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Cybulski, Eric Schultz, Fred R. Seddiqui, Trice Medical Inc The market for tissue visualization…","opengraphPublishedTime":"2023-04-26T06:18:43+00:00","opengraphModifiedTime":"","opengraphTitle":"Invention for Tissue visualization, modification devices and methods - Inventiv.org","opengraphType":"article","opengraphImage":{"sourceUrl":"https://wp.inventiv.org/wp-content/uploads/2023/04/file-12403622480839123596.png"}},"date":"April 26, 2023","content":"<h2 class=\"abpost-category\" style=\"padding-left:50px;padding-top:15px\">Invented by Xiaolong OuYang, James S. Cybulski, Eric Schultz, Fred R. Seddiqui, Trice Medical Inc</h2>\n<div class=\"contact-us-holder\"></div>\n<div class=\"af-artical-patent\">\n                The market for tissue visualization and modification devices and methods is rapidly growing as the demand for minimally invasive surgeries and procedures increases. These devices and methods allow for better visualization and manipulation of tissues, leading to more precise and effective treatments.</p>\n<p>Tissue visualization devices include endoscopes, laparoscopes, and arthroscopes, which are used to view internal organs and tissues. These devices have become increasingly popular due to their ability to provide high-resolution images of tissues without the need for large incisions. This has led to shorter hospital stays, faster recovery times, and reduced healthcare costs.</p>\n<p>Tissue modification devices and methods include lasers, radiofrequency ablation, and cryotherapy, which are used to treat a variety of conditions such as cancer, chronic pain, and skin disorders. These devices and methods allow for targeted treatment of tissues, minimizing damage to surrounding healthy tissue. They also offer a less invasive alternative to traditional surgical procedures.</p>\n<p>The market for tissue visualization and modification devices and methods is expected to continue to grow as new technologies are developed and as the demand for minimally invasive procedures increases. The global market for endoscopy devices alone is projected to reach $44.6 billion by 2025, according to a report by Grand View Research.</p>\n<p>One factor driving the growth of this market is the increasing prevalence of chronic diseases such as cancer and cardiovascular disease. These conditions often require surgical intervention, and tissue visualization and modification devices and methods offer a less invasive alternative to traditional surgery.</p>\n<p>Another factor driving the growth of this market is the increasing demand for cosmetic procedures. Tissue modification devices such as lasers and radiofrequency ablation are commonly used in cosmetic procedures such as hair removal and skin resurfacing.</p>\n<p>However, the market for tissue visualization and modification devices and methods is not without its challenges. One challenge is the high cost of these devices and procedures, which can limit access for some patients. Another challenge is the need for specialized training and expertise to use these devices and methods effectively.</p>\n<p>Despite these challenges, the market for tissue visualization and modification devices and methods is poised for continued growth as new technologies are developed and as the demand for minimally invasive procedures increases. These devices and methods offer a less invasive alternative to traditional surgery, leading to shorter hospital stays, faster recovery times, and reduced healthcare costs.\n                </p></div>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-8089\" src=\"https://inventivs.net/wp-content/uploads/2023/04/file-12403622480839123596-1024x827.png\" alt=\"\" width=\"1024\" height=\"827\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/04/file-12403622480839123596-1024x827.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/04/file-12403622480839123596-1024x827.png 1024w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-12403622480839123596-300x242.png 300w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-12403622480839123596-768x621.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-12403622480839123596-1536x1241.png 1536w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-12403622480839123596.png 1875w\" sizes=\"(max-width: 1024px) 100vw, 1024px\" />\n              </p>\n<h2>The Trice Medical Inc invention works as follows</h2>\n<p>                Aspects include minimally invasive tissue modifications systems. The systems embody a minimally invasive access device with a proximal, distal and internal passageway. A visualization element and an illuminate element are located among the distal ends. Methods for using the systems in tissue modifications applications are also provided, along with kits for practicing the invention. There are also internal tissue visualization devices with RF-shielded vision sensor modules. These devices allow for minimally invasive RF tissue modification. The devices may include a hand-held controller unit and an extended member. Some aspects include RF tissue modulation devices. These devices can be connected to a hand-held medical device using an adapter. The adapter produces RF energy that can be delivered to a plasma generator attached to an extended member.</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-8090\" src=\"https://inventivs.net/wp-content/uploads/2023/04/file-14712307732536147048-1024x800.png\" alt=\"\" width=\"1024\" height=\"800\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/04/file-14712307732536147048-1024x800.