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    • 12. 发明申请
    • MICRO-HOTPLATE BASED GAS SENSOR
    • 基于微型HOTPLATE的气体传感器
    • WO2012078023A1
    • 2012-06-14
    • PCT/MY2011/000093
    • 2011-06-14
    • MIMOS BERHADBIEN, Daniel Chia ShengLEE, Hing Wah
    • BIEN, Daniel Chia ShengLEE, Hing Wah
    • G01N27/12
    • G01N27/12G01N27/18
    • The present invention provides a chemo-resistive gas sensor in which consists of two chemo-resistive sensor elements (16, 36) placed on both sides of a micro-hotplate array (26). It is capable of providing lower power consumption compared to existing one-side sensing membrane gas sensor. An embodiment of the invention has the two sensor elements to be of same material to increase the sensitivity of the device. Another embodiment of the invention has two sensor elements of different material to allow different gas to be monitored. The proposed two membranes may be arranged to provide multiple gas solution for remote application and device miniaturization.
    • 本发明提供了一种化学电阻气体传感器,其中包括放置在微电热器阵列(26)两侧的两个化学电阻传感器元件(16,36)。 与现有的单侧感应膜式气体传感器相比,它能够提供更低的功耗。 本发明的一个实施例具有两个传感器元件以相同的材料以增加装置的灵敏度。 本发明的另一个实施例具有不同材料的两个传感器元件,以允许监测不同的气体。 所提出的两个膜可以被布置成提供用于远程应用和装置小型化的多种气体解决方案。
    • 16. 发明申请
    • ANTI-OBESITY AND ANTI-DYSLIPIDEMIC EFFECTS OF OIL PALM PHENOLICS IN PREVENTING ATHEROSCLEROSIS AND CARDIOVASCULAR DISEASE
    • 油棕榈酚在预防甲状腺功能亢进和心血管疾病中的抗生素和抗血小板效应
    • WO2011084046A1
    • 2011-07-14
    • PCT/MY2011/000002
    • 2011-01-07
    • MALAYSIAN PALM OIL BOARDSAMBANTHAMURTHI, RavigadeviTAN, Yew AiP. MANICKAM, Kalyana, SundramWAHID, Mohd, Basri
    • SAMBANTHAMURTHI, RavigadeviTAN, Yew AiP. MANICKAM, Kalyana, SundramWAHID, Mohd, Basri
    • A61K36/889A61P3/06A61K31/05A61P9/10
    • A61K36/889A61K31/05
    • Water-soluble phenolics from the oil palm (Elaeis guineensis) possess significant antioxidant and health-promoting properties. This invention documents the effects of administering oil palm phenolics to mice, with the aim of identifying whether these compounds possess significant anti-obesity or anti-dyslipidemics properties for the prevention of atherosclerosis and cardiovascular disease. We first explored the gene expression changes caused by oil palm phenolics in livers of mice given a low-fat normal diet, in which fatty acid beta oxidation genes were up-regulated while five cholesterol biosynthesis genes were down-regulated. In addition, the weight gain of mice given oil palm palm phenolics was delayed, suggesting that oil palm phenolics may play a role in delaying the onset of obesity. Using Illumina microarrays, we found that the atherogenic diet caused oxidative stress, up-regulated the inflammatory response and increased the turnover of metabolites and cells in the liver, spleen and heart. In contrast, we found that oil palm phenolics showed signs of attenuating the effects of the atherogenic diet in mice. The extract increased unfolded protein response in the liver, while attenuated antigen presentation and processing in the spleen. Oil palm phenolics also increased the expression of antioxidant genes in the heart. A majority of the genes regulated by oil palm phenolics in the different organs showed a difference in direction of regulation when compared to the atherogenic diet.
