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碩士導(dǎo)師

藍(lán)公仆

發(fā)布時(shí)間:2024-08-01

藍(lán)公仆

Gongpu Lan

博士, 特聘教授

所屬學(xué)院:

物理與光電工程學(xué)院

導(dǎo)師類(lèi)別:

碩士生導(dǎo)師

科研方向:

光學(xué)設(shè)計(jì)、光電探測(cè),、生物醫(yī)學(xué)成像及系統(tǒng)

聯(lián)系方式:

[email protected],;l[email protected]; 18688275116

碩士招生學(xué)院:

物理與光電工程學(xué)院

 

個(gè)人簡(jiǎn)介

藍(lán)公仆,博士,,特聘教授,,2001-2008年于長(zhǎng)春理工大學(xué)獲得學(xué)士和碩士學(xué)位;2011年于中國(guó)科學(xué)院光電技術(shù)研究所獲得博士學(xué)位,;2011-2017年在美國(guó)華盛頓大學(xué),、休斯頓大學(xué)、阿拉巴馬大學(xué)伯明翰分校從事科研工作,;2017年受聘于佛山科學(xué)技術(shù)學(xué)院,。1)碩博期間主要從事航空和天文系統(tǒng)的研發(fā):于2006-2008年研發(fā)折反式多光譜偏振望遠(yuǎn)系統(tǒng),用于白天天空背景下暗目標(biāo)探測(cè)研究,;于2008-2011年設(shè)計(jì)多款10k × 10k(當(dāng)時(shí)世界上最大芯片)高分辨航空偵查相機(jī)和大視場(chǎng)航空測(cè)繪相機(jī)鏡頭,,進(jìn)行航空偵查和測(cè)繪工作。2)赴美期間主要從事視覺(jué)科學(xué)及眼科醫(yī)學(xué)成像技術(shù)研究:于2011-2012年設(shè)計(jì)并制作一系列液體變焦系統(tǒng),,用于共焦顯微鏡快速斷層掃描,;于2011-2012年研制寬光譜k線性OCT系統(tǒng),采用光學(xué)方法取代常規(guī)的數(shù)字方法,,實(shí)現(xiàn)了光譜在波數(shù)空間的線性分布,,大幅度提高了OCT系統(tǒng)的探測(cè)靈敏度;于2013-2015年主持設(shè)計(jì)并搭建了非共平面自適應(yīng)光學(xué)掃描激光檢眼系統(tǒng)(AOSLO),,實(shí)現(xiàn)了大屈光度(-9 D+7 D),、多模態(tài)人眼視網(wǎng)膜細(xì)胞級(jí)(分辨率:2.3μm)高清晰度成像,,該系統(tǒng)在休斯敦大學(xué)已應(yīng)用于青光眼患者視網(wǎng)膜視覺(jué)細(xì)胞及視神經(jīng)頭篩板組織退化機(jī)制研究,;于2015-2017年發(fā)明并搭建共光路OCE系統(tǒng),將相位噪聲降低了6000倍,實(shí)現(xiàn)了亞納米級(jí)(0.24 nm)動(dòng)態(tài)探測(cè)分辨力,,在國(guó)際上率先實(shí)現(xiàn)了基于OCE技術(shù)的微激勵(lì)(020 Pa)人眼角膜力學(xué)參數(shù)的高分辨在體測(cè)量,。32017年回國(guó)后專(zhuān)注于OCT技術(shù)的功能性拓展:如OCT血流造影術(shù)(OCT-A)和OCT彈性成像技術(shù)(OCT-E)的研究;提出了亞納米級(jí)幅值阻尼振動(dòng)的OCT-E直接觀測(cè)方法,,通過(guò)解耦合眼動(dòng)干擾,,實(shí)現(xiàn)角膜微響應(yīng)的時(shí)域空域頻域的多域多參數(shù)OCT-E高分辨在體觀測(cè);突破黑眼睛遮擋限制,,實(shí)現(xiàn)大視場(chǎng)全虹膜OCT-A血流造影新方法,;獲得國(guó)家自然科學(xué)基金、廣東省珠江人才計(jì)劃,、廣東省自然科學(xué)基金,、廣東省教育廳高校特色創(chuàng)新項(xiàng)目等多項(xiàng)項(xiàng)目的支持,。

