原名「台灣學術線上」
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項次 書目
1
題名:Review: Raman Spectroscopy-A Novel Tool for Noninvasive Analysis of Ocular Surface Fluid     (24點)
著者:Chi-Chang LinMing-Tse KuoHsien-Chang Chang
出版地區:台灣
出版城市:台南市
學科:醫學綜合
關鍵字:Raman spectroscopy ; Ophthalmology ; Tears ; Microbial keratitis
刊名:Journal of Medical and Biological Engineering
卷期:30卷6期(2010.12)
頁碼:343-354
語言:英語
摘要: 英文摘要PDF

Many systemic diseases like diabetes, hypertension, or microorganism infections and accident injuries may damage the eyes. Using specific light to enter eyes from the controlled environment, ophthalmologists use light-transmitted information obtained with special instruments like slit-lamp biomicroscopes for clinical diagnosis, In this review, the major structures of the eyes and their important functions will be introduced first. A brief picture of eye diseases is presented, including infectious, immune-related, congenital, degenerative, and traumatic entities. We finally focus on Raman spectroscopy, which is a novel qualitative and quantitative optical technique to probe biological systems with advantages including noninvasiveness, less sample volume needed, and utility even in aqueous environments. The purpose of this paper is to review the applications of this developing non-invasive technology in ophthalmological studies, especially in the diagnostic technology of microbial keratitis, which is a vision-threatening disease necessitating rapid and correct diagnosis. Additionally, some clinical approaches for diagnosing microbial keratitis will also be addressed to fill the gap between clinical methods and this novel technique. Raman-based analysis platform, a promising technique for microbial keratitis diagnosis, can bring a new era, especially for patients with microbial keratitis.




本卷期目次
Journal of Medical and Biological Engineering 30卷6期 (2010.12)
Review: Raman Spectroscopy-A Novel Tool for Noninvasive Analysis of Ocular Surface Fluid/ Chi-Chang LinMing-Tse KuoHsien-Chang Chang
A Tactile Display System for Hand Prostheses to Discriminate Pressure and Individual Finger Localization/ Christian AntfolkChristian BalkeniusGöran LundborgBirgitta RosénFredrik Sebelius
Energy Distribution Analysis of Uterine Electromyography Signals/ Bassam MoslemMohamad KhalilCatherine MarqueMohamad O. Diab
Source Separation Techniques for Optimal Electrode Configurations: A Study on Electromyography/ Ganesh R NaikDinesh Kant KumarHans WeghornSridhar Poosapadi Arjunan
Wrist Movement Characterization by Mechanomyography Technique/ Eduardo Mendonça ScheerenEddy Krueger-BeckGuilherme Nogueira-NetoPercy NohamaVera Lúcia da Silveira Nantes Button
Fast and Efficient Iris Image Segmentation/ Lee Luan LingDaniel Felix de Brito
An Accurate Bicep Muscle Model with sEMG and Muscle Force Outputs/ Katherine Anne WheelerDinesh Kant KumarHirokazu Shimada
Using EMG for Real-time Prediction of Joint Angles to Control a Prosthetic Hand Equipped with a Sensory Feedback System/ Christian AntfolkChristian CiprianiMarco ControzziMaria Chiara CarrozzaGöran LundborgBirgitta RosénFredrik Sebelius
Brain-computer Interface Based on Visual Evoked Potentials to Command Autonomous Robotic Wheelchair/ Sandra Mara Torres MülllerWanderley Cardoso CelesteTeodiano Freire Bastos-FilhoMário Sarcinelli-Filho
 
   
 
   

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