Gynaecology – I.T.E.M https://www.item.com.tr Medical Technologies Group Sat, 18 Jan 2020 11:34:58 +0000 tr hourly 1 https://wordpress.org/?v=5.3.11 Luviva https://www.item.com.tr/project/luviva/ Sat, 18 Jan 2020 11:50:44 +0000 http://www.item.com.tr/?post_type=project&p=5399

LuViva® Advanced Cervical Scan

Detected Disease up 2 Years Earlier Than Cytologies, HPV Tests, Pap Smear an Biopsies No Need Pap Smear or HPV; No Need Pathology

myluviva.com

The LuViva Advanced Cervical Scan is a medical device that has been designed based on biophotonics science. Biophotonics is used in medicine to study tissue and blood at the macro (large-scale) and micro (very small scale) level to detect, diagnose and treat diseases in ways that are non-invasive to the body.

LuViva is based on 18 technology patents developed by the US based company, Guided Therapeutics, Inc. The technology combines fluorescence with reflectance spectroscopy and analyzes very fine gradations of light from tissue. This form of biophotonics is called Multimodal Hyperspectroscopy (MHS).

The purpose of MHS technology is to eliminate disadvantages of the conventional screening processes (high ratio of false negatives / false positives, unnecessary anxiety and concern, unnecessary colposcopy/biopsy procedures, unnecessary surgeries..etc) and provide a more effective and successful cervical cancer screening process.
LuViva can detect physical and chemical changes in the tissue that occur at the cellular level through reflectance and fluorescence spectroscopy. Thus, high grade cellular dysplasia (HSIL) can be recognised by a far higher sensitivity of 87% compared to conventional methods. Because the MHS technology used by LuViva is very sensitive, it may detect early cellular changes starting at the deep basal layer up to 2 years before conventional methods are able to.During a LuViva scan, light from a Xenon lamp is shined upon the cervix through a hollow tube called the Cervical Guide. Using unique algorithms, the interactions of the light with the cervical tissue are analyzed in order to determine the likelihood of precancerous or cancerous tissue being present.

 

 

In addition, a short time after certain molecules in the tissue absorb the light, electrons are excited which then cause the molecule to emit light in longer wavelenghths, a phenomenon called fluorescence. The amount of light absorbed by the tissue and the intensity of light reflected and emitted, along with the structure of the emission spectra, depend on the metabolism and structures within the tissue.
The responses to light and the emission of healthy tissue are different than the responses and emission of unhealthy tissue because of the physical changes (increased number of cells, changes in the nuclear size, thickening of the cellular wall..etc) and chemical changes (increased levels of Tryptophan, collagen, elastin …etc) that occur when cells are becoming cancerous.

 

What is MHS?
Spectroscopy has been a very reliable method used for precise measurements in astronomy and chemistry for a long time. Though there are many types of spectroscopy, all forms function the same fundamental way by using a spectrometer to measure how light interacts with matter. In Multimodal Hyperspectroscopy (MHS), more than one type of spectroscopy is used to analyze very large amounts of spectral data. When these large amounts of spectral information are analyzed, it is called „hyperspectral“. By using a Xenon light bulb to produce the specific waves of light needed, LuViva can scan the cervix in about one minute, with results displayed right away. As the light is applied to the tissue, most is absorbed or scattered, but a portion is reflected by the tissue to the spectrometer. This is called reflectance spectroscopy.

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DySISMap https://www.item.com.tr/project/dysismap-2/ Thu, 16 Jan 2020 13:10:57 +0000 http://www.item.com.tr/?post_type=project&p=5306

Dysis Digital Cervical Mapping System for Advanced Colposcopy

DySIS Digital Cervical Mapping System

Until now, all cervical visualization systems have been designed the same way and allow the clinician to simply view the cervix to manually assess the aceto-whitening process. Conventional visualization devices are difficult and subjective. Solving these problems required much more than an incremental change. It required a radical breakthrough in understanding the bio-chemical interactions on the cervix combined with a highly innovative approach.

DySIS measures the aceto-whitening phenomenon. It differs from traditional colposcopes by measuring aceto-whitening automatically, producing a clear map which assists the clinician to diagnosis, biopsy and treatment if needed.

DySIS provides:

• Dynamic Spectral Imaging
• In vivo quantified assessment of
• High sensitivity quantified mapping of the aceto-whitening effect
• HD digital imaging & video with intuitive touch screen interface
• Ergonomic design compatible with all patient beds

Imaging:

DySIS has been designed to provide crisp, high-resolution imaging with over 120,000 pixels used to image one square millimetre of tissue. Cross-polarisation filters are built-in to remove glare from tissue surfaces ensuring that all areas are visible during the examination. A live video feed of the area under examination is delivered directly to the touch screen interface at a rate of 18 frames per second. Since DySIS is a digital system, a variety of user tools provide excellent capability for image manipualation and analysis, including area magnification, green and blue filters, video and still image capture.

DySISmap:

DySISmap is unique.

It provides a detailed and accurate summary of the aceto-whitening phenomena measured by DySIS on the patient. The map is derived through patented dynamic spectral analysis of the cervical tissue. Colours are allocated on the map depending on the degree of aceto-whitening measured by DySIS during the examination. This information can be easily combined with other clinical observations to assist in the selection of biopsy sites and patient management. The intuitive touch screen interface allows the biopsy points to be easily marked (see the circles on the example below):

• Accurate mapped summary of aceto-whitening effect
• Map analysis tools to assist with interpretation

DySIS includes a comprehensive on-board patient database allowing for all pre-examination, exam results, treatment plan and post-exam follow-up notes. The proprietary database is comprehensive yet compact and, under normal use, has excess capacity

• Automatic electronic patient record generation & storage
• Enables longitudinal tracking
• Information export capabilities

DySISviewer:

Software to allow patient examinations to be exported from DySIS to a PC

• Office/ remote patient review and assessment
• Flexibility for the clinician and multi-disciplinary team to review patients anywhere

Ergonomics :

DySIS works with all examination beds and chairs, having infintie flexibilty in its adjustment. Above all else, DySIS allows the clinician the best ergonomics with an adjustable touch screen interface and single-handed manipulation of the imaging head to achieve both clinical and patient comfort.

The instrument can be set-up and used for either right or left-handed operation.

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