Araştırma Makalesi

Biomechanical Wear Tests in a Novel Hip Joint Simulator

Cilt: 1 Sayı: 2 16 Aralık 2019
  • R. Buğra Hüsemoğlu *
  • Orkun Halaç
  • Onur Hapa
  • Fatih Ertem
  • Ahmet Karakaşlı
  • Hasan Havıtçıoğlu
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Biomechanical Wear Tests in a Novel Hip Joint Simulator

Öz

The work in this paper involves the study of the biomechanical wear tests and joint kinematics analysis. Such analyses are very useful to investigate the mobility and natural functionality as well as the motion variation due to replacement implant. The simulator can be used in implant design. The simulator is developed to provide rotation of mobility with the intention of using it for different joints loaded under body activities. Modeling the human joint as rotation is a challenge because of the complexity of linking the motion drivers of the simulator with the constrained joint motion of the joint to be simulated which inevitably involves constraining of simulator motion. In this study, a joint simulation platform has been developed. Microcontroller, relay module, DC motor and power regulators are used in building the platform. The motion of the bottom plate of a joint simulation platform is controlled by a rotational axes control system connected to one actuator independently. The actuator is used to obtain the required load and displacement. This work is performed to study the mobility, wear and load analysis of the artificial hip joint. The presented platform can be used for joint simulation, implant testing, joint kinematics, laxity analysis, load transmission. The proposed simulator has been tested for validation of the human hip implant insert. The worn surfaces were observed by scanning electron microscopy (SEM). It is shown that the wear rates obtained in this work are closer to clinical studies than to similar hip joints simulator studies.

Anahtar Kelimeler

Kaynakça

  1. 1. D. Dowson, M. M. El-Hady Diab, B. J. Gillis, and J. R. Atkinson, “INFLUENCE OF COUNTERFACE TOPOGRAPHY ON THE WEAR OF ULTRA HIGH MOLECULAR WEIGHT POLYETHYLENE UNDER WET OR DRY CONDITIONS.,” in ACS Symposium Series, 1985, pp. 171–187.
  2. 2. H. McKellop, F. W. Shen, W. DiMaio, and J. G. Lancaster, “Wear of gamma-crosslinked polyethylene acetabular cups against roughened femoral balls.,” Clin. Orthop. Relat. Res., no. 369, pp. 73–82, Dec. 1999.
  3. 3. A. Wang, V. K. Polineni, C. Stark, and J. H. Dumbleton, “Effect of femoral head surface roughness on the wear of ultrahigh molecular weight polyethylene acetabular cups,” J. Arthroplasty, vol. 13, no. 6, pp. 615–620, 1998.
  4. 4. R. M. Hall, P. Siney, A. Unsworth, and B. M. Wroblewski, “The effect of surface topography of retrieved femoral heads on the wear of UHMWPE sockets,” Med. Eng. Phys., vol. 19, no. 8, pp. 711–719, Oct. 1997.
  5. 5. R. M. Hall and A. Unsworth, “Wear in retrieved Charnley acetabular sockets,” Proc. Inst. Mech. Eng. Part H J. Eng. Med., vol. 210, no. 3, pp. 197–207, 1996.
  6. 6. L. C. Mejia and T. J. Brierley, “A hip wear simulator for the evaluation of biomaterials in hip arthroplasty components,” Biomed. Mater. Eng., 1994.
  7. 7. I. C. Clarke, V. Good, L. Anissian, and A. Gustafson, “Charnley wear model for validation of hip simulatorsball diameter versus polytetrafluoroethylene and polyethylene wear,” Proc. Inst. Mech. Eng. Part H J. Eng. Med., 1997.
  8. 8. H. A. C. AFIFI, K. F., JACOB, “Verschleißmessungen bei Hüft- Totalendoprothesen mit Polyethylenpfanne (RCH-100) und hartverchromten Protasul-10 Kopf.,” Orthop., vol. 119, pp. 157–162, 1981.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Cerrahi

