Literature DB >> 23505668

Incidence of subsequent hip fractures is significantly increased within the first month after distal radius fracture in patients older than 60 years.

Chia-Wen Chen, Teng-Le Huang, Li-Ting Su, Yu-Cheng Kuo, Sai-Chuen Wu, Chi-Yuan Li, Kuen-Bao Chen, Fung-Chang Sung.   

Abstract

BACKGROUND: Distal radius fracture is recognized as an osteoporosis-related fracture in aged population. If another osteoporosis-related fracture occurs in a short period, it represents a prolonged hospitalization and a considerable economic burden to the society.We evaluated the relationship between distal radius fracture and subsequent hip fracture within 1 year, especially in the critical time and age.
METHODS: We identified newly diagnosed distal radius fracture patients in 2000 to 2006 as an exposed cohort (N = 9,986). A comparison cohort (N = 81,227) was randomly selected from patients without distal radius fracture in the same year of exposed cohort. The subjects were followed up for 1 year since the recruited date.We compared the sociodemographic factors between two cohorts.Furthermore, the time interval following the previous distal radial fracture and the incidence of subsequent hip fracture was studied in detail.
RESULTS: The incidence of hip fracture within 1 year increased with age in both cohorts. The risk was 5.67 times (84.6 vs. 14.9 per 10,000 person-years) greater in the distal radial fracture cohort than in the comparison cohort. The multivariate Cox proportional hazard regression analyses showed the hazard ratios of hip fracture in relation to distal radial fracture was 3.45 (95% confidence interval = 2.59-4.61). The highest incidence was within the first month after distal radial fracture, 17-fold higher than the comparison cohort (17.9 vs. 1.05 per 10,000). Among comorbidities, age 9 60 years was also a significant factor associated with hip fracture (hazard ratio = 8.67, 95% confidence interval = 4.51-16.7).
CONCLUSIONS: Patients with distal radius fracture and age 960 years will significantly increase the incidence of subsequent hip fracture, especially within the first month. LEVEL OF EVIDENCE: Prognostic/epidemiologic study, level II.

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Year:  2013        PMID: 23505668     DOI: 10.1097/ta.0b013e31824bb325

Source DB:  PubMed          Journal:  J Trauma Acute Care Surg        ISSN: 2163-0755            Impact factor:   3.313


  15 in total

1.  Wrist Fracture and Risk of Subsequent Fracture: Findings from the Women's Health Initiative Study.

Authors:  Carolyn J Crandall; Kathleen M Hovey; Jane A Cauley; Christopher A Andrews; Jeffrey R Curtis; Jean Wactawski-Wende; Nicole C Wright; Wenjun Li; Meryl S LeBoff
Journal:  J Bone Miner Res       Date:  2015-06-12       Impact factor: 6.741

Review 2.  Long-term clinical and socio-economic outcomes following wrist fracture: a systematic review and meta-analysis.

Authors:  O O Babatunde; M Bucknall; C Burton; J J Forsyth; N Corp; S Gwilym; Z Paskins; D A van der Windt
Journal:  Osteoporos Int       Date:  2021-11-11       Impact factor: 4.507

3.  Patients undergoing surgical treatment for low-energy distal radius fractures are more likely to receive a referral and participate in a fracture liaison service program.

Authors:  Natalie Vaughn; Matthew Akelman; Natalie Marenghi; Anne F Lake; Benjamin R Graves
Journal:  Arch Osteoporos       Date:  2022-07-19       Impact factor: 2.879

Review 4.  Considerations in the Treatment of Osteoporotic Distal Radius Fractures in Elderly Patients.

Authors:  Peter J Ostergaard; Matthew J Hall; Tamara D Rozental
Journal:  Curr Rev Musculoskelet Med       Date:  2019-03

Review 5.  Assessing Bone Mineral Density Following Acute Hip Fractures: The Role of Computed Tomography Attenuation.

Authors:  Osa Emohare; Molly Wiggin; Pouya Hemmati; Julie Switzer
Journal:  Geriatr Orthop Surg Rehabil       Date:  2015-03

Review 6.  Clinical Management of Osteoporotic Fractures.

Authors:  Adam Z Khan; Richard D Rames; Anna N Miller
Journal:  Curr Osteoporos Rep       Date:  2018-06       Impact factor: 5.096

Review 7.  Importance of Recent Fracture as Predictor of Imminent Fracture Risk.

Authors:  Amanda D Schnell; Jeffrey R Curtis; Kenneth G Saag
Journal:  Curr Osteoporos Rep       Date:  2018-12       Impact factor: 5.096

8.  Economic Analysis of Bisphosphonate Use after Distal Radius Fracture for Prevention of Hip Fracture.

Authors:  Suneel B Bhat; Asif M Ilyas
Journal:  Arch Bone Jt Surg       Date:  2017-11

9.  Association between BMI variability and risk of fracture among Korean men and women: a population based study.

Authors:  Yoosun Cho; Seulggie Choi; Young Ho Yun; Belong Cho; Ji-Yeob Choi; Sang Min Park
Journal:  Arch Osteoporos       Date:  2021-04-10       Impact factor: 2.617

Review 10.  The clinical epidemiology of male osteoporosis: a review of the recent literature.

Authors:  Tina Willson; Scott D Nelson; Jonathan Newbold; Richard E Nelson; Joanne LaFleur
Journal:  Clin Epidemiol       Date:  2015-01-09       Impact factor: 4.790

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