Skip to main content Start main content
PolyU Scholars Hub

林国璋教授

副学院主任(课程及临床培训)、眼科视光学(荣誉)理学士学位课程主任暨教授

  • HJ505
  • +852 2766 6109
  • andrew.kc.lam@polyu.edu.hk
  • 林教授的主要研究领域为角膜生物力学、眼科影像扫描、眼内压测量、青光眼研究及基本眼部护理视光学。

简历

Dr Andrew Lam graduated from the then Hong Kong Polytechnic with a Professional Diploma in Optometry. After working in a private optometric practice for two years, he returned to the then Hong Kong Polytechnic working as a Research Assistant and later obtained his Masters and PhD degrees from the Department of Optometry, University of Bradford, in the UK. He is now the Programme Leader of the Bachelor of Science in Optometry Programme at the School of Optometry, PolyU. He was a recipient of the Department's Teaching Excellence Award in 2002 and also 2008.

Dr Lam is a Fellow of the American Academy of Optometry. He is Chairperson of the Preliminary Investigation Committee and the Registration Committee of the Optometrists Board of Hong Kong. He has also served as Chairperson in various Committees of the Optometrists Board of Hong Kong, including Education Committee and Examination Committee. He was Treasurer of the Hong Kong Society of Professional Optometrists from 1993 to 1998.

研究概述

Knowledge of corneal biomechanics is important for understanding the development of myopia. Weakened corneal biomechanics may indicate an overall weakened outer ocular coat, hence an eye that is more prone to axial elongation when it is exposed to myopigenic factors. High myopia is also associated with glaucoma, where intraocular pressure (IOP) measurement is important in its diagnosis.

Research in corneal biomechanics could help us to better understand the development of myopia. Understanding the influence of corneal biomechanics in IOP measurement may eventually shift the paradigm of glaucoma diagnosis and treatment.

Development of myopia and glaucoma may share similar pathophysiology of a weakened outer ocular coat. Since high IOP is a risk factor of glaucoma, current medical and surgical treatments in glaucoma target reducing the IOP. The Gold standard for IOP measurement is through corneal touch. Alteration of corneal biomechanics such as after corneal refractive surgeries in myopes can affect accuracy of IOP measurement.

学历

  • Professional Diploma in Optometry, Hong Kong Polytechnic
  • Master of Philosophy, University of Bradford
  • Doctor of Philosophy, University of Bradford

专业资格

  • Fellow of the American Academy of Optometry

研究兴趣

  • Primary care optometry
  • Cornea
  • Ocular blood supply
  • Ocular disease
  • Corneal biomechanicsIntraocular pressure measurementOptical coherence tomographyOptical coherence tomography angiography

  1. Hon Y, Chen GZ, Lu SH, Lam DCC, Lam AKC. High myopes have lower normalised corneal tangent moduli (less 'stiff' corneas) than low myopes. Ophthal Physiol Opt. 2017;37(1):42-50.
  2. Hon Y, Chen GZ, Lu SH, Lam DCC, Lam AKC. In vivo measurement of regional corneal tangent modulus. Sci Rep. 2017;7(1):14974.
  3. Lam AKC, Hon Y, Leung LKK & Lam DCC. Repeatability of a novel corneal indentation device for corneal biomechanical measurement. Ophthal Physiol Opt 2015;35(7): 455-61.
  4. Hon Y, Lam AKC. Corneal deformation measurement using Scheimpflug non-contact tonometry. Optom Vis Sci. 2013;90(1):e1-e8.
  5. Chui WS, Lam AKC, Chen D, Chiu R. The influence of corneal properties on rebound tonometry. Ophthalmology. 2008;115(1):80-4.
  1. Corneal stiffness and tangent modulus to predict the rate of corneal curvature change in corneal reshaping therapy. Funded by General Research Fund, Research Grants Council, HKSAR
  2. The rate of topographic corneal change and its recovery from overnight orthokeratology lens wear. Funded by General Research Fund, Research Grants Council, HKSAR

您的浏览器不是最新版本。如果继续浏览本网站,部分页面未必能够正常运作。

建议您更新至最新版本或选用其他浏览器。您可以按此连结查看其他相容的浏览器。