<?xml version="1.0" encoding="utf-8"?><rss version="2.0"><channel><title>Latest technologies from The Cooper Health System</title><link>http://cooper.technologypublisher.com</link><description>Be the first to know about the latest inventions and technologies available from The Cooper Health System</description><language>en-US</language><pubDate>Tue, 14 Jul 2026 18:51:21 GMT</pubDate><lastBuildDate>Fri, 10 Jul 2026 15:24:19 GMT</lastBuildDate><docs>http://blogs.law.harvard.edu/tech/rss</docs><webMaster>rhodes-artrena@cooperhealth.edu</webMaster><copyright>Copyright 2026, The Cooper Health System</copyright><item><title>Traumatic Brain Injury Prognostication</title><caseId>26-0007</caseId><link>http://cooper.technologypublisher.com/technology/62105</link><description><![CDATA[


Inventor:
Tanya Egodage, MD &ndash; Associate Professor of Surgery, Associate Program Director, Surgical Critical Care Fellowship, Trauma &amp; Surgical Critical Care&nbsp;

Overview

A software-based clinical decision support platform that integrates clinical, imaging, and biomarker data to generate dynamic, real-time prognostic insights for patients with traumatic brain injury (TBI). The platform continuously updates outcome predictions as new patient data becomes available, supporting clinical decision-making across the continuum of care.&nbsp;

Clinical Need

Accurate prognostication fo...]]></description><pubDate>Fri, 10 Jul 2026 15:24:19 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62105</guid></item><item><title>Treatment of Heme-Mediated Inflammation</title><caseId>25-0010</caseId><link>http://cooper.technologypublisher.com/technology/62104</link><description><![CDATA[


Inventor:
Khalid Hanafy, MD, PhD &ndash; Professor of Neurology, Director, Center for Neuroinflammation, Director of Research, Cooper Neurologic Institute&nbsp;

Overview

A novel therapeutic approach for treating post-hemorrhagic inflammation through selective modulation of innate immune signaling pathways. The technology targets the TLR4-Lyn signaling axis to reduce harmful inflammatory responses while preserving beneficial immune function, creating a potential disease-modifying treatment for hemorrhage-associated neuroinflammation.

Clinical Need

Hemorrhagic conditions, including subara...]]></description><pubDate>Fri, 10 Jul 2026 15:20:48 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62104</guid></item><item><title><![CDATA[Handheld Vacuum Biopsy & Cryotherapy Device for Minimally Invasive Ablation of Breast Lesions]]></title><caseId>25-0006</caseId><link>http://cooper.technologypublisher.com/technology/62098</link><description><![CDATA[


Adrienne P. Rosenthal, MD &ndash; Cooper University Health Care


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Overview


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A handheld, minimally invasive device that combines vacuum-assisted biopsy and cryotherapy in a single procedure for the diagnosis and treatment of suspicious or malignant breast lesions. The system enables tissue sampling and loc...]]></description><pubDate>Fri, 10 Jul 2026 11:42:50 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62098</guid></item><item><title>Methods and Apparatus for Locating Arteries and Veins Using Light</title><caseId>24-0005</caseId><link>http://cooper.technologypublisher.com/technology/62096</link><description><![CDATA[


Inventors:
Ajith Thomas, MD &ndash; Professor, Neurological Surgery, Cooper Medical School of Rowan University
Sai Batchu, MD&nbsp;

Overview

A non-invasive vessel identification system that uses arrays of light-emitting diodes and photodetectors to distinguish arteries from veins based on oxygen saturation measurements. The technology enables real-time vessel localization and tracking in both percutaneous and surgical settings.

