Displaying publications 21 - 24 of 24 in total

Abstract:
Sort:
  1. Chan PW
    Singapore Med J, 2002 Mar;43(3):124-7.
    PMID: 12005337
    To determine the risk factors associated with severe viral croup in hospitalised Malaysian children.
    Matched MeSH terms: Virus Diseases/epidemiology
  2. Caplan CE
    CMAJ, 1999 Jun 1;160(11):1607.
    PMID: 10374006
    Matched MeSH terms: Virus Diseases/epidemiology
  3. Arokiasamy JT
    Med J Malaysia, 1996 Mar;51(1):4-11.
    PMID: 10967972
    Microbial diseases continue to occur in Malaysia despite the marked socio-economic development that has been taking place in the country along with improvements in the medical, health, and environmental sectors. This paper highlights the continuing presence of the numerous microbial diseases including the emergence of new problems such as AIDS. Local publications dealing with work on several microbial diseases is reviewed to show that this group of diseases will pose challenges for a long while. Undoubtedly several other diseases that were relatively unrecognised in the past are increasingly being identified owing to recent availability of diagnostic facilities and equipments. The need for continued vigilance is emphasised.
    Matched MeSH terms: Virus Diseases/epidemiology*
  4. Kilbourn AM, Karesh WB, Wolfe ND, Bosi EJ, Cook RA, Andau M
    J. Wildl. Dis., 2003 Jan;39(1):73-83.
    PMID: 12685070
    Baseline data on health of free-ranging wildlife is essential to evaluate impacts of habitat transformation and wildlife translocation, rehabilitation, and reintroduction programs. Health information on many species, especially great apes, is extremely limited. Between 1996 and 1998, 84 free-ranging orangutans captured for translocation, underwent a complete health evaluation. Analogous data were gathered from 60 semi-captive orangutans in Malaysia. Baseline hematology and serology; vitamin, mineral and pesticide levels; and results of health evaluations, including physical examination, provide a baseline for future monitoring. Free-ranging and semi-captive orangutans shared exposure to 11 of 47 viruses. The semi-captive orangutans had significantly higher prevalence of antibodies to adenovirus (P < 0.0005) and rota (SA 11) virus (P < 0.008). More free-ranging than semi-captive animals had antibodies to Japanese encephalitis virus (P < 0.08) and foamy virus (P = 0.05). Exposure to parainfluenza and langat viruses was detected exclusively in semi-captive animals and exposure to sinbis virus was only found in free-ranging orangutans. There was evidence of exposure to respiratory syncytial virus, coxsackie virus, dengue virus, and zika virus in both groups. Ebstein-Barr virus was ubiquitous in both groups. Prevalence of antibodies against mumps virus changed from 0% in 1996 to 45% in 1998. No antibodies were detected to many important zoonotic viral pathogens, including herpesvirus and hepatitis virus. Prevalence of Balantidium coli and Plasmodium pitheci infections and exposure to mycobacterium was higher in the semi-captive animals. Differences in exposure to pathogens between the groups may be due to environmental factors including differences in exposures to other species, habitat quality, nutritional status, and other potential stressors. Differences in health parameters between captive and free-ranging orangutans need to be considered when planning conservation areas, translocation procedures, and rehabilitation protocols. Because survival of the orangutan is linked to animal and ecosystem health, results of this study will assist wildlife conservation programs by providing baseline health information.
    Matched MeSH terms: Virus Diseases/epidemiology
Filters
Contact Us

Please provide feedback to Administrator (afdal@afpm.org.my)

External Links