Inferior Outcome after Unstable Trochanteric Fracture Patterns Compared to Stable Fractures in the Elderly
Abstract
:1. Introduction
2. Materials and Methods
3. Results
3.1. Patient Characteristics
3.2. Surgical Treatment
3.3. Mobility and Activities of Daily Living
3.4. Complications
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Turesson, E.; Ivarsson, K.; Thorngren, K.G.; Hommel, A. Hip fractures–Treatment and functional outcome. The development over 25 years. Injury 2018, 49, 2209–2215. [Google Scholar] [CrossRef] [PubMed]
- Downey, C.; Kelly, M.; Quinlan, J.F. Changing trends in the mortality rate at 1-year post hip fracture—A systematic review. World J. Orthop. 2019, 10, 166–175. [Google Scholar] [CrossRef] [PubMed]
- Kanis, J.A.; McCloskey, E.V.; Johansson, H.; Wahl, D.A.; Cooper, C.; IOF Working Group on Epidemiology and Quality of Life. A systematic review of hip fracture incidence and probability of fracture worldwide. Osteoporos. Int. 2012, 23, 2239–2256. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Friedman, S.M.; Mendelson, D.A. Epidemiology of Fragility Fractures. Clin. Geriatr. Med. 2014, 30, 175–181. [Google Scholar] [CrossRef] [PubMed]
- Ariza-Vega, P.; Kristensen, M.T.; Martin-Martin, L.; Jiménez-Moleón, J.J. Predictors of Long-Term Mortality in Older People With Hip Fracture. Arch. Phys. Med. Rehab. 2015, 96, 1215–1221. [Google Scholar] [CrossRef]
- Koval, K.J.; Sala, D.A.; Kummer, F.J.; Zuckerman, J.D. Postoperative Weight-Bearing after a Fracture of the Femoral Neck or an Intertrochanteric Fracture. J. Bone Jt. Surgery Am. Vol. 1998, 80, 352–356. [Google Scholar] [CrossRef]
- Pfeufer, D.; Grabmann, C.; Mehaffey, S.; Keppler, A.M.; Böcker, W.; Kammerlander, C.; Neuerburg, C.; Alexander, K. Weight bearing in patients with femoral neck fractures compared to pertrochanteric fractures: A postoperative gait analysis. Injury 2019, 50, 1324–1328. [Google Scholar] [CrossRef]
- Meinberg, E.G.; Agel, J.; Roberts, C.S.; Karam, M.D.; Kellam, J.F. Fracture and Dislocation Classification Compendium—2018. J. Orthop. Trauma 2018, 32, S1–S10. [Google Scholar] [CrossRef]
- Müller, F.; Doblinger, M.; Kottmann, T.; Füchtmeier, B. PFNA and DHS for AO/OTA 31-A2 fractures: Radiographic measurements, morbidity and mortality. Eur. J. Trauma Emerg. Surg. 2020, 46, 947–953. [Google Scholar] [CrossRef]
- Hoskins, W.; Bingham, R.; Joseph, S.; Liew, D.; Love, D.; Bucknill, A.T.; Oppy, A.; Griffin, X. Subtrochanteric fracture: The effect of cerclage wire on fracture reduction and outcome. Injury 2015, 46, 1992–1995. [Google Scholar] [CrossRef]
- Ehrnthaller, C.; Olivier, A.C.; Gebhard, F.; Dürselen, L. The role of lesser trochanter fragment in unstable pertrochanteric A2 proximal femur fractures—Is refixation of the lesser trochanter worth the effort? Clin. Biomech. 2017, 42, 31–37. [Google Scholar] [CrossRef] [PubMed]
- Aprato, A.; Baido, R.L.; Crosio, A.; Matteotti, R.; Grosso, E.; Massè, A. Does lesser trochanter implication affect hip flexion strength in proximal femur fracture? Eur. J. Trauma Emerg. Surg. 2014, 41, 523–529. [Google Scholar] [CrossRef] [PubMed]
- Schenkel, M.; Kaniewska, M.; Bühler, T.; Anderson, S.; Eid, K. No difference in flexion power despite iliopsoas fatty degeneration in healed hip fractures with large lesser trochanter displacement. Eur. J. Orthop. Surg. Traumatol. 2018, 28, 1313–1319. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Parker, M.J.; Palmer, C.R. Prediction of Rehabilitation after Hip Fracture. Age Ageing 1995, 24, 96–98. [Google Scholar] [CrossRef] [PubMed]
- Voeten, S.C.; Nijmeijer, W.S.; Vermeer, M.; Schipper, I.B.; Hegeman, J.; De Klerk, G.; Stevens, C.; Snoek, J.; Luning, H.; Van Der Velde, D.; et al. Validation of the Fracture Mobility Score against the Parker Mobility Score in hip fracture patients. Injury 2020, 51, 395–399. [Google Scholar] [CrossRef] [Green Version]
- Mahoney, F.I.; Barthel, D.W. Functional Evaluation: The Barthel Index. Md. State Med. J. 1965, 14, 61–65. [Google Scholar]
- Mayoral, A.P.; Ibarz, E.; Gracia, L.; Mateo, J.; Herrera, A. The use of Barthel index for the assessment of the functional recovery after osteoporotic hip fracture: One year follow-up. PLoS ONE 2019, 14, e0212000. [Google Scholar] [CrossRef]