Clinical Need

Accurate vascular identification is essential during routine venous access, emergency procedures, critical care interventions, and surgery. Difficu...]]></description><pubDate>Fri, 10 Jul 2026 10:55:39 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62096</guid></item><item><title>Moldable Magnet System to Treat Auricular Hematoma</title><caseId>24-0004</caseId><link>http://cooper.technologypublisher.com/technology/62095</link><description><![CDATA[


Inventor:
Donald Solomon, MD &ndash; Cooper Medical School of Rowan University&nbsp;

Overview


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A moldable magnetic compression device designed for treatment of auricular hematoma (&quot;cauliflower ear&quot;) following hematoma drainage. The system combines dual magnetic compression with a heat-moldable EVA plastic overlay that conforms to the patient&#39;s ear anatomy, helping restore the ear&#39;s natural shape while preventing hematoma recurre...]]></description><pubDate>Fri, 10 Jul 2026 10:46:32 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62095</guid></item><item><title>Upstream Access Bi-Directional Sheath</title><caseId>24-0003</caseId><link>http://cooper.technologypublisher.com/technology/62094</link><description><![CDATA[


Inventors:
Jeffrey P. Carpenter, MD &ndash; Professor of Surgery, Cooper University Health Care&nbsp;

Overview

A novel vascular access system designed to provide both antegrade and retrograde vessel access from a single insertion site using a balloon-anchored sheath and steerable U-turn catheter.

Clinical Need

Peripheral artery disease affects more than 12 million Americans and frequently requires complex vascular interventions. Existing unidirectional access systems can be limited by anatomy, may require multiple access sites, and often increase procedural complexity, costs, and compli...]]></description><pubDate>Fri, 10 Jul 2026 10:29:04 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62094</guid></item><item><title>Point-of-care test diagnostic for irritable bowel syndrome (IBS)</title><caseId>23-0012</caseId><link>http://cooper.technologypublisher.com/technology/62093</link><description><![CDATA[


Inventors:
Sangita Phadtare, PhD &ndash; Professor of Biomedical Sciences, Rowan University
Lark J. Perez, PhD &ndash; Professor and Chair, Chemistry &amp; Biochemistry, Rowan University
Joshua DeSipio, MD &ndash; Gastroenterologist, Cooper University Health Care&nbsp;

Overview

A biosensor-array-based diagnostic assay designed for point-of-care detection of irritable bowel syndrome (IBS) using disease-specific metabolites found in stool samples.&nbsp;

Clinical Need

IBS affects approximately 10&ndash;15% of the global population and remains difficult to diagnose due to its complex and mu...]]></description><pubDate>Fri, 10 Jul 2026 10:20:31 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62093</guid></item><item><title>Point-of-care test diagnostic markers for Helicobacter pylori infection</title><caseId>23-0009</caseId><link>http://cooper.technologypublisher.com/technology/62092</link><description><![CDATA[
Inventors:
Sangita Phadtare, PhD &ndash; Professor, Biomedical Sciences, Rowan University
Lark J. Perez, PhD &ndash; Professor and Chair, Chemistry &amp; Biochemistry, Rowan University
Joshua DeSipio, MD &ndash; Gastroenterologist, Cooper University Health Care&nbsp;

Overview

A point-of-care diagnostic platform that detects Helicobacter pylori infection using biomarkers associated with alterations in fecal fatty acid metabolism. The technology provides a non-invasive approach for diagnosis and may also inform treatment decisions by predicting antibiotic resistance.&nbsp;

Clinical Need

H. ...]]></description><pubDate>Fri, 10 Jul 2026 10:09:21 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62092</guid></item><item><title>Articulating Biopsy Forceps</title><caseId>23-0006</caseId><link>http://cooper.technologypublisher.com/technology/62090</link><description><![CDATA[


Inventor:
Samuel Giordano, MD &ndash; Gastroenterologist, Cooper Digestive Health Institute, Cooper University Health Care&nbsp;

Overview

An articulating biopsy forceps system incorporating a 360-degree swivel mechanism and flexible hinge to improve tissue access, maneuverability, and sampling accuracy during endoscopic procedures.&nbsp;

Clinical Need

Biopsy forceps are widely used during endoscopic and colonoscopic procedures to obtain tissue samples for diagnosis. Conventional forceps often struggle to access lesions located in anatomically challenging locations, resulting in inadequa...]]></description><pubDate>Fri, 10 Jul 2026 10:02:33 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62090</guid></item><item><title>Forward-Facing Snare Polypectomy Device</title><caseId>23-0005</caseId><link>http://cooper.technologypublisher.com/technology/62088</link><description><![CDATA[


Inventor:
Samuel Giordano, MD &ndash; Gastroenterologist, Digestive Health Institute, Cooper University Health Care&nbsp;