 

工作經(jīng)歷

2017.09 – 現(xiàn)在  佛山科學(xué)技術(shù)學(xué)院,,物理與光電工程學(xué)院 四級(jí)特聘教授

2015.09 – 2017.08  University of Alabama at Birmingham, Postdoctoral Fellow

2013.04 – 2015.08  University of Houston, Research Associate

2012.04 – 2013.03  University of Washington, Senior Fellow

2011.10 – 2012.03  Ohio State University, Visiting Scholar

教育背景

2008.09 – 2011.07  中國(guó)科學(xué)院光電技術(shù)研究所 光學(xué)工程 博士

2005.09 – 2008.07  長(zhǎng)春理工大學(xué)&中國(guó)科學(xué)院光電技術(shù)研究所 光學(xué)工程 碩士(聯(lián)合培養(yǎng))

2001.09 – 2005.07  長(zhǎng)春理工大學(xué) 測(cè)控技術(shù)與儀器 本科

科研項(xiàng)目

[1] 在體角膜多光束OCE彈性測(cè)量方法研究,,國(guó)家自然科學(xué)基金面上項(xiàng)目,NSFC 61975030,,2020.01-2023.12,主持,,在研,59萬(wàn),。

[2] 近視眼手術(shù)角膜力學(xué)性能的OCE測(cè)量方法研究,廣東省自然科學(xué)基金面上項(xiàng)目,,2021A1515011981,,2021.01-2023.12,主持,,在研,,10萬(wàn)。

[3] 廣東省珠江人才創(chuàng)新創(chuàng)業(yè)團(tuán)隊(duì)海外青年項(xiàng)目,,2019ZT08Y105,核心成員,、子項(xiàng)目負(fù)責(zé)人(眼底圖像跟蹤系統(tǒng)開(kāi)發(fā)),,2020.06-2025.06,,在研,1400萬(wàn),。

[4] 基于OCE彈性測(cè)量的圓錐角膜疾病早期篩查研究,,廣東省普通高校特色創(chuàng)新項(xiàng)目(廣東省教育廳),2020KTSCX130,,2021.01-2022.12,,主持,結(jié)題,,6萬(wàn),。

[5] 基于光學(xué)相干技術(shù)的在體人眼角膜多彈性參數(shù)的測(cè)量方法研究,,高層次人才科研啟動(dòng)項(xiàng)目,,Gg070702017.09-2021.08,,主持,,結(jié)題,45萬(wàn),。

獲獎(jiǎng)情況

2019年廣東省“珠江人才計(jì)劃”引進(jìn)創(chuàng)新創(chuàng)業(yè)團(tuán)隊(duì)(青年團(tuán)隊(duì))核心成員

第二屆(2019-2020年度)中國(guó)科技產(chǎn)業(yè)化促進(jìn)會(huì)科學(xué)技術(shù)獎(jiǎng)杰出貢獻(xiàn)獎(jiǎng):排名1

2016 Edmund Educational Award Finalists (美國(guó)共11名,、歐洲共12)

主要論文

*代表通訊作者

#代表共同作者

期刊論文2023(截止至4月)

[1] Lan G*, Twa M D, Song C, Feng J, Huang Y, Xu J, Qin J, An L, Wei X. In vivo corneal elastography: a topical review of challenges and opportunities. Computational and Structural Biotechnology Journal. 2023, 21, 2664-2687. (IF 2021: 6.155)

[2] Ma G, Cai J, Zhong R, He W, Ye H, Duvvuri C S, Song C, Feng J, An L, Qin J, Huang Y, Xu J, Twa M D, and Lan G*. Corneal Surface Wave Propagation Associated with Intraocular Pressures: OCT Elastography Assessment in a Model Eye. 2023 (Pre-Print)

