Tag: ophthalmologist

  • Astigmatism

    Astigmatism is a common vision condition that causes blurred vision. It occurs when the cornea (the clear front cover of the eye) is irregularly shaped or sometimes because of the curvature of the lens inside the eye.

    An irregularly shaped cornea or lens prevents light from focusing properly on the retina, the light-sensitive surface at the back of the eye. As a result, vision becomes blurred at any distance. This can lead to eye discomfort and headaches.

    Astigmatism frequently occurs with other vision conditions like myopia (nearsightedness) and hyperopia (farsightedness). Together these vision conditions are referred to as refractive errors because they affect how the eyes bend or “refract” light.

    There are many causes to astigmatism. It can be hereditary and is usually present from birth. It can decrease or increase over time.

    comprehensive optometric examination will include testing for astigmatism. If necessary, your optometrist can provide eyeglasses or contact lenses that correct the astigmatism by altering the way light enters the eyes.

    Another option for treating astigmatism is a corneal procedure called orthokeratology (ortho-k). In this painless, noninvasive procedure, the patient wears a series of specially designed rigid contact lenses to gradually reshape the curvature of the cornea.

    Laser surgery can also treat some types of astigmatism. The laser changes the shape of the cornea by removing a small amount of eye tissue.

    Astigmatism

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    What causes astigmatism?

    Possible view through an astigmatic eye -- Image courtesy of Eyemaginations™

    The curvature of the cornea and lens bends the light entering the eye in order to focus it precisely on the retina at the back of the eye. In astigmatism, the surface of the cornea or lens has a somewhat different curvature.

    the surface of the cornea is shaped more like a football instead of round like a basketball, the eye is unable to focus light rays to a single point. Vision becomes out of focus at any distance.

    In addition, the curvature of the lens inside the eye can change, resulting in an increase or decrease in astigmatism. This change frequently occurs in adulthood and can precede the development of naturally occurring cataracts.

    Sometimes astigmatism may develop following an eye injury or eye surgery.

    Astigmatism also occurs due to a relatively rare condition called keratoconus in which the cornea becomes progressively thinner and cone-shaped. This results in a large amount of astigmatism, which causes poor vision that cannot be clearly corrected with eyeglasses. People with keratoconus usually need contact lenses for clear vision and eventually may need a corneal transplant.

    An optometrist can diagnose an astigmatism through a comprehensive eye examination. Testing for astigmatism measures how the eyes focus light and determines the power of any optical lenses needed to improve vision. This examination may include:

    • Visual acuity-When you read letters on a distance chart, you are measuring your visual acuity. Visual acuity is given as a fraction (for example, 20/40). The top number is the standardized testing distance (20 feet) and the bottom number is the smallest letter size read. A person with 20/40 visual acuity would have to get within 20 feet to read a letter that should be seen clearly at 40 feet. Normal distance visual acuity is 20/20.
    • Keratometry/Topography-A keratometer is the primary instrument used to measure the curvature of the cornea. By focusing a circle of light on the cornea and measuring its reflection, it is possible to determine the exact curvature of that area of the cornea’s surface. This measurement is particularly critical in determining the proper fit for contact lenses. A corneal topographer, which is gaining use, generates a contour map of the cornea and provides even more detail of the cornea’s shape.
    • Refraction-Using an instrument called a phoropter, your optometrist places a series of lenses in front of your eyes and measures how they focus light. This is performed using a handheld lighted instrument called a retinoscope or an automated instrument that evaluates the approximate focusing power of the eye. Based on your responses, the power is then refined to determine the lenses that allow the clearest vision. Despite improved technology, patient input remains integral in determining vision needs.

    With the information from these tests, your optometrist can determine if you have astigmatism. Your optometrist will use these findings, combined with those of other tests performed, to determine the power of any lens correction you need to provide clear, comfortable vision. Once testing is complete, your optometrist can discuss treatment options.

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    How is astigmatism treated?

    Eyeglasses are the primary choice for persons with astigmatism.

    People with astigmatism have several options to regain clear vision. They include:

    • Eyeglasses. People with astigmatism primarily choose eyeglasses to improve their vision. The eyeglasses contain a special cylindrical lens prescription that compensates for the astigmatism. This provides additional power in specific parts of the lens.