- Zhang, P.; He, J.; Fang, Y.; Chen, P.; Liang, Y.; Wang, J. Efficacy and safety of intravenous tranexamic acid administration in patients undergoing hip fracture surgery for hemostasis: A meta-analysis. Medicine 2017, 96, e6940. [Google Scholar] [CrossRef]
- Haentjens, P.; Autier, P.; Barette, M.; Venken, K.; Vanderschueren, D.; Boonen, S. Survival and functional outcome according to hip fracture type: A one-year prospective cohort study in elderly women with an intertrochanteric or femoral neck fracture. Bone 2007, 41, 958–964. [Google Scholar] [CrossRef]
- Peng, C.; Wang, X.W.; Li, S.G.; Liu, Z.; Sun, T.S.; Zhang, J.Z. Effect of hip fracture at different sites in elderly patients on prognosis. Zhongguo Gu Shang China J. Orthop. Traumatol. 2017, 30, 906–910. [Google Scholar]
- Babhulkar, S. Unstable trochanteric fractures: Issues and avoiding pitfalls. Injury 2017, 48, 803–818. [Google Scholar] [CrossRef] [PubMed]
- Knobe, M.; Gradl, G.; Ladenburger, A.; Tarkin, I.S.; Pape, H.-C. Unstable Intertrochanteric Femur Fractures: Is There a Consensus on Definition and Treatment in Germany? Clin. Orthop. Relat. Res. 2013, 471, 2831–2840. [Google Scholar] [CrossRef] [Green Version]
- Gheorghita, A.; Webster, F.; Thielke, S.; Sale, J.E.M. Long-term experiences of pain after a fragility fracture. Osteoporos. Int. 2018, 29, 1093–1104. [Google Scholar] [CrossRef] [PubMed]
- Lizano-Díez, X.; Keel, M.J.B.; Siebenrock, K.A.; Tey, M.; Bastian, J.D. Rehabilitation protocols in unstable trochanteric fractures treated with cephalomedullary nails in elderly: Current practices and outcome. Eur. J. Trauma Emerg. Surg. 2020, 46, 1267–1280. [Google Scholar] [CrossRef] [PubMed]
- Pfeufer, D.; Zeller, A.; Mehaffey, S.; Böcker, W.; Kammerlander, C.; Neuerburg, C. Weight-bearing restrictions reduce postoperative mobility in elderly hip fracture patients. Arch. Orthop. Trauma Surg. 2019, 139, 1253–1259. [Google Scholar] [CrossRef] [PubMed]
- Evans, E.M. The treatment of trochanteric fractures of the femur. J. Bone Jt. Surgery. Br. Vol. 1949, 31B, 190–203. [Google Scholar] [CrossRef]
Group I (A1.2/3) n = 37 | Group II (A2.2/3) n = 38 | Group III (A3.1-3) n = 17 | p-Value | |
---|---|---|---|---|
Age | 83 ± 6.40 | 85 ± 6.70 | 84 ± 7.80 | ns |
Gender | ns | |||
Female | 76% | 82% | 80% | |
Male | 24% | 18% | 20% | |
ASA | ns | |||
1 | 0% | 3% | 0% | |
2 | 43% | 56% | 38% | |
3 | 46% | 38% | 62% | |
4 | 11% | 3% | 0% | |
Charlson Comorbidity Index | 1.97 ± 2.30 | 1.51 ± 1.70 | 2.38 ± 1.90 | ns |
Prefracture Living | ns | |||
At home | 88% | 81% | 82% | |
Nursing home | 8% | 19% | 9% | |
Sheltered housing | 4% | 0% | 9% | |
Prefracture Nursing | ns | |||
None | 48% | 29% | 9% | |
Nursing | 52% | 71% | 82% | |
Meals on wheels | 0% | 0% | 9% | |
Time to surgery <24 h >24 h | 100% | 100% | 100% | ns |
Length of stay (days) | 15.30 ± 5.00 | 14.80 ± 5.70 | 13.40 ± 6.80 | ns |
One-year mortality (%) | 24% | 36% | 21% | ns |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Gleich, J.; Neuerburg, C.; Linhart, C.; Keppler, A.M.; Pfeufer, D.; Kammerlander, C.; Böcker, W.; Ehrnthaller, C. Inferior Outcome after Unstable Trochanteric Fracture Patterns Compared to Stable Fractures in the Elderly. J. Clin. Med. 2021, 10, 171. https://doi.org/10.3390/jcm10020171
Gleich J, Neuerburg C, Linhart C, Keppler AM, Pfeufer D, Kammerlander C, Böcker W, Ehrnthaller C. Inferior Outcome after Unstable Trochanteric Fracture Patterns Compared to Stable Fractures in the Elderly. Journal of Clinical Medicine. 2021; 10(2):171. https://doi.org/10.3390/jcm10020171
Chicago/Turabian StyleGleich, Johannes, Carl Neuerburg, Christoph Linhart, Alexander Martin Keppler, Daniel Pfeufer, Christian Kammerlander, Wolfgang Böcker, and Christian Ehrnthaller. 2021. "Inferior Outcome after Unstable Trochanteric Fracture Patterns Compared to Stable Fractures in the Elderly" Journal of Clinical Medicine 10, no. 2: 171. https://doi.org/10.3390/jcm10020171
APA StyleGleich, J., Neuerburg, C., Linhart, C., Keppler, A. M., Pfeufer, D., Kammerlander, C., Böcker, W., & Ehrnthaller, C. (2021). Inferior Outcome after Unstable Trochanteric Fracture Patterns Compared to Stable Fractures in the Elderly. Journal of Clinical Medicine, 10(2), 171. https://doi.org/10.3390/jcm10020171