The present invention relates to an electronic blood pressure monitor and a data display method in the electronic blood pressure monitor, and more particularly to an electronic blood pressure monitor retrieving measurement result data obtained as a result of measurement at a desired time out of a large amount of data of blood pressure measurement results that have been stored and displaying the retrieved data, and a data display method in the electronic blood pressure monitor.
Lifestyle-related diseases due to high blood pressure have been common in recent years, and a blood pressure value is used as an index for health care and management. Blood pressure management is important, and measurement of blood pressure is conducted for that purpose. The conventional techniques are as follows.
Registered Japanese Utility Model No. 3020497 shows a digital automatic-storage-type blood pressure monitor that includes a recall button of a push-button control circuit and is capable of recalling data of previous several measurements of a subject. In addition, Japanese Patent Laying-Open No. 4-221528 shows an apparatus having a function to identify a blood pressure value, identification data, and a time and day of measurement and to select and display only a blood pressure value provided with the same identification data, as well as a function to display a trend graph in accordance with a measurement status.
According to the configurations disclosed in Registered Japanese Utility Model No. 3020497 and Japanese Patent Laying-Open No. 4-221528 above, a memory of a large capacity is provided to store a large amount of measurement data therein, so that data sufficient for blood pressure management can be prepared in the memory. In order to read measurement data on a specific date from the memory and to display the read data, a call button should be pressed. When the call button is pressed, the measurement data and the date data indicating the date of measurement are read from the memory and displayed on a display unit. When a subject determines that the displayed measurement data does not indicate the specific date, the subject presses the call button. Each time the call button is pressed, next measurement data and date data are read from the memory and displayed.
Thus, conventionally, in order to call measurement data on a specific date from the memory, it has been necessary to repeatedly press the call button and check the displayed data until the measurement data on the specific date is called, and operability for calling the measurement data has not been satisfactory.
Therefore, an object of the present invention is to provide an electronic blood pressure monitor capable of readily reading data measured at a desired measurement time from a memory and displaying the data, and a data display method in the electronic blood pressure monitor.
According to one aspect of the present invention, an electronic blood pressure monitor includes: a blood pressure measurement unit having a cuff attached to a blood pressure measurement site, a pressurization and depressurization unit adjusting a pressure to be applied to the cuff, a pressure detection unit detecting a pressure in the cuff adjusted by the pressurization and depressurization unit, and a blood pressure calculation unit calculating a blood pressure based on the pressure detected by the pressure detection unit; a memory; a display unit; a storing unit storing in the memory, data of the blood pressure calculated by the blood pressure calculation unit in association with measurement time data indicating a time when blood pressure of the blood pressure data was measured; a storage operation unit operated for designation of a desired time; a reading unit retrieving and reading the blood pressure data associated with the measurement time data indicating the desired time from the memory, based on operation detail of the storage operation unit; and a display control unit causing the display unit to display the blood pressure data read by the reading unit.
Therefore, according to the electronic blood pressure monitor, when a subject operates the storage operation unit for designating a desired time, the reading unit retrieves and reads from the memory, the blood pressure data associated with the measurement time data indicating the desired time, based on the operation detail, and the blood pressure data is displayed through the display control unit. Therefore, the subject can cause blood pressure data measured at a desired time, out of a large amount of blood pressure data stored in the memory, to selectively be read and displayed simply by performing an operation to designate a desired time, without repeating a series of procedures including operation for reading, data read, and display many times.
Preferably, the measurement time data includes data indicating a month when measurement was conducted, and the storage operation unit includes a month operation unit for successively retrieving and reading representative blood pressure data out of one or more piece of the blood pressure data associated with the measurement time data indicating each month, each time it is operated.
Therefore, each time the subject performs the operation, the representative blood pressure data of each month can be read and displayed.
Preferably, the measurement time data includes data indicating a month and a day when measurement was conducted, and the storage operation unit includes a day operation unit for successively retrieving and reading representative blood pressure data out of one or more piece of the blood pressure data associated with the measurement time data indicating each day in a prescribed month, each time it is operated.
