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    <title>News &amp; Insights | OptimalPSI</title>
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    <description>The terms governing your use of the OptimalPSI website, including investigational device status and intellectual property notices.</description>
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    <pubDate>Thu, 30 Jul 2026 08:48:18 GMT</pubDate>
    <dc:date>2026-07-30T08:48:18Z</dc:date>
    <dc:language>en</dc:language>
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      <title>Ex-Vivo Biomechanical Study Published in NASSJ: ~2× Higher Subsidence Resistance2</title>
      <link>https://optimalpsi.com/news/ex-vivo-biomechanical-study-published-in-nassj</link>
      <description>&lt;div class="hs-featured-image-wrapper"&gt; 
 &lt;a href="https://optimalpsi.com/news/ex-vivo-biomechanical-study-published-in-nassj" title="" class="hs-featured-image-link"&gt; &lt;img src="https://optimalpsi.com/hubfs/IMG_3695.jpg" alt="Ex-Vivo Biomechanical Study Published in NASSJ: ~2× Higher Subsidence Resistance2" class="hs-featured-image" style="width:auto !important; max-width:50%; float:left; margin:0 15px 15px 0;"&gt; &lt;/a&gt; 
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&lt;p style="margin: 0px 0px 22px; font-size: 18px; line-height: 1.75; color: #03045e; font-weight: 500;"&gt;Basel, Switzerland — Our ex-vivo biomechanical study has been published in the North American Spine Society Journal (NASSJ), independently confirming what our computational models predicted: patient-specific optimized implants resist subsidence at roughly twice the failure force of off-the-shelf cages.&lt;/p&gt;</description>
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 &lt;a href="https://optimalpsi.com/news/ex-vivo-biomechanical-study-published-in-nassj" title="" class="hs-featured-image-link"&gt; &lt;img src="https://optimalpsi.com/hubfs/IMG_3695.jpg" alt="Ex-Vivo Biomechanical Study Published in NASSJ: ~2× Higher Subsidence Resistance2" class="hs-featured-image" style="width:auto !important; max-width:50%; float:left; margin:0 15px 15px 0;"&gt; &lt;/a&gt; 
&lt;/div&gt; 
&lt;p style="margin: 0px 0px 22px; font-size: 18px; line-height: 1.75; color: #03045e; font-weight: 500;"&gt;Basel, Switzerland — Our ex-vivo biomechanical study has been published in the North American Spine Society Journal (NASSJ), independently confirming what our computational models predicted: patient-specific optimized implants resist subsidence at roughly twice the failure force of off-the-shelf cages.&lt;/p&gt;  
&lt;img src="https://track-eu1.hubspot.com/__ptq.gif?a=146889205&amp;amp;k=14&amp;amp;r=https%3A%2F%2Foptimalpsi.com%2Fnews%2Fex-vivo-biomechanical-study-published-in-nassj&amp;amp;bu=https%253A%252F%252Foptimalpsi.com%252Fnews&amp;amp;bvt=rss" alt="" width="1" height="1" style="min-height:1px!important;width:1px!important;border-width:0!important;margin-top:0!important;margin-bottom:0!important;margin-right:0!important;margin-left:0!important;padding-top:0!important;padding-bottom:0!important;padding-right:0!important;padding-left:0!important; "&gt;</content:encoded>
      <category>Research</category>
      <category>Publications</category>
      <pubDate>Sun, 26 Jul 2026 10:57:48 GMT</pubDate>
      <guid>https://optimalpsi.com/news/ex-vivo-biomechanical-study-published-in-nassj</guid>
      <dc:date>2026-07-26T10:57:48Z</dc:date>
      <dc:creator>Dr. Thijs Smit</dc:creator>
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    <item>
      <title>Ex-Vivo Biomechanical Study Published in NASSJ: ~2× Higher Subsidence Resistance</title>
      <link>https://optimalpsi.com/news/ex-vivo-biomechanical-study-published</link>
      <description>&lt;div class="hs-featured-image-wrapper"&gt; 
 &lt;a href="https://optimalpsi.com/news/ex-vivo-biomechanical-study-published" title="" class="hs-featured-image-link"&gt; &lt;img src="https://optimalpsi.com/hubfs/IMG_3695.jpg" alt="Ex-Vivo Biomechanical Study Published in NASSJ: ~2× Higher Subsidence Resistance" class="hs-featured-image" style="width:auto !important; max-width:50%; float:left; margin:0 15px 15px 0;"&gt; &lt;/a&gt; 
&lt;/div&gt; 
&lt;p style="margin: 0px 0px 22px; font-size: 18px; line-height: 1.75; color: #03045e; font-weight: 500;"&gt;Basel, Switzerland — Our ex-vivo biomechanical study has been published in the North American Spine Society Journal (NASSJ), independently confirming what our computational models predicted: patient-specific optimized implants resist subsidence at roughly twice the failure force of off-the-shelf cages.&lt;/p&gt;</description>
      <content:encoded>&lt;div class="hs-featured-image-wrapper"&gt; 
 &lt;a href="https://optimalpsi.com/news/ex-vivo-biomechanical-study-published" title="" class="hs-featured-image-link"&gt; &lt;img src="https://optimalpsi.com/hubfs/IMG_3695.jpg" alt="Ex-Vivo Biomechanical Study Published in NASSJ: ~2× Higher Subsidence Resistance" class="hs-featured-image" style="width:auto !important; max-width:50%; float:left; margin:0 15px 15px 0;"&gt; &lt;/a&gt; 
&lt;/div&gt; 
&lt;p style="margin: 0px 0px 22px; font-size: 18px; line-height: 1.75; color: #03045e; font-weight: 500;"&gt;Basel, Switzerland — Our ex-vivo biomechanical study has been published in the North American Spine Society Journal (NASSJ), independently confirming what our computational models predicted: patient-specific optimized implants resist subsidence at roughly twice the failure force of off-the-shelf cages.&lt;/p&gt;  
&lt;img src="https://track-eu1.hubspot.com/__ptq.gif?a=146889205&amp;amp;k=14&amp;amp;r=https%3A%2F%2Foptimalpsi.com%2Fnews%2Fex-vivo-biomechanical-study-published&amp;amp;bu=https%253A%252F%252Foptimalpsi.com%252Fnews&amp;amp;bvt=rss" alt="" width="1" height="1" style="min-height:1px!important;width:1px!important;border-width:0!important;margin-top:0!important;margin-bottom:0!important;margin-right:0!important;margin-left:0!important;padding-top:0!important;padding-bottom:0!important;padding-right:0!important;padding-left:0!important; "&gt;</content:encoded>
      <category>Research</category>
      <category>Publications</category>
      <pubDate>Sun, 26 Jul 2026 10:57:12 GMT</pubDate>
      <guid>https://optimalpsi.com/news/ex-vivo-biomechanical-study-published</guid>
      <dc:date>2026-07-26T10:57:12Z</dc:date>
      <dc:creator>Dr. Thijs Smit</dc:creator>
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