Overview

A novel endoscopic snare device designed to improve the capture, resection, and retrieval of polyps, tissue, stones, and foreign bodies. The system utilizes a forward-facing braided wire loop that expands perpendicular to the catheter, improving visualization and access to difficult lesions.&nbsp;

Clinical Need

Colorectal cancer remains one of the leading causes of cancer-related mortality in the United States. Approximately 14 million polypectomies are perf...]]></description><pubDate>Fri, 10 Jul 2026 09:50:56 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62088</guid></item><item><title>HydroPep Therapeutics – Injectable Biomaterials for Localized Tissue Regeneration</title><caseId>22-0012</caseId><link>http://cooper.technologypublisher.com/technology/62086</link><description><![CDATA[


Lead Program: HydroBone&trade; &ndash; Injectable osteogenic hydrogel for bone regeneration and fracture healing

Inventors:
Sebasti&aacute;n L. Vega, PhD &ndash; Assistant Professor, Biomedical Engineering, Rowan University; CEO
Tae Won B. Kim, MD &ndash; Assistant Professor, Orthopedic Surgery, Cooper University Health Care; CTO
Matthias Recktenwald, PhD &ndash; Rowan University; CSO&nbsp;

Overview

HydroPep Therapeutics is developing injectable biomaterials that deliver tissue-specific therapeutic peptides directly to sites of injury or tissue loss. Its lead program, HydroBone&trade;, i...]]></description><pubDate>Fri, 10 Jul 2026 09:31:17 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62086</guid></item><item><title>Pleural Space Evacuator/Body Cavity Evacuator</title><caseId>17-0007</caseId><link>http://cooper.technologypublisher.com/technology/62084</link><description><![CDATA[
Inventor

David D. Shersher MD, Surgery, MD Anderson Cancer Center at Cooper &nbsp;

Wissam Abouzgheib MD, Pulmonary Medicine, MD Anderson Cancer Center at Cooper 

Overview

The Body Cavity Evacuator (BCE) is a minimally invasive device designed to efficiently perfuse and remove highly viscous fluids from body cavities, particularly the pleural space, through a single access point. The system combines simultaneous irrigation and drainage capabilities to improve management of difficult-to-treat fluid collections such as pleural empyema.

Clinical Need

Pleural empyema is the accumulation of i...]]></description><pubDate>Fri, 10 Jul 2026 09:14:16 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62084</guid></item><item><title>Non-invasive System and Method for Dectecting and Accurately Quantifying Subclincal and Clinical Systolic and Diastolic Heart Failure</title><caseId>22-0002</caseId><link>http://cooper.technologypublisher.com/technology/62083</link><description><![CDATA[


Overview

A non-invasive wearable monitoring platform designed to continuously assess cardiac function through simultaneous electrocardiography (ECG) and seismocardiography (SCG). The system enables real-time evaluation of myocardial contraction and relaxation characteristics, providing an early warning system for congestive heart failure (CHF) and other cardiac conditions.&nbsp;

Clinical Need

Cardiovascular disease remains the leading cause of death globally and in the United States. Congestive heart failure contributes substantially to healthcare costs, with expenditures driven largely ...]]></description><pubDate>Fri, 10 Jul 2026 08:55:19 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62083</guid></item><item><title>Thoracoabdominal Hybrid Graft</title><caseId>22-0007</caseId><link>http://cooper.technologypublisher.com/technology/62077</link><description><![CDATA[Overview


A surgical device designed to expedite repair of thoracoabdominal aortic aneurysms (Type II or greater), enabling distal aortic perfusion without the need for cardiopulmonary bypass.


Clinical Need
Thoracoabdominal aortic aneurysms (TAAAs) involving visceral arteries are challenging&nbsp;due to high morbidity and mortality risks in open surgical repairs, especially for high-risk patients. Existing solutions (fenestrated or branched) require complex planning and face anatomical limitations, increasing risk of endoleaks and bleeding. &nbsp;Open surgery risks visceral ischemia and&nbs...]]></description><pubDate>Thu, 09 Jul 2026 10:02:57 GMT</pubDate><author>rhodes-artrena@cooperhealth.edu</author><guid>http://cooper.technologypublisher.com/technology/62077</guid></item></channel></rss>