    • 来自油棕(Elaeis guineensis)的水溶性酚类具有显着的抗氧化和促进健康的性质。 本发明记录了给予棕榈油酚醛树脂对小鼠的作用,目的是鉴定这些化合物是否具有显着的抗肥胖症或抗血脂异常特性以预防动脉粥样硬化和心血管疾病。 我们首先探讨了脂肪酸β氧化基因在脂肪酸β氧化基因上调,而五种胆固醇生物合成基因下调的小鼠肝脏中油棕酚类物质引起的基因表达变化。 此外,给予油棕榈酚酚的小鼠的体重增加被延迟,这表明油棕榈酚可能在延缓肥胖发作中起作用。 使用Illumina微阵列,我们发现致动脉粥样化饮食导致氧化应激,上调了炎症反应,增加了肝脏,脾脏和心脏中代谢物和细胞的周转。 相比之下,我们发现油棕酚酚酸显示出减弱动脉粥样硬化饮食对小鼠的影响的迹象。 提取物增加了肝脏中未折叠的蛋白质反应,同时减弱了脾脏中的抗原呈递和加工。 油棕榈酚类也增加了抗氧化基因在心脏中的表达。 与致动脉粥样化饮食相比,不同器官中油棕榈酚调节的大多数基因显示出调节方向的差异。
    • 18. 发明申请
    • TEST APPARATUS WITH ELECTROSTATIC DISCHARGE CAPABILITY
    • 具有静电放电能力的测试装置
    • WO2010143932A1
    • 2010-12-16
    • PCT/MY2009/000072
    • 2009-06-10
    • KOW, Kek Hing
    • KOW, Kek Hing
    • G01R29/12G01R31/12G02B27/00
    • G01R31/2886G01R1/06711G01R1/06722G01R1/18G01R31/2808
    • A test apparatus for eliminating electrostatic discharge (microspark) damage while testing a module (10), said test apparatus comprises a socket holder (12) positioned relative to said module (10) at a test point (conductor) (11) of said module (10) to be tested, and at least one test member (14) partially positioned within said socket holder (12) for electrically engaging said test point (11) when said test point and test member (14) are brought together, said test member (14) includes a static dissipative rod (15) slidably engaging into a hollow cylindrical test pin (16) and a biasing means (17) for biasing said static dissipative rod (15) protruded substantially from the tip of said hollow cylindrical test pin (16).
    • 一种用于在测试模块(10)时消除静电放电(微小鼠)损坏的测试装置,所述测试装置包括在所述模块的测试点(导体)(11)处相对于所述模块(10)定位的插座保持器(12) (10)和至少一个部分地位于所述插座保持器(12)内的测试构件(14),用于当所述测试点和测试构件(14)合在一起时用于电接合所述测试点(11),所述测试 构件(14)包括可滑动地接合到中空圆柱形测试销(16)中的静电耗散杆(15)和用于偏压所述静电耗散杆(15)的偏压装置(17),所述静电耗散杆(15)基本上从所述中空圆柱形测试销 (16)。
    • 20. 发明申请
    • AN ELECTROSTATIC DISSIPATIVE SHOE ASSEMBLY
    • 静电消毒鞋组件
    • WO2010101452A1
    • 2010-09-10
    • PCT/MY2009/000045
    • 2009-03-03
    • KOW Kek Hing
    • KOW Kek Hing
    • A43B7/36A43B3/16A43B7/00
    • A43B7/36A43B3/163A43B17/00
    • An electrostatic dissipative shoe assembly (10) comprises a conductive strip (13) adhered on the surface of an inner sole (24) at the rear foot region (21) of a shoe (14) and extends toward she base of the internal wall at the farthest end of the back portion of the shoe (14), moves up along the surface of the internal wall, reaching the top of the wall, travels down along the external wall surface and stops at a point just above the bottom shoe sole and a conductive path (15) starting at the bottom of the shoe cover (16) travels underside along forefoot to the rear foot region and continues further until it moves upwards and reaches the stretchable opening rim of the shoe cover (16) so as to form a continual electrical path between the shoe (14) and shoe cover (16) when the shoe cover (16) is worn to the shoe (14) of the wearer (18) to conduct static electricity from the wearer (18) to the floor (19).
    • 静电耗散靴组件(10)包括粘附在鞋底(14)的后脚部区域(21)的内底(24)的表面上的导电条(13),并且朝着内壁的底部延伸 鞋子(14)的后部的最远端沿着内壁的表面向上移动,到达壁的顶部,沿着外壁表面向下移动并且停止在刚好在底部鞋底上方的位置处,并且 从鞋底(16)的底部开始的导电路径(15)沿着前脚向下移动到后脚部区域,并且继续进一步直到其向上移动并到达鞋套(16)的可拉伸开口边缘,以便形成 当鞋套(16)佩戴在穿着者(18)的鞋子(14)上时,靴子(14)和鞋套(16)之间的连续电气路径,以将静电从佩戴者(18)传导到地板 (19)。