[3] Xu J, Yuan X, Huang Y, Qin J, Lan G, Qiu H, Yu B, Tan H, Zhao S, Feng Z, An L*, and Wei X*. Deep-learning visualization enhancement method for optical coherence tomography angiography in dermatology. Journal of Biophotonics. 2023 (In-Press)

期刊論文2022

[1] Lan G*, Shi Q, Wang Y, Ma G, Cai J, Feng J, Huang Y, Gu B, An L, Xu J, Qin J, and Twa M D*. Spatial assessment of heterogeneous tissue natural frequency using micro-force optical coherence elastography. Frontiers in Bioengineering and Biotechnology. 2022, 10, 851094. (IF 2021: 6.064)

[2] Li W#, Feng J#, Wang Y, Shi Q, Ma G, Aglyamov S, Larin K V, Lan G*, and Twa M D*. Micron-scale hysteresis measurement using dynamic optical coherence elastography. Biomedical Optics Express. 2022, 13(5), 3021-3041. (IF 2021: 3.562)

[3] 時(shí)群,馮錦平,,鄭燁,,王藝澄,馬國(guó)欽,,秦嘉,,安林,黃燕平,,許景江,,蔡靜,石悅,,姬崇軻,,藍(lán)公仆*. 基于微激勵(lì)光學(xué)相干彈性成像的角膜固頻在體測(cè)量. 光學(xué)學(xué)報(bào). 2022, 42(10), 1012005.

[4] 馮錦平,周?chē)?guó)鵬,,藍(lán)公仆*. 齒條類(lèi)刀具展成加工修形齒廓的理論設(shè)計(jì). 機(jī)械傳動(dòng). 2022.46(10), 30-36.

[5] Dong L, Wei Y, Lan G, Chen J, Xu J, Qin J, An L, Tan H, Huang Y*. High resolution imaging and quantification of the nailfold microvasculature using optical coherence tomography angiography and capillaroscopy: a preliminary study in healthy subjects. Quantitative Imaging in Medicine and Surgery. 2022, 12(3), 1844. (IF 2021: 4.630)

[6] Yuan X, Huang Y, An L, Qin J, Lan G, Qiu H, Yu B, Jia H, Ren S, Tan H, Xu J*. Image enhancement of wide-field retinal optical coherence tomography angiography by super-resolution angiogram reconstruction generative adversarial network. Biomedical Signal Processing and Control. 2022, 78, 103957. (IF 2021: 5.076)

[7] Liu S, Ji Z, He Y, Lu J, Lan G, Cong J, Xu X, Gu B*. Deep-Learning Image Stabilization for Adaptive Optics Ophthalmoscopy. Information. 2022, 13, 531.

[8] An L#, Wu X#, Wang S#, He K, Chen Y, Lan G, Huang Y, Xu J, Ou C, Zeng X, Zhao Y, Wang X, Long J, Wei X, and Qin J* (2022). In vivo measurement of anterior chamber pulsation in healthy subjects using full-range complex spectral domain optical coherence tomography. Optics Continuum. 2022, 1(2), 325-334.

[9] An L#, Yan B#, Zhao Y#, He K, Wu X, Lan G, Huang Y, Xu J, Ou C, Zeng X, Wang S, Wang X, Long J, Wei X, and Qin J*. Pulsatile retinal nerve fiber layer imaging with functional optical coherence tomography. Optics Continuum. 2022, 1, 283-296.

[10] 陳嘉濤, 張泓凱, 黃燕平*, 藍(lán)公仆, 許景江, 秦嘉, 安林. 基于視頻的生理參數(shù)測(cè)量技術(shù)及研究進(jìn)展. 計(jì)算機(jī)工程與應(yīng)用. 2022, 58(6): 58-68.

[11] 譚泰銘, 陳林江, 藍(lán)公仆, 許景江, 安林, 黃燕平*.基于LDU的視網(wǎng)膜OCT圖像分層分割研究. 信息技術(shù), 2022, 10: 31-40.