Bölüm

Araştırma Makalesi

Yazarlar

R. Buğra Hüsemoğlu * Bu kişi benim
0000-0003-1979-160X
Türkiye

Ahmet Karakaşlı Bu kişi benim
0000-0002-5887-3678
Türkiye

Hasan Havıtçıoğlu Bu kişi benim
0000-0001-8169-3539
Türkiye

Yayımlanma Tarihi

16 Aralık 2019

Gönderilme Tarihi

13 Şubat 2020

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2019 Cilt: 1 Sayı: 2

Kaynak Göster

APA
Hüsemoğlu, R. B., Halaç, O., Hapa, O., Ertem, F., Karakaşlı, A., & Havıtçıoğlu, H. (2019). Biomechanical Wear Tests in a Novel Hip Joint Simulator. Journal of Medical Innovation and Technology, 1(2), 57-62. https://izlik.org/JA97EJ44LW
AMA
1.Hüsemoğlu RB, Halaç O, Hapa O, Ertem F, Karakaşlı A, Havıtçıoğlu H. Biomechanical Wear Tests in a Novel Hip Joint Simulator. Journal of Medical Innovation and Technology. 2019;1(2):57-62. https://izlik.org/JA97EJ44LW
Chicago
Hüsemoğlu, R. Buğra, Orkun Halaç, Onur Hapa, Fatih Ertem, Ahmet Karakaşlı, ve Hasan Havıtçıoğlu. 2019. “Biomechanical Wear Tests in a Novel Hip Joint Simulator”. Journal of Medical Innovation and Technology 1 (2): 57-62. https://izlik.org/JA97EJ44LW.
EndNote
Hüsemoğlu RB, Halaç O, Hapa O, Ertem F, Karakaşlı A, Havıtçıoğlu H (01 Aralık 2019) Biomechanical Wear Tests in a Novel Hip Joint Simulator. Journal of Medical Innovation and Technology 1 2 57–62.
IEEE
[1]R. B. Hüsemoğlu, O. Halaç, O. Hapa, F. Ertem, A. Karakaşlı, ve H. Havıtçıoğlu, “Biomechanical Wear Tests in a Novel Hip Joint Simulator”, Journal of Medical Innovation and Technology, c. 1, sy 2, ss. 57–62, Ara. 2019, [çevrimiçi]. Erişim adresi: https://izlik.org/JA97EJ44LW
ISNAD
Hüsemoğlu, R. Buğra - Halaç, Orkun - Hapa, Onur - Ertem, Fatih - Karakaşlı, Ahmet - Havıtçıoğlu, Hasan. “Biomechanical Wear Tests in a Novel Hip Joint Simulator”. Journal of Medical Innovation and Technology 1/2 (01 Aralık 2019): 57-62. https://izlik.org/JA97EJ44LW.
JAMA
1.Hüsemoğlu RB, Halaç O, Hapa O, Ertem F, Karakaşlı A, Havıtçıoğlu H. Biomechanical Wear Tests in a Novel Hip Joint Simulator. Journal of Medical Innovation and Technology. 2019;1:57–62.
MLA
Hüsemoğlu, R. Buğra, vd. “Biomechanical Wear Tests in a Novel Hip Joint Simulator”. Journal of Medical Innovation and Technology, c. 1, sy 2, Aralık 2019, ss. 57-62, https://izlik.org/JA97EJ44LW.
Vancouver
1.R. Buğra Hüsemoğlu, Orkun Halaç, Onur Hapa, Fatih Ertem, Ahmet Karakaşlı, Hasan Havıtçıoğlu. Biomechanical Wear Tests in a Novel Hip Joint Simulator. Journal of Medical Innovation and Technology [Internet]. 01 Aralık 2019;1(2):57-62. Erişim adresi: https://izlik.org/JA97EJ44LW