      Generally, a single-vision lens is prescribed to provide clear vision at all distances. However, patients over age 40 who have presbyopia may need a bifocal or progressive addition lens.

    • Contact lenses. Some people will have better vision with contact lenses rather than eyeglasses. Contact lenses may provide clearer vision and a wider field of view. However, since contact lenses are worn directly on the eyes, they require regular cleaning and care to safeguard eye health.

      Standard soft lenses may not be effective in correcting astigmatism. However, special toric soft contact lenses can correct for many types of astigmatism. Because rigid gas-permeable contact lenses maintain their regular shape while on the cornea, they can compensate for the cornea’s irregular shape and improve vision for people with astigmatism.

    • Orthokeratology. Orthokeratology (ortho-k) involves the fitting of a series of rigid contact lenses to reshape the cornea. The patient wears contact lenses for limited periods, such as overnight, and then removes them. People with moderate astigmatism may be able to temporarily obtain clear vision without lenses for most of their daily activities. Orthokeratology does not permanently improve vision. If patients stop wearing the retainer lenses, their vision may return to its original condition.
    • Laser and other refractive surgery procedures. Astigmatism can also be corrected by reshaping the cornea through LASIK (laser in situ keratomileusis) or PRK (photorefractive keratectomy). PRK removes tissue from the superficial and inner layers of the cornea. LASIK removes tissue only from the inner layer of the cornea.

    If you have an astigmatism, you have a wide range of options to correct your vision problem. In consultation with your optometrist, you can select the treatment that best meets your visual and lifestyle needs

  • BILATERAL RETINITIS FOLLOWING TYPHOID FEVER

    Abstract

    Background

    Post typhoid fever immune related reactions affecting the eye is a rare finding which can have various presentations in which typhoid retinopathy is not a well recognized sequelae.

    Case presentation

    Here we present a case of 59 year old male who presented with right eye sudden painless loss of vision 4 weeks after typhoid fever which was diagnosed and treated successfully. His BCVA was 2/60 in right eye and 6/6 in left eye. Fundus examination showed retinitis along with macular serous detachment in right eye and retinitis in left eye. Significant improvement in BCVA in right eye was observed after treatment with oral steroid with resolving retinitis lesions. Diagnosis of post typhoid immune mediated retinitis was made with good resolution following treatment.

    Conclusions

    Immune mediated retinitis is a rare sequelae to typhoid infection which can be successfully treated with systemic steroids with good resolution of the lesions.

    Keywords: Post typhoid fever, Immune mediated, Typhoid retinopathy, Retinitis

    Background

    Typhoid or enteric fever is a systemic disease which is characterized by fever and abdominal pain caused due to dissemination of Salmonella typhi or paratyphi. It is transmitted by food or water due to fecal contamination by ill or asymptomatic chronic carriers. A high incidence of typhoid fever in developing countries correlates with poor sanitation and lack of access to clean drinking water []. Ocular manifestations of typhoid fever are rare and include lid edema or abscess, dacryoadenitis, conjunctival petechiae or chemosis, corneal ulceration, uveitis, vitreous haemorrhage, retinal haemorrhage and detachment, stellate maculopathy, pigmentary retinopathy, optic neuritis, internal or external ophthalmoplegia, orbital haemorrhage or abscess. These complications are caused either by direct invasion of the organisms into the ocular tissue, or by hypersensitivity reaction such as vitreous haemorrhage after typhoid vaccination []. Here we are presenting a case of retinitis with macular serous detachment developing post typhoid fever.