Therefore, each time the subject performs the operation, the representative blood pressure data of each day in a prescribed month can be read and displayed.
Preferably, the storage operation unit includes an individual operation unit for successively retrieving and reading one or more piece of the blood pressure data associated with the measurement time data indicating prescribed month and day, each time it is operated.
Therefore, each time the subject performs the operation, the blood pressure data measured and stored on a prescribed day in a prescribed month can successively be read from the memory and displayed.
Preferably, the measurement time data includes data indicating a month, a day, and hour and minute when measurement was conducted, and each time the storage operation unit is operated, the storage operation unit selectively sets an operating mode of the reading unit to any of a month operation mode for retrieving and reading representative blood pressure data out of one or more piece of the blood pressure data associated with the measurement time data indicating each month, a day operation mode for successively retrieving and reading representative blood pressure data out of one or more piece of the blood pressure data associated with the measurement time data indicating each day in a prescribed month each time it is operated, and an individual operation mode for retrieving and reading one or more piece of the blood pressure data associated with the measurement time data indicating prescribed month and day each time it is operated.
Therefore, each time the subject operates the storage operation unit, the operating mode of the reading unit for reading the blood pressure data from the memory can selectively be switched to any of the month operation mode, the day operation mode and the individual operation mode described above. Therefore, the blood pressure data associated with the desired measurement time can quickly be read from the memory and displayed.
Preferably, the storage operation unit includes a calendar display unit displaying a calendar on a screen for designation of the desired measurement time, and retrieves and reads representative blood pressure data out of one or more piece of the blood pressure data associated with the measurement time data indicating a month designated in the calendar displayed on the calendar display unit.
Preferably, representative blood pressure data out of one or more piece of the blood pressure data associated with the measurement time data indicating a month and a day designated in the calendar displayed on the calendar display unit is retrieved and read.
Therefore, as the desired time can be designated on the displayed calendar, the storage operation is facilitated.
Preferably, as to the representative blood pressure data, the associated measurement time data indicates a time closest to a current time kept by the timer. Therefore, if there are a plurality of pieces of blood pressure data associated with time data indicating the desired time, blood pressure data measured most recently among those is read and displayed.
According to the present invention, the subject can cause the blood pressure data measured at the desired time, out of a large amount of blood pressure data stored in the memory, to selectively be read and displayed simply by performing an operation to designate a desired time, without repeating a series of procedures including operation for reading, data read and display many times.
1 electronic blood pressure monitor; 2 display unit; 4 operation unit; 13 memory; 16 CPU; 201 blood pressure calculation unit; 211 memory storing unit; 221, 222, 223 storage operation unit; 231 memory read unit; 241 display control unit; 251 time keeping data; 252 operation signal; and F1 flag.
Each embodiment of the present invention will be described hereinafter in detail with reference to the drawings. In the description below, the same elements and components have the same reference characters allotted. Their label and function are also identical. Therefore, detailed description thereof will not be repeated.
A hardware configuration of an electronic blood pressure monitor applied to each embodiment is shown in
Referring to
Operation unit 4 includes a power switch 20, a measurement switch 21 instructing start of pressure application, that is, start of measurement, a clock setting switch 22, and a month update switch 23, a day update switch 24 and an individual switch 25 operated for calling stored data. Power switch 20 is operated in order to turn on/off power of the blood pressure monitor main body. Measurement switch 21 is operated in order to instruct start or stop of measurement of blood pressure. Month update switch 23, day update switch 24 and individual switch 25 will be described later.
Referring to
Referring to
(Functional Configuration)
In
Though storage operation unit 221 is shown to have month update switch 23, day update switch 24 and individual switch 25 in
When the user operates any of month update switch 23, day update switch 24 and individual switch 25, storage operation unit 221 provides operation signal 252 indicating which switch was operated to memory read unit 231 and display control unit 241. Memory read unit 231 retrieves record Ri in memory 13 based on provided operation signal 252 and time keeping data 251 provided from timer 14, and outputs resultant record Ri to display control unit 241. Display control unit 241 causes display unit 2 to display read record Ri based on provided operation signal 252.
