) Statistical models. Wadworth and Brooks, South Pacific Grove, Calif., pp 377–417 Clark LA, Pregibon D (1992) Tree-based models. In: Chambers JM, Hastie TJ (eds) Statistical models. Wadworth and Brooks, South Pacific Grove, Calif., pp 377–417
30.
go back to reference Burger H, de Laet CE, Weel AE, Hofman A, Pols HA (1999) Added value of bone mineral density in hip fracture risk scores. Bone 25:369–374CrossRefPubMed Burger H, de Laet CE, Weel AE, Hofman A, Pols HA (1999) Added value of bone mineral density in hip fracture risk scores. Bone 25:369–374CrossRefPubMed
31.
go back to reference Kribbs PJ, Chesnut CHd, Ott SM, Kilcoyne RF (1989) Relationships between mandibular and skeletal bone in an osteoporotic population. J Prosthet Dent 62:703–707PubMed Kribbs PJ, Chesnut CHd, Ott SM, Kilcoyne RF (1989) Relationships between mandibular and skeletal bone in an osteoporotic population. J Prosthet Dent 62:703–707PubMed
32.
go back to reference Kribbs PJ, Chesnut CHd, Ott SM, Kilcoyne RF (1990) Relationships between mandibular and skeletal bone in a population of normal women. J Prosthet Dent 63:86–89PubMed Kribbs PJ, Chesnut CHd, Ott SM, Kilcoyne RF (1990) Relationships between mandibular and skeletal bone in a population of normal women. J Prosthet Dent 63:86–89PubMed
33.
go back to reference Klemetti E, Kolmakov S, Heiskanen P, Vainio P, Lassila V (1993) Panoramic mandibular index and bone mineral densities in postmenopausal women. Oral Surg Oral Med Oral Pathol 75:774–779PubMed Klemetti E, Kolmakov S, Heiskanen P, Vainio P, Lassila V (1993) Panoramic mandibular index and bone mineral densities in postmenopausal women. Oral Surg Oral Med Oral Pathol 75:774–779PubMed
34.
go back to reference Bollen AM, Taguchi A, Hujoel PP, Hollender LG (2000) Case-control study on self-reported osteoporotic fractures and mandibular cortical bone. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 90:518–524CrossRefPubMed Bollen AM, Taguchi A, Hujoel PP, Hollender LG (2000) Case-control study on self-reported osteoporotic fractures and mandibular cortical bone. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 90:518–524CrossRefPubMed
35.
go back to reference Mohajery M, Brooks SL (1992) Oral radiographs in the detection of early signs of osteoporosis. Oral Surg Oral Med Oral Pathol 73:112–117PubMed Mohajery M, Brooks SL (1992) Oral radiographs in the detection of early signs of osteoporosis. Oral Surg Oral Med Oral Pathol 73:112–117PubMed
36.
go back to reference Gluer CC, Cummings SR, Pressman A, Li J, Gluer K, Faulkner KG, et al. (1994) Prediction of hip fractures from pelvic radiographs: the study of osteoporotic fractures. The Study of Osteoporotic Fractures Research Group. J Bone Miner Res 9:671–677PubMed Gluer CC, Cummings SR, Pressman A, Li J, Gluer K, Faulkner KG, et al. (1994) Prediction of hip fractures from pelvic radiographs: the study of osteoporotic fractures. The Study of Osteoporotic Fractures Research Group. J Bone Miner Res 9:671–677PubMed
37.
go back to reference Chappard D, Legrand E, Pascaretti C, Basle MF, Audran M (1999) Comparison of eight histomorphometric methods for measuring trabecular bone architecture by image analysis on histological sections. Microsc Res Technol 45:303–312CrossRef Chappard D, Legrand E, Pascaretti C, Basle MF, Audran M (1999) Comparison of eight histomorphometric methods for measuring trabecular bone architecture by image analysis on histological sections. Microsc Res Technol 45:303–312CrossRef
38.