期刊論文2021

[1] Lan G, Xu J, Hu Z, Huang Y, Wei Y, Yuan X, Liu H, Qin J, Wang Y, Shi Q, Zeng J, Shi Y, Feng J, Tan H, An L*, Wei X*. Design of 1300-nm spectral domain optical coherence tomography angiography system for iris microvascular imaging. Journal of Physics D: Applied Physics. 2021, 54(26): 264002. (IF: 3.207)

[2] Lan G, Aglyamov S, Larin K V, and Twa M D*. In vivo human corneal natural frequency quantification using dynamic optical coherence elastography: repeatability and reproducibility. Journal of Biomechanics. 2021; 121: 110427. (IF: 2.712)

[3] Lan G*, #, Zeng J#, Li W, Ma G, Shi Q, Shi Y, Wang Y, Xu J, Huang Y, Qin J, Feng J, Tan H, An L*, Wei X*. Customized eye modeling for optical quality assessment in myopic femto-LASIK surgery. Scientific Reports. 2021; 11(1), 16049. (IF: 4.379)

[4] Lan G, Aglyamov S, Larin K V, and Twa M D*. In-vivo human corneal shear-wave optical coherence elastography. Optometry and Vision Science. 2021; 98(1), 58-63. (IF: 1.973)

[5] 王藝澄,,李雯杰,黃燕平,,馮錦平,,馬國(guó)欽,時(shí)群,,安林,,許景江,,秦嘉,譚海曙,,藍(lán)公仆*. 光學(xué)相干彈性成像方法及研究進(jìn)展. 激光與光電子學(xué)進(jìn)展. 2021; 58(14): 1400002.

[6] Zeng J, Lan G, Zhu M, Sun K, Shi Q, Ma G, Liu Q*. Factors associated with corneal high-order aberrations before and after femtosecond laser-assisted in situ keratomileusis. Annals of Translational Medicine. 2021; 9(12): 989. (IF: 3.932)

[7] Dong L, Wei Y, Lan G, Chen J, Xu J, Qin J, An L, Tan H, Huang Y*. High resolution imaging and quantification of the nailfold microvasculature using optical coherence tomography angiography and capillaroscopy: a preliminary study in healthy subjects. Quantitative Imaging in Medicine and Surgery. 2021, doi: 10.21037/qims-21-672 (Accepted). (IF: 3.837)

[8] An L#, Ye C#, Wu X, Lan G, Huang Y, Xu J, Wei X, and Qin J*. Depth imaging through the anterior to posterior segment of the whole human eye based on optical coherence tomography in the spectral-domain. OSA Continuum. 2021(11); 4: 2784-2795.

[9] 韋贏兆,,袁钘,藍(lán)公仆,,黃燕平,,秦嘉,安林,,譚海曙,,任尚杰,趙士勇,,別佳奇,,賈海波,于波,,許景江*. 心血管光學(xué)相干層析成像的研究進(jìn)展和應(yīng)用. 激光與光電子學(xué)進(jìn)展. 2021; 58(24): 2400001.

期刊論文2020以前

[1] Lan G, Larin K V, Aglyamov S, and Twa M D*. Characterization of natural frequencies from nanoscale tissue oscillations using dynamic optical coherence elastography. Biomedical Optics Express. 2020; 11(6): 3301-3318. (IF: 3.732)

[2] Lan G, Gu B, Larin K V, and Twa M D*. Clinical corneal optical coherence elastography measurement precision: effect of heartbeat and respiration. Translational Vision Science and Technology. 2020; 9(5):3. (IF: 3.283)

[3] Lan G, and Twa M D*. Theory and design of Schwarzschild scan objective for optical coherence tomography, Optics Express. 2019; 27 (4): 5048-5064.IF: 3.894

[4] Lan G, Singh M, Larin K V, and Twa M D*, Common-path phase-sensitive optical coherence tomography provides enhanced phase stability and detection sensitivity for dynamic elastography, Biomedical Optics Express. 2017; 8 (11):5253-5266.IF: 3.732