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/04/file-14712307732536147048-1024x800.png 1024w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-14712307732536147048-300x234.png 300w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-14712307732536147048-768x600.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-14712307732536147048-1536x1200.png 1536w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-14712307732536147048.png 1659w\" sizes=\"(max-width: 1024px) 100vw, 1024px\" />\n              </p>\n<div class=\"contact-us-holder\"></div>\n<h3>Background for Tissue visualization, modification devices and methods</h3>\n<p style=\"padding-top:15px\">Minimally Invasive Techniques for Tissue Modification Systems</p>\n<p style=\"padding-top:15px\">Access Devices</p>\n<p style=\"padding-top:15px\">Tissue Modification Devices.</p>\n<p style=\"padding-top:15px\">Rongeur System with Integrated Visualization Element</p>\n<p style=\"padding-top:15px\">Methods</p>\n<p style=\"padding-top:15px\">Embodiments for Kits</p>\n<p style=\"padding-top:15px\">Computer Readable Storage Media.</p>\n<p style=\"padding-top:15px\">Further Embodiments for Tissue Visualization Devices &#038; Systems</p>\n<p style=\"padding-top:15px\">Further Embodiments of Imaging Methods</p>\n<p style=\"padding-top:15px\">Examples for the Utility of Certain Embodiments.</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-8091\" src=\"https://inventivs.net/wp-content/uploads/2023/04/file-8724951471892155568-805x1024.png\" alt=\"\" width=\"805\" height=\"1024\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/04/file-8724951471892155568-805x1024.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/04/file-8724951471892155568-805x1024.png 805w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-8724951471892155568-236x300.png 236w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-8724951471892155568-768x977.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-8724951471892155568-1207x1536.png 1207w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-8724951471892155568.png 1415w\" sizes=\"(max-width: 805px) 100vw, 805px\" />\n              </p>\n<p style=\"padding-top:15px\">Tissue Visualization Devices and Systems.</p>\n<p style=\"padding-top:15px\">Experimental Examples</p>\n<p style=\"padding-top:15px\">Embodiments for RF Tissue Modulation devices</p>\n<p style=\"padding-top:15px\">RF Probe</p>\n<p style=\"padding-top:15px\">RF Energy Source</p>\n<p style=\"padding-top:15px\">Further Embodiments for the Hand-Held Control Unit.</p>\n<p style=\"padding-top:15px\">Adapter</p>\n<p style=\"padding-top:15px\">Additional Components and Functionality</p>\n<p style=\"padding-top:15px\">Illustrated Embodiments</p>\n<p style=\"padding-top:15px\">Further Embodiments Of Methods</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-8092\" src=\"https://inventivs.net/wp-content/uploads/2023/04/file-7117124519354025523-1024x721.png\" alt=\"\" width=\"1024\" height=\"721\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/04/file-7117124519354025523-1024x721.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/04/file-7117124519354025523-1024x721.png 1024w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-7117124519354025523-300x211.png 300w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-7117124519354025523-768x541.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-7117124519354025523-1536x1082.png 1536w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-7117124519354025523.png 1775w\" sizes=\"(max-width: 1024px) 100vw, 1024px\" />\n              </p>\n<p style=\"padding-top:15px\">Further examples of utility</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-8093\" src=\"https://inventivs.net/wp-content/uploads/2023/04/file-2141328740704181954-1024x640.png\" alt=\"\" width=\"1024\" height=\"640\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/04/file-2141328740704181954-1024x640.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/04/file-2141328740704181954-1024x640.png 1024w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-2141328740704181954-300x188.png 300w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-2141328740704181954-768x480.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-2141328740704181954-1536x960.png 1536w, https://wp.inventiv.org/wp-content/uploads/2023/04/file-2141328740704181954-2048x1280.png 2048w\" sizes=\"(max-width: 1024px) 100vw, 1024px\" />\n              </p>\n<p>          <a href=\"https://patents.google.com/patent/US20220168035A1/en\" target=\"_blank\" rel=\"noopener\">Click here</a> to view the patent on Google Patents.</p>\n","id":"cG9zdDo4MDk1","uri":"/invention-for-tissue-visualization-modification-devices-and-methods-us20220168035a1/","title":"Invention for Tissue visualization, modification devices and methods","tags":{"nodes":[{"name":"Patent Review"}]},"categories":{"nodes":[{"name":"Electronics"}]},"featuredImage":{"node":{"mediaItemUrl":"https://wp.inventiv.org/wp-content/uploads/2023/04/file-12403622480839123596.png"}}}},"pageContext":{"slug":"invention-for-tissue-visualization-modification-devices-and-methods-us20220168035a1","neId":"8095","categories":["3D Printing","Animal Health","Apple","Artificial Intelligence","Autonomous Vehicles","Biopharmaceuticals","Blockchain Fintech","Cannabis Patents and Trademarks","Chemical Products","Communications","Consumer Products","Digital Healthcare","Electronics","Food Science Packaging","Industrial Products","Infectious Diseases","Internet","Medical Device","Metaverse","Nanotechnology","Prescription &amp; OTC Drugs","Software","Start Up","Therapeutic Antibodies","uncategorized"],"tags":["Alphabet","Amazon","Facebook/Meta","Microsoft","Patent Review","Samsung"],"siteUrl":"https://inventivs.net"}},
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