Author Affiliations
Abstract
1 Institute of Biomedical Optics and Optometry, Shanghai Institute for Minimally Invasive Therapy, University of Shanghai for Science and Technology, Shanghai 200093, China
2 Beckman Laser Institute and Center for Biomedical Engineering, University of California, Irvine, CA 92612, USA
3 Systems Engineering Institute, University of Applied Sciences Western Switzerland, Sion 1950, Switzerland
This study introduced the research and development of a portable and miniaturized system for the measurement of the refractive index of sub-microliter liquid based on a microfluidic chip. A technical method of double-beam interference, was proposed for use in the measurement. Based on this, by using a laser diode as a light source, changes in the refractive index were calculated by utilizing a complementary metal–oxide–semiconductor to detect the movement of interference fringes of the liquid. Firstly, this study simulated the effects of influencing factors on the interference infringes of two Gaussian beams, such as their spot sizes, distance between two beam spots, and detection range. Secondly, this research introduced the system design and construction of the double-beam interference method and analyzed the results of refractive index tests on sub-microliter aqueous glucose solutions with different concentrations. The measurement accuracy reached 10 4 refractive index units. This system has a compact structure and is rendered portable by using batteries for its power supply. The entire system is designed to be a double Z-shaped structure with a length of about 15 cm, a width of 5 cm, and a height of about 10 cm. It can be used to measure changes in the refractive index of sub-microliter to nanoliter liquids based on the use of a microfluidic chip.
120.3890 Medical optics instrumentation 
Chinese Optics Letters
2019, 17(4): 041201
Author Affiliations
Abstract
1 Department of Biomedical Science and Engineering, Institute of Integrated Technology, Gwangju Institute of Science and Technology, Gwangju 61005, Korea
2 School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, Gwangju 61005, Korea
3 School of Undergraduate Studies, Daegu Gyeongbuk Institute of Science and Technology, Daegu 42988, Korea
Blood oxygenation and flow are both important parameters in a living body. In this Letter, we introduce a simple configuration to simultaneously measure blood flow and oxygenation using an off-the-shelf spectrometer. With the integration time of 10 ms, flow phantom measurements, a liquid blood phantom test, and an arm cuff occlusion paradigm were performed to validate the feasibility of the system. We expect this proof-of-concept study would be widely adopted by other researchers for acquiring both blood flow and oxygenation changes due to its straightforward configuration and the possibility of multimodal measurement.
170.2655 Functional monitoring and imaging 170.3890 Medical optics instrumentation 170.7050 Turbid media 
Chinese Optics Letters
2018, 16(7): 071701
作者单位
摘要
1 湖北文理学院物理与电子工程学院, 湖北 襄阳 441053
2 南通市公安局刑警支队, 江苏 南通 226007
采用3130XL遗传分析仪系统研究了白纸上的潜血指纹经茚三酮熏显后对于DNA-短串联重复序列(STR)荧光图谱的影响。结果表明: 与对照组(未熏显)相比, 潜血指纹经茚三酮熏显后DNA检出效率有所降低; 经茚三酮熏显后的潜血指纹, 随着潜血指纹浓度的稀释, 能够检出的基因座数逐渐减少。本文对案件现场的证据提取具有重要的指导意义。
医用光学仪器 DNA基因型 短串联重复序列分型 潜血指纹 茚三酮熏显 medical optics instrumentation DNA genetype short tandem repeat typing latent blood fingerprint ninhydrin development 
激光生物学报
2018, 27(1): 87
Author Affiliations
Abstract
1 Electrical and Computer Engineering Department, Johns Hopkins University, Baltimore, MD 21218, USA
2 Sheikh Zayed Institute for Pediatric Surgical Innovation, Children’s National Health System, Washington, DC 20010, USA
An endoscopic imaging system using a plenoptic technique to reconstruct 3-D information is demonstrated and analyzed in this Letter. The proposed setup integrates a clinical surgical endoscope with a plenoptic camera to achieve a depth accuracy error of about 1 mm and a precision error of about 2 mm, within a 25 mm×25 mm field of view, operating at 11 frames per second.
170.2150 Endoscopic imaging 170.4580 Optical diagnostics for medicine 110.6880 Three-dimensional image acquisition 120.3890 Medical optics instrumentation 
Chinese Optics Letters
2017, 15(5): 051701
先永利 1,2,3,4,*戴云 1,3高椿明 2
作者单位
摘要
1 中国科学院自适应光学重点实验室, 四川 成都 610209
2 电子科技大学光电信息学院, 四川 成都 610054
3 中国科学院光电技术研究所, 四川 成都 610209
4 中国科学院大学, 北京 100049
视网膜血氧测量技术可以为医学诊断提供可靠的视网膜血氧新陈代谢信息,这些信息可以反映出全身微循环状态。基于光谱法的非侵入性的视网膜血氧饱和度测量是生命科学研究的新热点,国外已开展了大量的研究工作,国内的相关研究还处于起步阶段。为更好地促进视网膜血氧测量在生命科学领域中的研究和应用,对现有的研究成果进行了梳理和回顾。首先介绍了视网膜血氧测量的基本原理,概述了当前已有的视网膜血氧测量技术并讨论了各自的优缺点;然后对现有研究成果和应用情况进行总结,并对视网膜血氧测量存在的若干问题进行讨论;最后对其在生命科学中的研究和发展进行了预测和展望。
医用光学 医用光学仪器 视网膜血氧仪 光谱法 无损测量 标定 
激光与光电子学进展
2017, 54(6): 060005
作者单位
摘要
1 中国科学院合肥物质科学研究院 医学物理与技术中心, 合肥 230031
2 中国科学技术大学, 合肥 230026
3 中国医科大学, 沈阳 110001
为了实现MicroRNA的快速检测, 设计了一种便携式MicroRNA快速检测仪.基于等温滚环扩增技术, 采用光电检测方法, 检测标志物受激发出的荧光光强, 建立特征荧光分析检测系统.通过改变激发光强度、MicroRNA试剂浓度等参量, 验证了该仪器可测量的MicroRNA的浓度范围为0.01~0.1 μmol, 可检测出的最低检出限为7个拷贝数, MicroRNA浓度与荧光信号强度之间为线性关系(R2=0.999 1).
