Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater
An ultrasonic-assisted bone instrument can be used for the dissection of bone in spinal surgery. During surgery, the tip of such a bone instrument can touch spinal dura mater. Especially during critical re-operations, high forces can be unintentionally applied on spinal dura mater. To prevent dural...
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2018-09-01
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doaj-87309574b2b94c13bccda18c86d8c43b2020-11-25T00:52:57ZengDe GruyterCurrent Directions in Biomedical Engineering2364-55042018-09-014161161410.1515/cdbme-2018-0147cdbme-2018-0147Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura materFoelkel Marie C.0Herzog Vitali1Meier Markus2Morlock Michael M.3Institute of Biomechanics, Hamburg University of Technology,Hamburg, GermanySöring GmbH, Justus-von-Liebig- Ring 2,Quickborn, GermanySöring GmbH, Justus-von-Liebig- Ring 2,Quickborn, GermanyInstitute of Biomechanics, Hamburg University of Technology, Denickestraße 15,Hamburg, GermanyAn ultrasonic-assisted bone instrument can be used for the dissection of bone in spinal surgery. During surgery, the tip of such a bone instrument can touch spinal dura mater. Especially during critical re-operations, high forces can be unintentionally applied on spinal dura mater. To prevent dural tears, the influence of application parameters on the tear force shall be analyzed. Collagen foil is used as a substitute material for spinal dura mater because of its similar mechanical properties and structure. Sponge cloth is placed below collagen foil to imitate cerebrospinal fluid and nerve tissue. A 3-axis CNC-machine is used to automate the movement of the bone instrument. In a full factorial experiment the influence of amplitude, shape of movement and velocity of movement on the tear force is analyzed. Amplitude has the strongest effect because of the increase in input energy. Velocity also has a significant influence, probably because of the strain rate increasing with velocity. Thus, a surgeon should mainly reduce the amplitude and furthermore the velocity of movement to generate higher safety in critical areas.http://www.degruyter.com/view/j/cdbme.2018.4.issue-1/cdbme-2018-0147/cdbme-2018-0147.xml?format=INTultrasonic surgerybone instrumentspinal dura materdural tear |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Foelkel Marie C. Herzog Vitali Meier Markus Morlock Michael M. |
spellingShingle |
Foelkel Marie C. Herzog Vitali Meier Markus Morlock Michael M. Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater Current Directions in Biomedical Engineering ultrasonic surgery bone instrument spinal dura mater dural tear |
author_facet |
Foelkel Marie C. Herzog Vitali Meier Markus Morlock Michael M. |
author_sort |
Foelkel Marie C. |
title |
Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater |
title_short |
Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater |
title_full |
Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater |
title_fullStr |
Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater |
title_full_unstemmed |
Influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater |
title_sort |
influence of application parameters of ultrasonic-assisted bone instruments on the tear force of a substitute material for spinal dura mater |
publisher |
De Gruyter |
series |
Current Directions in Biomedical Engineering |
issn |
2364-5504 |
publishDate |
2018-09-01 |
description |
An ultrasonic-assisted bone instrument can be used for the dissection of bone in spinal surgery. During surgery, the tip of such a bone instrument can touch spinal dura mater. Especially during critical re-operations, high forces can be unintentionally applied on spinal dura mater. To prevent dural tears, the influence of application parameters on the tear force shall be analyzed. Collagen foil is used as a substitute material for spinal dura mater because of its similar mechanical properties and structure. Sponge cloth is placed below collagen foil to imitate cerebrospinal fluid and nerve tissue. A 3-axis CNC-machine is used to automate the movement of the bone instrument. In a full factorial experiment the influence of amplitude, shape of movement and velocity of movement on the tear force is analyzed. Amplitude has the strongest effect because of the increase in input energy. Velocity also has a significant influence, probably because of the strain rate increasing with velocity. Thus, a surgeon should mainly reduce the amplitude and furthermore the velocity of movement to generate higher safety in critical areas. |
topic |
ultrasonic surgery bone instrument spinal dura mater dural tear |
url |
http://www.degruyter.com/view/j/cdbme.2018.4.issue-1/cdbme-2018-0147/cdbme-2018-0147.xml?format=INT |
work_keys_str_mv |
AT foelkelmariec influenceofapplicationparametersofultrasonicassistedboneinstrumentsonthetearforceofasubstitutematerialforspinalduramater AT herzogvitali influenceofapplicationparametersofultrasonicassistedboneinstrumentsonthetearforceofasubstitutematerialforspinalduramater AT meiermarkus influenceofapplicationparametersofultrasonicassistedboneinstrumentsonthetearforceofasubstitutematerialforspinalduramater AT morlockmichaelm influenceofapplicationparametersofultrasonicassistedboneinstrumentsonthetearforceofasubstitutematerialforspinalduramater |
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