[5] Lan G and Li G*. Design of a k-space spectrometer for ultra-broad waveband spectral domain optical coherence tomography. Scientific Reports. 2017; 7: 42353.IF: 4.379

[6] Lan G, Mauger T, and Li G*. Design of high-performance adaptive objective lens with large optical depth scanning range for ultrabroad near infrared microscopic imaging. Biomedical Optics Express. 2015; 6: 3362-337.IF: 3.732

[7] Wang M, Wu N, Huang H, Luo J, Lan G, Zeng Y, Wang X, Xiong H, Han D, Tan H. Large-depth-of-field full-field optical angiography. Journal of Biophotonics. 2018;12(5): e201800329.IF: 3.207

[8] An L, Li P, Lan G, Malchow D, Wang RK*. High-resolution 1050 nm spectral domain retinal optical coherence tomography at 120 kHz A-scan rate with 6.1 mm imaging depth. Biomedical Optics Express. 2013; 4 (2): 245-259.IF: 3.732

[9] Li P, An L, Lan G, Johnstone M, Malchow D, Wang RK*. Extended imaging depth to 12 mm for 1050-nm spectral domain optical coherence tomography for imaging the whole anterior segment of the human eye at 120-kHz A-scan rate.

Journal of Biomedical Optics. 2013; 18 (1): 16012.IF: 3.170

[10] 藍(lán)公仆*,,汪旋,梁偉,,高曉東,,馬文禮. 主動(dòng)調(diào)焦式航空相機(jī)物鏡光學(xué)設(shè)計(jì)及溫度仿真分析. 光學(xué)學(xué)報(bào)2012; 37(3): 223-233.

[11] 藍(lán)公仆*, 程鋒, 馬文禮. 應(yīng)用偏振和光譜濾波法對(duì)白天星體進(jìn)行探測(cè). 儀器儀表學(xué)報(bào), 2008;(4).

[12] 廖靖宇, 高曉東, 藍(lán)公仆 趙仁杰. 航空相機(jī)物鏡動(dòng)態(tài)光機(jī)熱分析與設(shè)計(jì). 光電工程, 2010(07):40-44.

會(huì)議論文

[1] Lan G, Li G*. Design of adaptive objective lens for ultrabroad near infrared imaging. Proceedings of SPIE. 2016; Vol. 9713, 9713-14.

[2] Lan G*, Zhao R, Zhuang F, Ma W, Gao X, Liang W. Calculation of the vignetting distribution caused by the reflective four-sided pyramid. Proceedings of SPIE. Vol. 8205, 820504 (2011).

[3] Lan G*, Ma W, Cheng F. Daytime star detection device using polarization and spectral filtering method. Proceedings of SPIE. Vol. 7658, 76580Y (2010).

[4] Lan G*, Larin K, Twa M D. In vivo characterization of corneal natural frequency using optical coherence elastography. IOVS (ARVO meeting), 2019, 60(9): 6826-6826.

[5] Twa M*, Lan G, Singh M, Larin K. Clinical application of optical coherence elastography for corneal biomechanics. IOVS (ARVO meeting), 2019, 60(9): 6828-6828.

[6] Lan G*, Zotov A, Boehm S, Larin K, Twa M. Effect of heartbeat and respiration on elastography measurement precision. IOVS, 2017; 58 (8); ARVO E-Abstract: 4338.

[7] Twa M*, Lan G, Singh M, Larin K. In-vivo human corneal elasticity imaging: a phase sensitive optical coherence elastography method. IOVS, 2017; 58 (8); ARVO E-Abstract: 4324

[8] Lan G*, Porter J. First-order optical design to accommodate large uncorrected refractive errors in adaptive optics ophthalmoscopes. IOVS, 2014; 55; ARVO E-Abstract: 5196.

