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Strain in the ACL during an in vitro...
~
Morton, Nicholas Aaron.
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Strain in the ACL during an in vitro simulated non-contact cutting maneuver.
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Strain in the ACL during an in vitro simulated non-contact cutting maneuver./
Author:
Morton, Nicholas Aaron.
Description:
58 p.
Notes:
Adviser: Lorin Maletsky.
Contained By:
Masters Abstracts International44-05.
Subject:
Biophysics, General. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1434305
ISBN:
9780542657320
Strain in the ACL during an in vitro simulated non-contact cutting maneuver.
Morton, Nicholas Aaron.
Strain in the ACL during an in vitro simulated non-contact cutting maneuver.
- 58 p.
Adviser: Lorin Maletsky.
Thesis (M.S.)--University of Kansas, 2006.
The primary objective of this study was to measure the strain in the ACL during a simulated side-step cutting maneuver. Six cadaver knees were loaded to ACL failure in the Kansas Knee Simulator, systematically increasing valgus, internal, or anterior loads with each subsequent trial. The loading profile for the baseline cutting maneuver was obtained from force plate data while strain in the ACL was measured using a DVRT. ACL strain during the baseline cutting maneuver elicited 9.3% ACL strain which increased with the application of greater forces. Strain in the ligament was most susceptible to increases in anterior force such that a 50 N increase in anterior force elevated ACL strain 0.48% over baseline loading strain. Combinational increase in valgus and internal torques by 50 Nm and 10 Nm, respectively, increased the strain in the ACL by 0.51% above baseline values.
ISBN: 9780542657320Subjects--Topical Terms:
1019105
Biophysics, General.
Strain in the ACL during an in vitro simulated non-contact cutting maneuver.
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Source: Masters Abstracts International, Volume: 44-05, page: 2434.
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Thesis (M.S.)--University of Kansas, 2006.
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The primary objective of this study was to measure the strain in the ACL during a simulated side-step cutting maneuver. Six cadaver knees were loaded to ACL failure in the Kansas Knee Simulator, systematically increasing valgus, internal, or anterior loads with each subsequent trial. The loading profile for the baseline cutting maneuver was obtained from force plate data while strain in the ACL was measured using a DVRT. ACL strain during the baseline cutting maneuver elicited 9.3% ACL strain which increased with the application of greater forces. Strain in the ligament was most susceptible to increases in anterior force such that a 50 N increase in anterior force elevated ACL strain 0.48% over baseline loading strain. Combinational increase in valgus and internal torques by 50 Nm and 10 Nm, respectively, increased the strain in the ACL by 0.51% above baseline values.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1434305
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