go back to reference Amling M, Posl M, Ritzel H, Hahn M, Vogel M, Wening VJ et al. (1996) Architecture and distribution of cancellous bone yield vertebral fracture clues. A histomorphometric analysis of the complete spinal column from 40 autopsy specimens. Arch Orthop Trauma Surg 115:262–269PubMed Amling M, Posl M, Ritzel H, Hahn M, Vogel M, Wening VJ et al. (1996) Architecture and distribution of cancellous bone yield vertebral fracture clues. A histomorphometric analysis of the complete spinal column from 40 autopsy specimens. Arch Orthop Trauma Surg 115:262–269PubMed
39.
go back to reference Link TM, Majumdar S, Konermann W, Meier N, Lin JC, Newitt D et al. (1997) Texture analysis of direct magnification radiographs of vertebral specimens: correlation with bone mineral density and biomechanical properties. Acad Radiol 4:167–176PubMed Link TM, Majumdar S, Konermann W, Meier N, Lin JC, Newitt D et al. (1997) Texture analysis of direct magnification radiographs of vertebral specimens: correlation with bone mineral density and biomechanical properties. Acad Radiol 4:167–176PubMed
40.
go back to reference Majumdar S, Genant HK, Grampp S, Newitt DC (1997) Correlation of trabecular bone structure with age, bone mineral density, and osteoporotic status: In vivo studies in the distal radius using high resolution magnetic resonance imaging. J Bone Mineral Res 12:111–118 Majumdar S, Genant HK, Grampp S, Newitt DC (1997) Correlation of trabecular bone structure with age, bone mineral density, and osteoporotic status: In vivo studies in the distal radius using high resolution magnetic resonance imaging. J Bone Mineral Res 12:111–118
41.
go back to reference Newitt DC, Majumdar S, van Rietbergen B, von Ingersleben G, Harris ST, Genant HK et al. (2002) In vivo assessment of architecture and micro-finite element analysis derived indices of mechanical properties of trabecular bone in the radius. Osteoporos Int 13:6–17CrossRefPubMed Newitt DC, Majumdar S, van Rietbergen B, von Ingersleben G, Harris ST, Genant HK et al. (2002) In vivo assessment of architecture and micro-finite element analysis derived indices of mechanical properties of trabecular bone in the radius. Osteoporos Int 13:6–17CrossRefPubMed
42.
go back to reference Wehrli FW, Gomberg BR, Saha PK, Song HK, Hwang SN, Snyder PJ (2001) Digital topological analysis of in vivo magnetic resonance microimages of trabecular bone reveals structural implications of osteoporosis. J Bone Miner Res 16:1520–1531PubMed Wehrli FW, Gomberg BR, Saha PK, Song HK, Hwang SN, Snyder PJ (2001) Digital topological analysis of in vivo magnetic resonance microimages of trabecular bone reveals structural implications of osteoporosis. J Bone Miner Res 16:1520–1531PubMed
43.
go back to reference White SC, Rudolph DJ (1999) Alterations of the trabecular pattern of the jaws in patients with osteoporosis. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 88:628–635PubMed White SC, Rudolph DJ (1999) Alterations of the trabecular pattern of the jaws in patients with osteoporosis. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 88:628–635PubMed
44.
go back to reference Aaron JE, Makins NB, Sagreiya K (1987) The microanatomy of trabecular bone loss in normal aging men and women. Clin Orthop:260–271 Aaron JE, Makins NB, Sagreiya K (1987) The microanatomy of trabecular bone loss in normal aging men and women. Clin Orthop:260–271
Metadata
Title
Clinical and panoramic predictors of femur bone mineral density
Authors
Stuart C. White
Akira Taguchi
David Kao
Sam Wu
Susan K. Service
Douglas Yoon
Yoshikazu Suei
Takashi Nakamoto
Keiji Tanimoto
Publication date
01-03-2005
Publisher
Springer-Verlag
Published in
Osteoporosis International / Issue 3/2005
Print ISSN: 0937-941X
Electronic ISSN: 1433-2965
DOI
https://doi.org/10.1007/s00198-004-1692-4

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