    Case report

    A 59 year old male presented to our hospital 1 week after experiencing diminution of vision in the right eye. He gave a history of typhoid fever 4 weeks prior to presentation for which Widal test was performed to confirm diagnosis. The test results showed significant titres for ‘O’ antigen (>1:80) and ‘H’ antigen (>1:160) and negative for ‘AH’ and ‘BH’ antigens. He was subsequently started on oral Ofloxacin 400 mg twice daily for 2 weeks following which fever subsided. There was no known history of diabetes mellitus or hypertension. On ocular examination his best corrected visual acuity was 2/60 in the right eye and 6/6 in left eye. Anterior segment findings were unremarkable with IOP being within normal range for both eyes. Fundus examination of right eye showed white fluffy lesions along the superior and inferior arcades with superficial haemorrhages in around the macula with a macular star suggestive of retinitis (Fig. 1a). Left eye fundus showed few dispersed retinitis lesions with superficial haemorrhage along the superior arcade with intact foveal reflex (Fig. 1b). On optical coherence tomography of right eye underlying macular serous retinal detachment was noted (Fig. 2a). Blood tests were done to rule out VDRL and HIV status. X-cyton analysis of the anterior chamber aspirate was negative for organisms like Mycobacterial Tuberculosis, Toxoplasma Gondii, Hepes Simplex Virus, Cytomegalovirus and Varicella Zoster Virus. After analysis of the reports diagnosis of post typhoid retinitis in both eyes was made. Patient was started on oral prednisolone 1 mg/kg body weight which was tapered over 2 months along with monitoring of systemic and ocular health. Patient came for follow up every 2 weeks for 3 months. Every visit fundus photo was documented. After 2 months of initiating treatment there was an improvement in the BCVA in right eye to 6/6 which was maintained on further visits. Fundus examination revealed resolving lesions in both eyes (Fig. 3a, b) and OCT of the right eye showed resolution of the serous detachment (Fig. 2b).

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    a Fundus photo of right eye with white fluffy lesions suggestive of retinitis in the superior and inferior temporal arcades with macular star. b Fundus photo of left eye with white fluffy retinitis lesions in the superior temporal arcade

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    a Pre treatment OCT of right eye suggestive of macular edema. b A normal OCT photo of right eye post treatment

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    a Post treatment fundus photo of right eye showing resolved retinitis lesions with few dispersed hard exudates. b Post treatment fundus photo of left eye with resolved retinitis lesions

    Retinitis is characterized by confluent areas of retinal whitening which progresses along the retinal blood vessels, often associated with intraretinal hemorrhages and hard exudates. A significant number of retinitis cases are thought to be idiopathic in etiology but a small proportion of cases are infectious in etiology such as Toxoplasma gondii (toxoplasmosis), Leptospira spp. (leptospirosis), Mycobacterium tuberculosis (tuberculosis) and other viral and fungal etiologies []. Non infectious causes of retinitis include sarcoidosis, Behcet’s disease. Infectious causes are usually unilateral and may be associated with mild vitritis. Patients can present with Neuroretinitis like picture with optic disc edema and macular hard exudates []. The macular star becomes prominent over first 3 weeks with neuroretinitis resolving over 6–8 weeks []. Leakage from the optic nerve head can lead to retinal swelling, exudation and edema, whereas retinal venous occlusion due to vasculitis results in intraretinal haemorrhage, cotton wool spots and retinal and optic nerve head edema []. It was postulated that microbial pathogens may be responsible for immune mediated ocular and systemic pathology through postinfectious immunological effects. These may be due to molecular mimicry eliciting an immune response that cross react with self antigens. Even though active infection is an unusual cause of retinal vasculitis, it is possible that many idiopathic and systemic disease associated cases are precipitated by previous encounters with microbes bearing DNA sequence homologous to retinal and vascular autoantigens. Similarity between S-antigen and peptides derived from yeast, E. coli, and Hepatitis B virus was found and there was an ability of these microbial peptides to elicit an immune response post infection []. Immune mediated retinitis is a clinical diagnosis most often when there is past history of infection few weeks or days prior to the onset of ocular manifestations. In this case, treatment with oral steroids was initiated due to inflammation of the retina, especially the macula which caused decrease in vision. By taking into consideration the time of onset of ocular presentation, previous history of typhoid fever and the response to oral steroids; the most likely diagnosis was post typhoid fever immune mediated retinitis with macular neurosensory detachment in the right eye and retinitis in left eye. In our case as the disc edema was not prominent, neuroretinitis was not considered as the diagnosis. Similar case reports by Relhan et al. [] and Laul et al. [] showed immune mediated response post typhoid fever presenting with neuroretinitis, vasculitis and macular detachment. Successful treatment with steroids was seen in them. Fusco et al. [] reported a case of bilateral chorioretinitis and stellate maculopathy post typhoid fever. However, in our case Xcyton analysis was done to rule out possible infectious retinitis before initiating steroid therapy, as it could exacerbate non immune mediated retinitis. Xcyton multiplex PCR analysis even though has the advantage of increasing the diagnostic yield it has certain disadvantages like false positive and negative results due to cross reactivity and preferential amplification, negative internal control if there is high amount of a particular target causing exhaustion of reagents and high cost.

