Po-Liang
Po-Liang Chen, Taipei County TW
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20100128275 | LOCALIZED SURFACE PLASMON RESONANCE SENSING SYSTEM, APPARTATUS, METHOD THEREOF - A sensing system comprises a light source, an optical fiber, a plurality of noble metal nano-particles, a micro-fluidic module and a photo detector. The optical fiber couples an incident light. The plurality of noble metal nano-particles are disposed on a surface of the optical fiber to form a noble metal nano-particle submonolayer, the noble metal nano-particles are substantially separated from each adjacent noble metal nano-particles such that the conductivity of the noble metal nano-particle submonolayer is smaller than that of a metal film. The micro-fluidic module accommodates the optical fiber and a sample, and the sample is driven to contact with the noble metal nano-particles. The photo detector detects an emergent light from the optical fiber. When the incident light interacts with the noble metal nano-particles, a signal derived from localized surface plasmon resonance in form of attenuated light or elastic scattered light is outputted through the photo detector. | 05-27-2010 |
Po-Liang Chen, Taipei City TW
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20140341973 | MICRON TAIWANOFUNGUS CAMPHORATUS LIPOSOME STRUCTURE - A micron Taiwanofungus camphoratus liposome structure which includes a first and a second liposome shell is provided. The external radius of the first liposome shell is smaller than the internal radius of the second liposome shell, and the second liposome shell encloses the first liposome shell. A first space is defined inside of the first liposome shell, and a second space is defined between the inside surface of the second liposome shell and the outside surface of the first liposome shell. A plurality of cup-shaped structures is formed on the outside surface of the second liposome shell. Each cup-shaped structure is consisted of algae sugar and beta-cyclodextrin. The first space and the second space are for containing a first and a second active substance respectively. The Taiwanofungus camphoratus liposome structure contains active substances with different effects, such that the storage and transportation of multi-active substances is improved. | 11-20-2014 |
Po-Liang Lai, Changhua City TW
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20090247666 | BIODEGRADABLE COPOLYMER AND THERMOSENSITIVE MATERIAL - The disclosed is a biodegradable copolymer, an amphiphilic diblock copolymer, composed of a hydrophilic segment and a hydrophobic segment. The hydrophilic segment is an endcapped PEG or derivatives thereof. The hydrophilic segment is a random polymer polymerized of lactone or cyclic C | 10-01-2009 |
20110065829 | BIODEGRADABLE COPOLYMER AND THERMOSENSITIVE MATERIAL - The disclosed is a biodegradable copolymer, an amphiphilic diblock copolymer, composed of a hydrophilic segment and a hydrophobic segment. The hydrophilic segment is an endcapped PEG or derivatives thereof. The hydrophilic segment is a random polymer polymerized of lactone or cyclic C | 03-17-2011 |
20120010139 | THERMAL RESPONSIVE COMPOSITION FOR TREATING BONE DISEASES - Thermal responsive compositions for treating bone diseases are provided. The thermal responsive composition for treating bone diseases includes a bone growth factor and a biodegradable copolymer. The biodegradable copolymer has a structure of Formula (I) or Formula (II): | 01-12-2012 |
Po-Liang Lee, Chi-Lung TW
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20100125252 | SAFETY SYRINGE - A safety syringe includes an outer barrel, a needle unit, an outer barrel plug, an inner barrel, an inner barrel plug, a needle clamper, and a vacuum generating device. The needle unit is disposed within the front end of the outer barrel. The outer barrel plug is disposed within the outer barrel; the outer barrel plug is connected with the needle unit so as to fix the needle unit. The inner barrel plug is disposed within the front end of the inner barrel. The needle clamper is connected with the inner barrel plug. The needle clamper is able to clamp a rear opening of the needle unit. The vacuum generating device is disposed within the inner barrel, and the needle unit can be retracted into the inner barrel by the low pressure which is generated by the vacuum generating device. | 05-20-2010 |