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Iwashiro
Hironobu Iwashiro, Kanagawa JP
| Patent application number | Description | Published |
|---|---|---|
| 20110281351 | PROCESS FOR PRODUCING LAMINATED HIGH-DENSITY CULTURED ARTIFICIAL TISSUE, AND LAMINATED HIGH-DENSITY CULTURED ARTIFICIAL TISSUE - Disclosed is a process for producing an artificial tissue, which comprises a step of providing a liquid flow control member and a mesh member in a flow path through which a cell culture liquid comprising at least one type of animal cells, a collagen-binding cell growth factor and an extracellular matrix component is circulated and cultured to accumulate the extracellular matrix molecule and the animal cells on the surface of the liquid flow control member at a high density, thereby forming a high-density cultured tissue, wherein the liquid flow control member and the mesh member are so arranged in the flow path that these members are in contact with each other or in proximity to each other, and wherein the mesh member is arranged on the back side of the liquid flow control member relative to the direction of the liquid flow. Also disclosed is an artificial tissue produced by the process. | 11-17-2011 |
Hiroshi Iwashiro, Chiba JP
| Patent application number | Description | Published |
|---|---|---|
| 20090322959 | DIGITAL BROADCAST RECEIVER - Reservation information is acquired (S | 12-31-2009 |
Kuniaki Iwashiro, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20100074296 | SOLID STATE LASER AND WAVELENGTH CONVERSION LASER - Two convex lenses ( | 03-25-2010 |
Masafumi Iwashiro, Ome-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20090316294 | HEAD POSITIONING CONTROL METHOD, MAGNETIC DISK APPARATUS AND FEEDBACK CONTROL METHOD - According to one embodiment, a head positioning control method comprises suppressing a first frequency component and increasing a second frequency component of a control signal for moving a head to a desired position over a magnetic disk, and moving the head to the desired position over the magnetic disk by an actuator based on the control signal. | 12-24-2009 |
Masafumi Iwashiro, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20110310506 | MAGNETIC DISK DEVICE AND HEAD POSITION CONTROL METHOD - According to one embodiment, a magnetic disk device includes a magnetic disk, a magnetic head, a position error signal output module, a vibration pattern detector, an adder, and a head positioning controller. The magnetic head moves over the magnetic disk. The position error signal output module outputs a position error signal based on a difference between a head position of the magnetic head over the magnetic disk and a target position on the magnetic disk. The vibration pattern detector detects a vibration pattern of the magnetic head caused by vibration. The adder adds the position error signal to an offset signal indicating amplitude of the vibration pattern. The head positioning controller moves the head position to the target position based on a result of addition by the adder. | 12-22-2011 |
Tarou Iwashiro, Yokohama-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20100241791 | CONTROLLER WHICH CONTROLS OPERATION OF NONVOLATILE SEMICONDUCTOR MEMORY AND SEMICONDUCTOR MEMORY DEVICE INCLUDING NONVOLATILE SEMICONDUCTOR MEMORY AND CONTROLLER THEREFORE - A controller includes an instruction table memory, a program counter, a first decoder, and a first executing unit. The instruction table memory stores an instruction code obtained by coding a sequence to access a nonvolatile semiconductor memory. A read address in the instruction table memory is set to the program counter. The first decoder decodes the instruction code read from the instruction table memory to output a first decode signal. The first executing unit executes access to the nonvolatile semiconductor memory on the basis of the first decode signal output from the first decoder. | 09-23-2010 |
| 20110296235 | MEMORY DEVICE - According to one embodiment, a memory device includes a semiconductor memory and a controller that controls the semiconductor memory. The controller includes a first command issuing module, second command issuing module, error correction module and control module. The first command issuing module is configured to issue a read command to the semiconductor memory. The second command issuing module is configured to issue a first command instructing a process that does not involve reading data from the semiconductor memory independently from the first command issuing module to the semiconductor memory. The error correction module is configured to correct an error contained in data supplied from the semiconductor memory. The control module is configured to control the error correction module, first command issuing module and second command issuing module. | 12-01-2011 |