生物医学工程 医用光学仪器 核酸检测 荧光 弱光探测 滚环扩增 Biomedical engineering Medical optics instrumentation Nucleic acid detection Fluorescence Light detection MicroRNA MicroRNA Rolling circle amplification 
光子学报
2017, 46(3): 0312001
Author Affiliations
Abstract
1 State Key Laboratory of Precision Measuring Technology and Instruments, Tianjin University, Tianjin 300072, China
2 School of Electrical Engineering and Automation, Tianjin Polytechnic University, Tianjin 300387, China
3 Tianjin Nankai Hospital, Tianjin 300100, China
A CO2 sensor for capnography, based on a hollow waveguide (HWG) and tunable diode laser absorption spectroscopy (TDLAS), is presented; the sensor uses direct absorption spectroscopy and requires neither frequent calibration nor optical filters, giving it a significant advantage over existing techniques. Because of the HWG, the CO2 measurement achieved a concentration resolution of 60 ppm at a measurement rate of 25 Hz, as characterized by Allan variance. The length of the HWG was selected to efficiently suppress the optical fringes. This setup is perfectly suited for the detection of CO2 by capnography, and shows promise for the potential detection of other breath gases.
120.3890 Medical optics instrumentation 300.6260 Spectroscopy, diode lasers 280.1415 Biological sensing and sensors 
Chinese Optics Letters
2015, 13(11): 111201
Author Affiliations
Abstract
1 School of Computer Science and Technology, Tianjin University, Tianjin 300072, China
2 Department of Ophthalmology, University of Alabama at Birmingham, Birmingham, AL 35294, USA
To improve ophthalmic adaptive optics (AO) speed and compensate for ocular wavefront aberration of high temporal frequency, the AO wavefront correction is implemented with a control scheme including two parallel threads: one is dedicated to wavefront detection and the other conducts wavefront reconstruction and compensation. With a custom Shack–Hartmann wavefront sensor that measures the ocular wave aberration with 193 subapertures across the pupil, AO achieves a closed-loop updating frequency up to 110 Hz, and demonstrates robust compensation for ocular wave aberration up to 50 Hz in an AO scanning laser ophthalmoscope.
120.3890 Medical optics instrumentation 170.0110 Imaging systems 220.1000 Aberration compensation 220.1080 Active or adoptive optics 
Chinese Optics Letters
2014, 12(12): 121202
Author Affiliations
Abstract
1 Biomedical Optics Research Laboratory, Division of Neonatology University Hospital of Zurich, 8091 Zurich, Switzerland
2 Institute for Biomedical Engineering University and ETH Zurich, Zurich, Switzerland
3 Laboratory for Social and Neural Systems Research Department of Economics, University of Zurich Zurich, Switzerland
We present a novel optical sensor to acquire simultaneously functional near-infrared imaging (fNIRI) and functional magnetic resonance imaging (fMRI) data with an improved handling and direct localization in the MRI compared to available sensors. Quantitative phantom and interference measurements showed that both methods can be combined without reciprocal adverse effects. The direct localization of the optical sensor on MR images acquired with a T1-weighted echo sequence simplifies the co-registration of NIRI and MRI data. In addition, the optical sensor is simple to attach, which is crucial for measurements on vulnerable subjects. The fNIRI and T2*- weighted fMRI data of a cerebral activation were simultaneously acquired proving the practicability of the setup.
Medical optics instrumentation imaging systems functional monitoring and imaging 
Journal of Innovative Optical Health Sciences
2011, 4(2): 191
Author Affiliations
Abstract
Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China
A new method for characterizing living tissue cells is demonstrated using both phase and amplitude information derived from the spectrally resolved interferogram in a single measurement. The effect of the light source spectral distribution can be cancelled out with the help of the zero order spectrum of the Fourier transform of the interferogram. The ratio of amplitudes between the two interference beams is acquired without this effect. The group delay, the first and second order dispersions, and the absorption, etc., for the full wavelength range can be measured. The results of the culture medium and the HeLa living cells are given. In addition, the measured values of d2n/d \lambda 2 and absorption of the distilled water are also provided for comparison.
干涉 相位测量 色散 医学光学仪器 120.3180 Interferometry 120.5050 Phase measurement 260.2030 Dispersion 170.3890 Medical optics instrumentation 
Chinese Optics Letters
2010, 8(11): 1079

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