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    <title>Dataset for &quot;Stripping torques in human bone can be reliably predicted prior to screw insertion with optimum tightness being found between 70% and 80% of the maximum&quot;</title>
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      <item>GS0070</item>
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    <keywords>Screw fixation, torque, stripping, optimum tightness, non-locking screw</keywords>
    <abstract>Despite being the most commonly used orthopaedic implant, screws are frequently inserted poorly. This data is for the study where screw, bone and screw hole characteristics, were used to predict the maximum torque for a screw hole prior to insertion. Using this, optimum tightness as a percentage of the maximum torque is investigated as functions of compression and pullout forces in human bone. This data set provides the raw data for these investigations. The methodology is described in detail in the related manuscript, &quot;Stripping torques in human bone can be reliably predicted prior to screw insertion with optimum tightness being found between 70% and 80% of the maximum&quot;.</abstract>
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        <project_name>Fellowship for James Fletcher - Optimal surgical techniques to reduce screw failure in fragility fractures</project_name>
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    <collection_method>This study involved biomechanics testing using human cadaveric bone. The methodology is described in detail in the related manuscript.</collection_method>
    <techinfo>Statistical analysis was performed using IBM SPSS Statistics for Windows, version 20 (IBM SPSS Corp., Armonk, N.Y., USA).</techinfo>
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