Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending

Background: Stiffness of the plate depends on the materials, design and dimensions. Preclinical mechanical testing comparing the new design implant with standard implants that have been recognized and widely used. Medial surface of the tibial shaft is widening subcutaneous, so the designing of lower...

Full description

Bibliographic Details
Main Authors: , ARIF WIBOWO, , Dr Rahadyan Magetsari, dr, SpOT(K)., PhD., FICS
Format: Thesis
Published: [Yogyakarta] : Universitas Gadjah Mada 2013
Subjects:
ETD
_version_ 1826046186952327168
author , ARIF WIBOWO
, Dr Rahadyan Magetsari, dr, SpOT(K)., PhD., FICS
author_facet , ARIF WIBOWO
, Dr Rahadyan Magetsari, dr, SpOT(K)., PhD., FICS
author_sort , ARIF WIBOWO
collection UGM
description Background: Stiffness of the plate depends on the materials, design and dimensions. Preclinical mechanical testing comparing the new design implant with standard implants that have been recognized and widely used. Medial surface of the tibial shaft is widening subcutaneous, so the designing of lower profile plate can reduce the protrusion of the plates. The addition of wide lower profile tibial shaft plate would generate strength. Research Methods: This study is an experimental study with the stage of determining the width of the plates and bending test. The shortest width of the medial surface of the Indonesian right tibial X-ray (n = 60) were measured. Both lower profile tibial shaft plates and AO Synthes plates were performed finite element analysis. The thickness of the lower profile tibial shaft plates were detemined using moment of inertia. The lower profile tibial shaft plates and AO Synthes plates were compared by conducting bending tests using 4 point bending configuration design that is based on the standard ISO 9585 and ASTM F382-99 Results and Discussion: The difference between the plate width of 12 mm and the average (23.04 mm) shortest width of the right medial tibial shaft is 11.04 mm. From the results obtained from the bending tes, stress value of the lower profile tibial shaft plates is 100.94 N/mm^2 (80%) for 14 mm width plates compared to the AO Synthes plates. The Young`s modulus of the lower profile tibial shaft plates is 26428.2 N/mm^2 (90%) for 14 mm width plates compared to the AO Synthes plates. The Young`s modulus indicates the degree of stiffness of the plates. Conclusion: The highest of stifness of the lower profile tibial shaft plates can be achieved by the width to 14 mm and the thickness to 3.5 mm. The stiffness of lower profile tibial shaft plates is closest to 90% of the AO Synthes plates stiffness.
first_indexed 2024-03-13T22:49:13Z
format Thesis
id oai:generic.eprints.org:119296
institution Universiti Gadjah Mada
last_indexed 2024-03-13T22:49:13Z
publishDate 2013
publisher [Yogyakarta] : Universitas Gadjah Mada
record_format dspace
spelling oai:generic.eprints.org:1192962016-03-04T08:24:06Z https://repository.ugm.ac.id/119296/ Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending , ARIF WIBOWO , Dr Rahadyan Magetsari, dr, SpOT(K)., PhD., FICS ETD Background: Stiffness of the plate depends on the materials, design and dimensions. Preclinical mechanical testing comparing the new design implant with standard implants that have been recognized and widely used. Medial surface of the tibial shaft is widening subcutaneous, so the designing of lower profile plate can reduce the protrusion of the plates. The addition of wide lower profile tibial shaft plate would generate strength. Research Methods: This study is an experimental study with the stage of determining the width of the plates and bending test. The shortest width of the medial surface of the Indonesian right tibial X-ray (n = 60) were measured. Both lower profile tibial shaft plates and AO Synthes plates were performed finite element analysis. The thickness of the lower profile tibial shaft plates were detemined using moment of inertia. The lower profile tibial shaft plates and AO Synthes plates were compared by conducting bending tests using 4 point bending configuration design that is based on the standard ISO 9585 and ASTM F382-99 Results and Discussion: The difference between the plate width of 12 mm and the average (23.04 mm) shortest width of the right medial tibial shaft is 11.04 mm. From the results obtained from the bending tes, stress value of the lower profile tibial shaft plates is 100.94 N/mm^2 (80%) for 14 mm width plates compared to the AO Synthes plates. The Young`s modulus of the lower profile tibial shaft plates is 26428.2 N/mm^2 (90%) for 14 mm width plates compared to the AO Synthes plates. The Young`s modulus indicates the degree of stiffness of the plates. Conclusion: The highest of stifness of the lower profile tibial shaft plates can be achieved by the width to 14 mm and the thickness to 3.5 mm. The stiffness of lower profile tibial shaft plates is closest to 90% of the AO Synthes plates stiffness. [Yogyakarta] : Universitas Gadjah Mada 2013 Thesis NonPeerReviewed , ARIF WIBOWO and , Dr Rahadyan Magetsari, dr, SpOT(K)., PhD., FICS (2013) Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=59291
spellingShingle ETD
, ARIF WIBOWO
, Dr Rahadyan Magetsari, dr, SpOT(K)., PhD., FICS
Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending
title Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending
title_full Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending
title_fullStr Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending
title_full_unstemmed Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending
title_short Pengaruh Lebar Pelat Lower Profile Tibial Shaft Terhadap Kekuatan Bending
title_sort pengaruh lebar pelat lower profile tibial shaft terhadap kekuatan bending
topic ETD
work_keys_str_mv AT arifwibowo pengaruhlebarpelatlowerprofiletibialshaftterhadapkekuatanbending
AT drrahadyanmagetsaridrspotkphdfics pengaruhlebarpelatlowerprofiletibialshaftterhadapkekuatanbending