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NON-INVASIVE CANCER
DIAGNOSTIC METHOD
AND
EQUIPMENT
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AUTHORS:
Deltatekh Ltd MSU Science Park
Alexander V Vinogradov Alekxey I Trushin
Leonid Z Velsher Mikhail L Stakhanov
Central Clinical Hospital2 name after Semashko N.A.
Russian Railroads.
Moscow State Medical-Stomatological University
*
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Deltatekh LTD
Key Project Firm
Image capture and processing systems
Spectroscopy instruments
Medical diagnostic equipment Scientific devices
Deltatekh LTD, MSU Science Park, Vorobyevi Gory, Moscow, Russia, 119 899 Tel/fax+07:(095)930-8409
Since 1992 MSU Science Park
www.deltatekh.ru 930-8409
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Imaging System
Matrix-430k/12Futures
Super-high sensitivity Wide Spectral range
Nanosecond resolution
High spatial resolution
Applications
Medical imaging
Scientific
measurements
FISH-microscopy
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Posttraumatic hand wound fluorescent
image
(5 days after the trauma)
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The method is based on selective
accumulation of endogenous porphyrinsin quickly growing tissues (proliferation
areas).
Cancer is most proliferation area.
Proliferation areas are identified by
recording laser-fluorescent images.
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As known, cells of a malignant tumorshare essentially more often normal
cells. Thus growth rate of different
tumors, as well as speed of duplicationvarious on the structure normal (non
tumor) cells is rather various. Hence
estimating intensity of fluorescent
radiation endogenous (natural)
porthyrins it is possible to judgemorphology of researched fabrics
precisely to a certain extent.
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The Block-diagram of excitation and
registration fluorescent emission
Human
bodytissue
Laser
emission
and image
registratio
n system
Red laser light (50 mkWt/sm2, =635 nm)Fluorescence emission =650-700 nm
Fluorescence emission =650-700 nm
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The method andprototypes of the
equipment used in
medical practice byCentral ClinicalHospital2
Russian Railroadsmore then 7 years.
Pilot version of the diagnostic system
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Fluorescent image of the patients face
(upper part)
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To the left of tumor it is clearly visible tumoral
defeat of a skin.
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Bright spot - basal cells cancers relapse onthe temple.
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The same patient after tumour removing
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Operational wound after
laser removal of that tumor
Relapse of basal sells cancer
after surgical removal
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Breaking up black cancer
skin (the central form)
984 3007Fluorescence intensity:
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Skin cancer LIF diagnostic Statistical results
Correct
91%
False-
egative
9%
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Patent Shield
Patents of RF No. 2128005, No.2169922, PCT patent application No.PCT/RU99/00039, international
publication No. WO 00/47112, USAPatent No. US 6,584,342 B1(Jun,24,2003), Canadian patent
application No 2,360,229, EPO patentapplication No. 99921306.9
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Market Size Estimations
Russian Federation- $57-80M
US and Canada - $650-800M
Global market -$2-3B
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The Project Aims
To enter the market of medicalequipment for laser-fluorescent cancerdiagnostics;
To spread application methods(education, certification of specialists,licensing).
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Market Entry
Establishing a company for equipmentproduction and distribution.
Authors of the project join the company as apartner by granting IPR (patents, know-how,software, results of clinical trials, drafts,
schemes, software, A-prototype). Investorsgrant financial capital and other asset.
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Project Expanses Consulting & global markets estimations
Start-up Company Establishing, Legal documents
Rent, CEO end workers salary
Company style design & Public Relations
Expensed Equipment & Software
Market sample design & production 10 pieces Device and method Certification & national market clinical
trials
Marketing & Advertising
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Time and Money
Financial capital $3-5M
Time to market - 18-24 month
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Our Team
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BIO 2007 Boston, USA, May 2007
Forums
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Grand Prix on VIII International ForumHigh Technology of XXI April 2007
Moscow
Awards