Abstract:
An elasticity measurement apparatus includes a lower layer structure having first and second openings, first and second deformable membranes covering the first and second openings to define first and second chamber and deformable by pressure within the first and second chambers respectively, a support layer structure on the lower layer structure to protrude and configured to support the first and second deformable membranes to be spaced apart from the elastic body, a driving portion to apply pressure within the first and second chambers to deform the first and second deformable membranes, and first and second deformation detecting portions to detect deformations of first and second deformable membranes. When the pressure within the first and second chambers is increased from a first pressure to a second pressure, the first deformable membrane is deformed with contacting the elastic body, while the second deformable membrane is deformed without contacting the elastic body.
Abstract:
A particle arranging device includes a chamber including a first input/output portion and a second input/output portion and providing a space through which a fluid containing particles flows, at least one capturing structure provided in the chamber to form a fluidic channel through which the fluid flows and having a gate portion adapted to allow the particle in the fluid to enter the capturing structure through the gate portion and a receiving portion adapted to receive the particle entering through the gate portion, a deformable membrane structure provided in the gate portion of the capturing structure and configured to actuate to control the number of the particles to enter the capturing structure through the gate portion, and a membrane control portion configured to apply a pressure to the deformable membrane structure.
Abstract:
A cell fusion device includes a chamber including a first input/output portion and a second input/output portion and providing a space through a fluid containing cells flows, at least one cell fusion structure provided in the chamber to form a fluidic channel through which the fluid flows and having a capturing portion adapted to capture the cell in the fluid and a fusion portion connected to the capturing portion and provide a space for fusing at least two cells trapped by the capturing portion and moved into the fusion portion in orders, a deformable membrane structure provided in the capturing portion of the cell fusion structure and configured to actuate to change a cross-sectional area of the fluidic channel of the capturing portion and to selectively capture the cell, and a membrane control portion configured to apply a pressure to the deformable membrane structure.
Abstract:
A surface shape measuring device includes a substrate, an electrode portion including at least one electrode pattern, the electrode pattern extending on the substrate, a coating layer on the substrate to cover the electrode pattern, and a detector electrically connected to the electrode pattern and detecting a change in a physical quantity of the electrode pattern generated by the deformation of the substrate or the coating layer by an external load applied thereto.
Abstract:
A separation container includes a separation tube receiving a sample therein, a first sedimentation part connected to an end portion of the tube, a particle in the sample being deposited by a centrifugal or agitating force, and a separating part provided in the tube and including at least one separating layer which selectively opens and closes the tube.
Abstract:
A separation container includes a separation tube receiving a sample therein, a first sedimentation part connected to an end portion of the tube, a particle in the sample being deposited by a centrifugal or agitating force, and a separating part provided in the tube and including at least one separating layer which selectively opens and closes the tube.
Abstract:
A particle processing device includes a fluid flow path, a multi-filtering portion and a fluid transferring portion. A fluid having particles flows through the fluid flow path. The multi-filtering portion is installed in the fluid flow path. The multi-filtering portion includes at least two membrane structures. The membrane structures have different shaped openings for passing the fluid therethrough respectively. The membrane structures are arranged alone or together in the fluid flow path. The fluid transferring portion transfers the fluid forwardly or backwardly through the fluid flow path such that the fluid passes through the multi-filtering portion.
Abstract:
Provided are a device for detecting low-pressure that includes electrodes positioned on a surface of a porous piezoelectric composite layer in which a piezoelectric nanoparticle and a pore are uniformly distributed, and a manufacturing method thereof.
Abstract:
A particle processing device includes a chamber including an input portion and an output portion and providing a space for flowing of a fluid having a particle, at least two deformable membrane structures sequentially arranged in the chamber and controlling a sectional area of a fluid path through which the fluid flows, and at least two membrane control lines respectively applying pressure to the deformable membrane structures.
Abstract:
A particle processing device includes a chamber including an input portion and an output portion and providing a space for flowing of a fluid having a particle, at least two deformable membrane structures sequentially arranged in the chamber and controlling a sectional area of a fluid path through which the fluid flows, and at least two membrane control lines respectively applying pressure to the deformable membrane structures.