    Conclusion

    Immune mediated retinitis can occur following systemic infection and can be managed with steroids followed by good resolution of the lesions. PCR analysis of the aqueous is a rapid diagnostic tool wherein multiple organisms can be detected and sight threatening bacterial and viral infections can be ruled out before initiation of steroid therapy.

    Authors’ contributions

    PM carried out AC tap for Xcyton analysis, did the manuscript editing and review, TT did the data acquisition, literature search and manuscript preparation, GG did the data acquisition and analysis and manuscript review, SA did the data acquisition and analysis. All authors read and approved the final manuscript.

    Acknowledgements

    None.

    Competing interests

    The authors declare that they have no competing interests.

    Contributor Information

    M. Prabhushanker, moc.liamg@reknahsuhbarprd.

    Tasneem T. Topiwalla, moc.liamg@spotsat.

    Geetha Ganesan, moc.liamg@nasenageeg.

    Sripal Appandaraj, moc.liamg@rd.lapirs.

    References

    1. Pegeus DA, Miller SI. Salmonellosis. In: Fauci AS, Braunwald E, Isselbacher KJ, Wilson JD, Martin JB, Kasper DL, editors. Harrison’s principles of internal medicine. 18. New York: McGraw Hill; 2012. pp. 1274–1285. []
    2. Curtis TH, Whealer DT. Infectious diseases. In: Roy FH, Fraunfelder FW, Fraunfelder FT, editors. Current ocular therapy. 6. London: Elsevier Saunders; 2008. pp. 92–94. []
    3. Jacobs DA, Guercio JR, Balcer LJ. Inflammatory optic neuropathies and neuroretinitis. In: Yanoff M, Duker JS, editors. Ophthalmology. 4. London: Elsevier Saunders; 2014. pp. 879–883. []
    4. Houghton OM, Brown GC, Brown MM. Coexistent optic nerve and macular abnormalities. In: Yanoff M, Duker JS, editors. Ophthalmology. 4. London: Elsevier Saunders; 2014. pp. 632–637. []
    5. Hughes EH, Dick AD. The pathology and pathogenesis of retinal vasculitis. Neuropathol Appl Neurobiol. 2003;29:325–340. doi: 10.1046/j.1365-2990.2003.00499.x. [PubMed] [CrossRef[]
    6. Relhan N, Pathengay A, Albini T, Priya K, Jalali S, Flynn HW, et al. A case of vasculitis, retinitis and macular neurosensory detachment presenting post typhoid fever. J Ophthalmic Inflamm Infect. 2014;4:23. doi: 10.1186/s12348-014-0023-y. [PMC free article] [PubMed] [CrossRef[]
    7. Laul R, Atif Ali MIR, Shafi S. Typhoid aftermath: presenting as vasculitis, neuroretinitis and macular neurosensory detachment. Int J Med Res Health Sci. 2015;4:737–739. doi: 10.5958/2319-5886.2015.00143.5. [CrossRef[]
    8. Fusco R, Magli A, Guacci P. Stellate maculopathy due to Salmonella typhiOphthalmologica. 1986;192:154–158. doi: 10.1159/000309629. [PubMed] [CrossRef[
  • EYE EXAM CAN BE USED TO DIAGNOSE CEREBRAL MALARIA

    Cerebral malaria can be diagnosed by a simple eye examination, a method that is both quick and cheap and could save thousands of lives in malarial regions, a new study shows.

    Diagnosing cerebral malaria — a severe complication of malaria in which the Plasmodium falciparum parasite infects capillaries that flow through the tissues of the brain — can be difficult, as patients can be unconscious and have a number of other illnesses.

    Now researchers have found that certain changes on the retina, the light sensitive tissue at the back of the eye, are unique to severe forms of malaria.

    This will enable doctors to determine whether a child is suffering from cerebral malaria or some other, unrelated illness, and prescribe immediate treatment accordingly.

    The findings are published this week (6 November) in the American Journal of Tropical Medicine and Hygiene.