[9] Lan G*, Li P, An L, Malchow D, Johnstone M, Wang RK. Extended-imaging-depth (16mm) spectral domain OCT operating at 1310-nm for anterior segment biometry of the human eye. IOVS, 2013; 54; ARVO E-Abstract: 2642.

[10] Wang X, Lan G, Gao X, Liang W. Aerial camera auto focusing system. Proceedings of SPIE. 2012; Vol. 8417.

知識(shí)產(chǎn)權(quán)

已授權(quán)

[1] 藍(lán)公仆,,邁克爾 圖,,陳國(guó)杰,安林,,譚海曙,,許景江,黃燕平,,秦嘉. 一種共光路的多光束光學(xué)相干彈性測(cè)量系統(tǒng)及測(cè)量方法. 中國(guó),,發(fā)明專(zhuān)利,專(zhuān)利號(hào):ZL201811539189.6,,授權(quán)公告號(hào):CN109620130B.(授權(quán)日期:2021-09-28

[2] 藍(lán)公仆,,陳國(guó)杰,許景江,,安林,,黃燕平,秦嘉,,譚海曙. 基于微透鏡陣列的多光束光學(xué)相干的彈性測(cè)量系統(tǒng)及方法. 中國(guó),,發(fā)明專(zhuān)利,專(zhuān)利號(hào):ZL201811539379.8,,授權(quán)公告號(hào):CN109645954B.(授權(quán)日期:2021-06-29

[3] 藍(lán)公仆,,譚海曙,,安林,許景江,,黃燕平,,秦嘉,陳國(guó)杰. 基于光開(kāi)關(guān)控制和微透鏡陣列的光學(xué)彈性測(cè)量系統(tǒng)及方法. 中國(guó),,發(fā)明專(zhuān)利,,專(zhuān)利號(hào):ZL201811533179.1,授權(quán)公告號(hào):CN109674441B.(授權(quán)日期:2021-06-29

[4] 藍(lán)公仆,,邁克爾 圖,,黃燕平,安林,,許景江,,秦嘉,譚海曙,,陳國(guó)杰. 共光路微透鏡陣列的多光束光學(xué)相干彈性測(cè)量系統(tǒng)及方法. 中國(guó),,發(fā)明專(zhuān)利,,專(zhuān)利號(hào):ZL201811539190.9,,授權(quán)公告號(hào):CN109620131B.(授權(quán)日期:2021-08-03

[5] 藍(lán)公仆,安林,,許景江,,黃燕平,秦嘉,,譚海曙,,陳國(guó)杰. 一種多探測(cè)光束光學(xué)相干在體角膜彈性測(cè)量系統(tǒng)及方法. 中國(guó),發(fā)明專(zhuān)利,,專(zhuān)利號(hào):ZL201811539376.4,,授權(quán)公告號(hào):CN109620132B.(授權(quán)日期:2021-08-03

[6] 藍(lán)公仆,梁偉,,高曉東,,馬文禮. 一種拼接式大面陣數(shù)字航測(cè)相機(jī). 中國(guó),發(fā)明專(zhuān)利,,公開(kāi)號(hào):CN201110099328,,專(zhuān)利號(hào):ZL201110099328.X.

[7] 藍(lán)公仆,馬文禮,,梁偉,,高曉東. 一種寬角和長(zhǎng)后工作距離的航測(cè)相機(jī)全色物鏡. 中國(guó),發(fā)明專(zhuān)利,,公開(kāi)號(hào):CN201110099513,,專(zhuān)利號(hào):ZL201110099513.9.

[8] 藍(lán)公仆,,梁偉,高曉東,,馬文禮. 一種航空相機(jī)現(xiàn)場(chǎng)成像測(cè)試系統(tǒng). 中國(guó),,發(fā)明專(zhuān)利,公開(kāi)號(hào):CN200910089701,,專(zhuān)利號(hào):ZL200910089701.6.

[9] 藍(lán)公仆,,梁偉,馬文禮,,高曉東. 一種可調(diào)焦式航空相機(jī). 中國(guó),,發(fā)明專(zhuān)利,公開(kāi)號(hào):CN201010121564,,專(zhuān)利號(hào):ZL201010121564.2.

