【百家大講堂】第279期:視頻率高光譜成像使光譜超視覺(jué)成為可能:臨床診斷與外科中的一項(xiàng)顛覆性技術(shù)
講座題目:視頻率高光譜成像使光譜超視覺(jué)成為可能:臨床診斷與外科中的一項(xiàng)顛覆性技術(shù)
Video-Rate Hyperspectral Imaging Enables Spectral Hyper Vision: A Game-Changing Technology in Clinical Diagnosis and Surgery
報(bào) 告 人:Costas Balas
時(shí) 間:2019年11月21日(周四)10:00-12:00
地 點(diǎn):中關(guān)村校區(qū)研究生教學(xué)樓101報(bào)告廳
主辦單位:研究生院、信息與電子學(xué)院
報(bào)名方式:登錄北京理工大學(xué)微信企業(yè)號(hào)---第二課堂---課程報(bào)名中選擇“【百家大講堂】第279期:視頻率高光譜成像使光譜超視覺(jué)成為可能:臨床診斷與外科中的一項(xiàng)顛覆性技術(shù)”
【主講人簡(jiǎn)介】
Costas Balas在希臘佩特雷大學(xué)獲得醫(yī)學(xué)物理和生物醫(yī)學(xué)工程的物理學(xué)位和博士學(xué)位,。他是希臘查尼亞克里特島技術(shù)大學(xué)電子與計(jì)算機(jī)工程學(xué)院(ECE)的教授,是ECE學(xué)院電子實(shí)驗(yàn)室主任和實(shí)驗(yàn)室光子學(xué)集團(tuán)的創(chuàng)始人和領(lǐng)導(dǎo),。他的研究興趣包括生物光子學(xué)和高光譜成像,。Balas教授曾在9家期刊擔(dān)任主編/編委,,在國(guó)際會(huì)議上做過(guò)50多次邀請(qǐng)/全體會(huì)議演講,發(fā)表過(guò)100多篇文章和書(shū)籍章節(jié),,并擁有多項(xiàng)專(zhuān)利,。
Costas Balas received the Physics Degree and the PhD in Medical Physics and Biomedical Engineering, both from the University of Patras Greece. He is a Professor in the School of Electrical and Computer Engineering (ECE) at the Technical University of Crete, Chania, Greece. He is the Director of the ECE School Electronics Lab and the founder and leader of Lab’s photonics group. His research interests span both biophotonics and hyperspectral imaging. Costas Balas has served as Gest Editor/Editorial Board Member in 9 journals, given more than 50 invited/plenary talks in international conferences, and published more than 100 per-reviewed articles and book chapters.
本次報(bào)告將著重介紹理想高光譜成像系統(tǒng)的新發(fā)展。報(bào)告將首先介紹一種結(jié)合了幾乎實(shí)時(shí)的光譜分類(lèi)算法以及以視頻速率顯示的整個(gè)系統(tǒng)輸出光譜圖的先進(jìn)的,、小型化的硬件配置,。這是一種新興的技術(shù),光譜超視覺(jué),,有望從根本上提高診斷和手術(shù)治療的準(zhǔn)確性,。報(bào)告還將介紹新一代的皮膚鏡、內(nèi)窺鏡和婦科顯微鏡,,并展示國(guó)際臨床試驗(yàn)的結(jié)果,,證實(shí)其優(yōu)于傳統(tǒng)方法。
This talk will emphasize on new developments towards an ideal hyperspectral imaging system. The talk will firstly present an advanced, miniaturized hardware configuration, combined with nearly real time spectral classification algorithms, with the total system outputting spectral maps displayed at video rates. This is synonymous to spectral hyper vision , an emerging technology holding the promise to radically improve the diagnostic and surgical treatment accuracy outcomes in several medical practices. A new generation of skin scopes, endoscopes and gynecologic microscopes, implementing this new technology will be presented, together with results from international clinical trials confirming superior performance over traditional methods.