    The team led by Nick Beare of the UK-based Royal Liverpool University Hospital analysed the retinas of 45 children admitted to hospital in Blantyre, Malawi with cerebral malaria.

    They found that white opaque patches and whitened blood vessels on the retina were unique signs of cerebral malaria. Other signs include bleeding of the retina and swelling of the optic nerve.

    The diagnosis only requires an instrument called an ophthalmoscope, which is commonly used in Africa for studying eye disease.

    “Diagnosis requires special training in eye examination, but is relatively straightforward and cost effective, which is essential in resource-poor settings such as Africa,” says Beare.

    His team suggests that the malaria parasites stick to the linings of the small blood vessels in the brain and eyes where they disrupt oxygen and nutrients supply, causing the unique whitening of blood vessels in the eye.

    Richard Idro of the Kenya Medical Research Institute says that the specific nature of the changes in the eye makes them useful for differentiating between coma due to malaria and coma from other causes.

    A multi-centre evaluation of the findings will be undertaken by researchers in Gabon, the Gambia, Ghana and Kenya. “If they prove useful, doctors will need to be trained in the recognition of these signs,” says Idro.

    Willis Akhwale, head of the department of malaria control at Kenya’s Ministry of Heath, welcomed the study, but cautioned that it is vital to test the methodology to ensure that correct diagnosis is made so that malaria drugs are not prescribed for other illnesses.

     

  • Our coverage by states

    Eyeupdate clinic & optical supplies provides eye check, prescription eye glasses, eye treatment, contact lenses and general eye care.

    Residents of these states can have their eyes examined at 01, Ajuwon junction beside M.R.S. filling station:

    Lagos
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    We provide excellent eye care services for you, your family and corporate bodies.

    You can also get night driving glasses, antiglare lenses, medicated lenses and medicated contact lenses for different conditions.

    Those who have cataracts, glaucoma, retinal diseases, low vision and all sorts of eye diseases will get their eyes examined and treated at our location, 01, Ajuwon junction, Ajuwon.

    Contact us on telephone: 08107531046, 07030000001 or email us on eyeupdate@consultant.com

  • Importance of regular eye check

    Why are eye tests important?

    Regular eye tests are important because your eyes don’t usually hurt when something is wrong. A sight test is a vital health check for your eyes that can pick up early signs of eye conditions before you’re aware of any symptoms – many of which can be treated if found early enough.
    What your eye test will show
    A sight test will show if you need to:
    get glasses for the first time
    change your current glasses
    A sight test will also include a general health check that can pick up early signs of eye disease before you’re aware of any symptoms. Some health conditions can affect the eyes such as:
    diabetes
    macular degeneration
    glaucoma
    Your sight test
    Optometrists recommend that most people should get their eyes tested every two years. However, in some circumstances, they may recommend more frequent NHS sight tests; for example, if you:
    are a child wearing glasses
    have diabetes
    are aged 40 or over and have a family history of
    glaucoma
    are aged 70 or over
    The way a sight test is carried out is governed by law. A sight test will identify:
    what your level of vision is
    whether you need glasses to correct your sight
    Your eyes and the area around them will be examined, to look for signs of injury, disease or abnormality.
    During your appointment, you may see more than one practitioner, for example:
    an optometrist or ophthalmic medical practitioner, who tests your sight to check the quality of your vision and your eye health
    a dispensing optician, who fits your glasses
    If you already wear glasses or contact lenses, remember to take them with you to your sight test. You may be asked to wear them during the test.
    What happens after a sight test?
    At the end of your sight test, your ophthalmic practitioner will discuss the results with you. They will tell you whether:
    your sight needs correcting
    you need to be referred for further investigation
    They will also give you an optical statement or prescription to say that:
    you don’t need glasses
    your current glasses don’t need changing
    you have been given a new or changed prescription
    you are being referred to your GP or an eye clinic
    You can take your new or changed prescription to any supplier to have your glasses made up.
    If you’re entitled to an NHS optical voucher, this will also be given to you after your NHS sight test. You can also take your voucher to any supplier to buy glasses or contact lenses, providing they accept optical vouchers. For more information, see
    Am I entitled to an NHS optical voucher?
    Children under 16 and individuals who are registered blind or partially sighted can only have their appliances dispensed by or under the supervision of a registered medical practitioner, registered optometrist or registered dispensing optician.