[10] 藍(lán)公仆,,馬文禮,程鋒,、高曉東,,朱耆祥. 一種改進(jìn)的白天星體探測(cè)裝置. 中國(guó),發(fā)明專(zhuān)利,,公開(kāi)號(hào):CN200910091599,,專(zhuān)利號(hào):ZL200910091599.3.

[11] 梁偉,藍(lán)公仆,,馬文禮,,高曉東. 一種主動(dòng)式溫度壓力補(bǔ)償?shù)膶?shí)時(shí)傳輸型航空攝影相機(jī)鏡頭. 中國(guó),發(fā)明專(zhuān)利,,公開(kāi)號(hào):CN201010121555,,專(zhuān)利號(hào):ZL201010121555.3.

[12] 汪旋,藍(lán)公仆,,高曉東,,梁偉,胡家文. 一種航空相機(jī)調(diào)焦系統(tǒng).中國(guó),,發(fā)明專(zhuān)利,,公開(kāi)號(hào):CN201110280337,專(zhuān)利號(hào):ZL201110280337.9.

[13] 程鋒,,藍(lán)公仆,,馬文禮,高曉東,,朱耆祥. 一種白天星體探測(cè)裝置. 中國(guó),,發(fā)明專(zhuān)利,公開(kāi)號(hào):CN200910088900,,專(zhuān)利號(hào):ZL200910088900.5.

[14] 秦嘉,,吳小翠,,安林,藍(lán)公仆,,譚海曙,,陳國(guó)杰,黃燕平. 一種用于測(cè)量眼球脈動(dòng)的光學(xué)相干層析成像系統(tǒng). 中國(guó),,實(shí)用新型,,專(zhuān)利號(hào):ZL201822255498.2,授權(quán)公告號(hào):CN209733949U. (授權(quán)日期:2019-12-06

[15] 秦嘉,,賀瀟,,林盛豪,安林,,藍(lán)公仆,,譚海曙,陳國(guó)杰,,黃燕平. 人眼毛細(xì)血管血氧測(cè)量裝置. 中國(guó),,實(shí)用新型,專(zhuān)利號(hào):ZL201822273736.2,,授權(quán)公告號(hào):CN210249850U.(授權(quán)日期:2020-04-07

[16] 秦嘉,,吳小翠,安林,,黃燕平,,藍(lán)公仆,,譚海曙,,陳國(guó)杰. 光譜儀色散組件及光譜儀. 中國(guó),實(shí)用新型,,專(zhuān)利號(hào):ZL201822216954.2,,授權(quán)公告號(hào):CN209513049U.(授權(quán)日期:2019-10-18

[17] 黃銀瑞,秦嘉,,譚海曙,,安林,藍(lán)公仆,,黃燕平,,陳國(guó)杰,吳小翠. 一種精確測(cè)量人眼角膜前后表面光程差的裝置. 中國(guó),,實(shí)用新型,,專(zhuān)利號(hào):ZL201822259464.0,授權(quán)公告號(hào):CN209996294U.(授權(quán)日期:2020-01-31

受理中

[1] 藍(lán)公仆,,時(shí)群,,馬國(guó)欽,,王藝澄,李雯杰,,安林,,黃燕平,秦嘉,,許景江,,譚海曙,陳國(guó)杰. 一種可穿戴式光學(xué)相干在體角膜彈性測(cè)量系統(tǒng). 中國(guó),,發(fā)明專(zhuān)利,,專(zhuān)利號(hào):202011101491.0(已受理)

[2] 藍(lán)公仆馬國(guó)欽,,時(shí)群,,李雯杰,王藝澄,,安林,,黃燕平,秦嘉,,許景江,,譚海曙,陳國(guó)杰. 一種非線性采樣的多光束光學(xué)相干彈性測(cè)量系統(tǒng)及方法. 中國(guó),,發(fā)明專(zhuān)利,,專(zhuān)利號(hào):202011426178.4(已受理)

