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  1. Khoo CL, Teoh S, Rashid AK, Zakaria UU, Mansor S, Salleh FN, et al.
    Asian Pac J Cancer Prev, 2011;12(6):1429-33.
    PMID: 22126476
    INTRODUCTION: As the second most common cancer in women worldwide, cervical cancer causes major health and economic burdens. Recent introduction of HPV immunization program locally has been encouraging but vaccine uptake remains poor. In addition, no study has been conducted to explore the people' s awareness and knowledge on cervical cancer, HPV and its vaccine in a rural setting in Malaysia after the inception of the HPV vaccination program.
    OBJECTIVE: This study was conducted to determine the awareness of cervical cancer, HPV vaccination and its affordability among people in a rural area in Malaysia.

    METHOD: A cross-sectional study was conducted among 116 participants in a village in Penang. All consenting female villagers aged 13 years and above, and males who were married were interviewed using a questionnaire.
    RESULTS: Most participants (88.8%) had heard of cervical cancer, however only 29.3% and 42.2% of them had heard of HPV and HPV vaccination respectively. Only 5.2% knew the actual market price for the vaccine. They were willing to pay an average of RM 96.7 (USD $27.7) for the full course of vaccination if it is not given to them for free, whereas the market price is RM1200 (USD $342.85).
    CONCLUSION: Awareness among the Malaysian population in a rural setting on HPV and HPV vaccination is low. Educating the public on the infection can help control the illness. Cost of the HPV vaccine is a serious barrier to the success of the vaccination program in Malaysia.
  2. Mydin MAO, Abdullah MMAB, Mohd Nawi MN, Yahya Z, Sofri LA, Baltatu MS, et al.
    Materials (Basel), 2022 Dec 15;15(24).
    PMID: 36556790 DOI: 10.3390/ma15248984
    Foamed concrete is considered a green building material, which is porous in nature. As a result, it poses benefits such as being light in self-weight, and also has excellent thermal insulation properties, environmental safeguards, good fire resistance performance, and low cost. Nevertheless, foamed concrete has several disadvantages such as low strength, a large amount of entrained air, poor toughness, and being a brittle material, all of which has restricted its usage in engineering and building construction. Hence, this study intends to assess the potential utilization of polypropylene fibrillated fiber (PFF) in foamed concrete to enhance its engineering properties. A total of 10 mixes of 600 and 1200 kg/m3 densities were produced by the insertion of four varying percentages of PFF (1%, 2%, 3%, and 4%). The properties assessed were splitting tensile, compressive and flexural strengths, workability, porosity, water absorption, and density. Furthermore, the correlations between the properties considered were also evaluated. The outcomes reveal that the foamed concrete mix with 4% PFF attained the highest porosity, with approximately 13.9% and 15.9% for 600 and 1200 kg/m3 densities in comparison to the control specimen. Besides, the mechanical properties (splitting tensile, compressive and flexural strengths) increased steadily with the increase in the PFF percentages up to the optimum level of 3%. Beyond 3%, the strengths reduced significantly due to poor PFF dispersal in the matrix, leading to a balling effect which causes a degraded impact of scattering the stress from the foamed concrete vicinity to another area of the PFF surface. This exploratory investigation will result in a greater comprehension of the possible applications of PFF in LFC. It is crucial to promote the sustainable development and implementation of LFC materials and infrastructures.
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