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  1. Baba S
    Diabetes Res Clin Pract, 1994 Oct;24 Suppl:S325-9.
    PMID: 7859629 DOI: 10.1016/0168-8227(94)90271-2
    International Diabetes Federation (IDF) is one of the biggest non-governmental organizations with its 44-year history since 1950. In 1993, 114 diabetes associations in 96 countries participated in the IDF. In 1982, it was decided to divide the globe into seven regions and to promote the diagnosis, treatment, care and education of diabetes based on the environment, natural features, culture and race of the each region. On January 24, 1984, the IDF-WPR establishment meeting was held in Melbourne, Australia, with eight original member countries (Australia, New Zealand, Korea, The Philippines, Malaysia, Singapore, Fiji and Japan). In 1993, 13 diabetes associations in 12 countries joined the IDF-WPR. New member associations are from China (Beijing and Taipei), Hong Kong, Papua New Guinea and Indonesia. The IDF-WPR has been holding congresses and council meetings every 3 or 4 years since 1984 as well as formulating strategic action plans in the scientific, clinical, health care and education fields of diabetes.
  2. Wan Mohd Shukri WN, Bakhtiar H, Islam S, Bidin N, Baba S, Hamdan S, et al.
    Biomed Environ Sci, 2021 Feb 20;34(2):119-123.
    PMID: 33685570 DOI: 10.3967/bes2021.017
  3. Sulaiman W, Abdullah AC, Tan JTC, Baba S, Karim N
    Cureus, 2017 Oct 25;9(10):e1802.
    PMID: 29282446 DOI: 10.7759/cureus.1802
    It is often a challenge and a dilemma for clinicians encountering patients with pyrexia of unknown origin. Numerous tests performed to determine the underlying cause often give inconclusive results. We present a 52-year-old man with undulating fever for more than 10 months with persistent hyperferritinaemia, and negative immunological and serological markers. Despite corticosteroids, disease modifying anti-rheumatic agents and immune-modulator therapy, he succumbed to the illness. A diagnosis of refractory Adult onset Still's disease complicated by haemophagocytic lymphohistiocytosis was made.
  4. Wee AK, Takayama K, Chua JL, Asakawa T, Meenakshisundaram SH, Onrizal, et al.
    BMC Evol. Biol., 2015 Mar 29;15:57.
    PMID: 25888261 DOI: 10.1186/s12862-015-0331-3
    BACKGROUND: Mangrove forests are ecologically important but globally threatened intertidal plant communities. Effective mangrove conservation requires the determination of species identity, management units, and genetic structure. Here, we investigate the genetic distinctiveness and genetic structure of an iconic but yet taxonomically confusing species complex Rhizophora mucronata and R. stylosa across their distributional range, by employing a suite of 20 informative nuclear SSR markers.

    RESULTS: Our results demonstrated the general genetic distinctiveness of R. mucronata and R. stylosa, and potential hybridization or introgression between them. We investigated the population genetics of each species without the putative hybrids, and found strong genetic structure between oceanic regions in both R. mucronata and R. stylosa. In R. mucronata, a strong divergence was detected between populations from the Indian Ocean region (Indian Ocean and Andaman Sea) and the Pacific Ocean region (Malacca Strait, South China Sea and Northwest Pacific Ocean). In R. stylosa, the genetic break was located more eastward, between populations from South and East China Sea and populations from the Southwest Pacific Ocean. The location of these genetic breaks coincided with the boundaries of oceanic currents, thus suggesting that oceanic circulation patterns might have acted as a cryptic barrier to gene flow.

    CONCLUSIONS: Our findings have important implications on the conservation of mangroves, especially relating to replanting efforts and the definition of evolutionary significant units in Rhizophora species. We outlined the genetic structure and identified geographical areas that require further investigations for both R. mucronata and R. stylosa. These results serve as the foundation for the conservation genetics of R. mucronata and R. stylosa and highlighted the need to recognize the genetic distinctiveness of closely-related species, determine their respective genetic structure, and avoid artificially promoting hybridization in mangrove restoration programmes.

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