[3] 藍(lán)公仆,李雯杰,,王藝澄,,時(shí)群,馬國(guó)欽. 非接觸測(cè)量角膜黏彈性方法,、系統(tǒng)以及存儲(chǔ)介質(zhì). 中國(guó),,發(fā)明專(zhuān)利,專(zhuān)利號(hào):202110520594.9 (已受理)

[4] 黃銀瑞,,秦嘉,,譚海曙安林,,藍(lán)公仆,,黃燕平陳國(guó)杰,,吳小翠. 角膜表面光程差測(cè)量裝置及測(cè)量角膜厚度和折射率的方法. 中國(guó),,發(fā)明專(zhuān)利,專(zhuān)利號(hào):201811646061.X (已受理)

[5] 秦嘉安林,,蔡佳龍,,黃燕平藍(lán)公仆. 面向眼部血流快速成像的相干光掃描檢眼鏡. 中國(guó),,發(fā)明專(zhuān)利,,專(zhuān)利號(hào):201811646166.5 (已受理)

[6] 秦嘉黃銀瑞,,吳小翠,,安林譚海曙,,黃燕平,,藍(lán)公仆陳國(guó)杰. 一種測(cè)量人眼小梁網(wǎng)脈動(dòng)運(yùn)動(dòng)的方法和裝置. 中國(guó),,發(fā)明專(zhuān)利,,專(zhuān)利號(hào):201811646089.3. (已受理)

[7] 吳小翠藍(lán)公仆,,秦嘉,,安林許景江,,黃銀瑞. 一種超寬范圍的皮膚成像設(shè)備與方法. 中國(guó),,發(fā)明專(zhuān)利,專(zhuān)利號(hào):201910696260.X (已受理)

[8] 秦嘉,,吳小翠,,安林譚海曙,,陳國(guó)杰,,藍(lán)公仆黃燕平,,黃銀瑞. 基于眼底脈動(dòng)信號(hào)評(píng)估RNFL完整度的方法及檢測(cè)裝置. 中國(guó),,發(fā)明專(zhuān)利,專(zhuān)利號(hào):201811653984.8 (已受理)

[9] 許景江,,別佳奇藍(lán)公仆,,安林,,秦嘉黃燕平,,陽(yáng)婭,,譚海曙. 一種光學(xué)相干層析掃描裝置. 中國(guó),發(fā)明專(zhuān)利,,專(zhuān)利號(hào):201911372710.6(已受理)

媒體專(zhuān)訪

[1] 《中國(guó)高新科技雜志》于2019年第39期刊登專(zhuān)訪藍(lán)公仆:融光學(xué)技術(shù)于生物醫(yī)學(xué)的交互性科學(xué)家,。

[2] 《科技成果管理與研究》于2019年第8期刊登專(zhuān)訪文章(封底人物)創(chuàng)新彈性成像技術(shù),,提升影像系統(tǒng)性能——佛山科學(xué)技術(shù)學(xué)院特聘教授藍(lán)公仆博士

[3] 《海峽科技與產(chǎn)業(yè)雜志》于2018年第6期曾刊登專(zhuān)訪十年磨劍,,逐光而行——記佛山科學(xué)技術(shù)學(xué)院特聘教授藍(lán)公仆,。

 

期刊評(píng)審

Science China Life Sciences

Acta Biomaterialia

Optics Express

Biomedical Optics Express

Frontiers in Physics(期刊編委、客座主編)

Frontiers in Medicine

IEEE Journal of Selected Topics in Quantum Electronics

IEEE Photonics Journal

IEEE Access

Scientific Reports

Physics in Medicine and Biology

Frontiers in Bioscience-Landmark

Photonics

光學(xué)學(xué)報(bào)

激光與光電子學(xué)進(jìn)展

Applied Optics

OSA Continuum

Journal of Innovative Optical Health Sciences

Journal of Ophthalmic Science

 

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