(Measurement Procedure)
A blood pressure measurement operation using electronic blood pressure monitor 1 will be described with reference to the flowchart in
Initially, as the subject places cuff 5 around a measurement site and operates measurement switch 21 (step ST (hereinafter simply abbreviated as ST) 1), CPU 16 controls each unit to exhaust air in bladder 6 and to carry out 0 mmHg correction of pressure sensor 7 as processing for initializing electronic blood pressure monitor 1 (ST3).
When the initialization processing ends, CPU 16 controls each unit to increase the pressure in bladder 6 to a level as high as the systolic blood pressure+40 mmHg of the subject (ST5), and thereafter gradually reduce the pressure in bladder 6 (ST7). In the process of pressure reduction, the pressure in bladder 6 is detected by pressure sensor 7 and amplification circuit 8. Blood pressure calculation unit 201 calculates blood pressure (systolic blood pressure and diastolic blood pressure) values and a pulse rate based on a voltage signal output from amplification circuit 8, that are temporarily stored in a not-shown internal memory of CPU 16 (ST9). CPU 16 reads the data of the blood pressure values and the pulse rate calculated by blood pressure calculation unit 201 from the internal memory and provides the data to display control unit 241. Display control unit 241 causes display unit 2 to display the provided data (ST11). The processing for pressure application and reduction for blood pressure measurement and the procedure for calculating the blood pressure and the pulse rate performed by blood pressure calculation unit 201 are the same as those of the electronic blood pressure monitor that has conventionally been known. Though the blood pressure is measured herein during the course of pressure reduction, the blood pressure may be measured during the course of pressure application.
When calculation and display of the blood pressure and the pulse ends, memory storing unit 211 obtains time data T based on provided time keeping data 251, generates record Ri constituted of obtained time data T and data SBP, DBP and PLS indicating the blood pressure (systolic blood pressure and diastolic blood pressure) values and the pulse rate read from the internal memory of CPU 16, and stores generated record Ri in memory 13 (ST13). A series of blood pressure measurement processes thus ends.
In the procedure in
(Procedure for Calling Blood Pressure Measurement Data)
The blood pressure measurement data (record Ri) stored in memory 13 in
Thus, display unit 2 displays measurement data at the time of blood pressure measurement in accordance with the procedure in
Referring to
Initially, when month update switch 23 is operated, memory read unit 231 searches memory 13 based on operation signal 252 shown with an arrow 31 and reads record Ri. Specifically, out of one or more record Ri storing time data T including data D1 indicating the most recent month (the current month or the most recent month although not current), record Ri storing time data T having data D2 to D4 indicating the most recent time is retrieved and read, and read record Ri is provided to display control unit 241. For example, in
Then, when month update switch 23 is operated, out of one or more record Ri storing time data T including data D1 indicating a month most recent next to the month indicated by data D1 of record R1 displayed on display unit 2, memory read unit 231 retrieves and reads record Ri storing time data T including data D2 to D4 that indicates the most recent time based on operation signal 252 shown with an arrow 32, and provides read record Ri to display control unit 241. In
Thus, each time month update switch 23 is operated, record Ri displayed on display unit 2 goes back to past record Ri by the month. Then, out of one or more record Ri having data D1 indicating the month, record Ri having time data T indicating the most recent time is selectively read and displayed for each retroactive month.
For example, it is assumed that day update switch 24 is operated while record R8 of “May” is retrieved and displayed on display unit 2 as a result of operation of month update switch 23 and resultant operation signal 252 shown with an arrow 33. Here, based on operation signal 252 issued by day update switch 24 shown with an arrow 34, memory read unit 231 specifies one or more record Ri having data D2 indicating the most recent day out of one or more record Ri storing data D1 indicative of “May” indicated by record Ri that is being displayed. Then, out of specified record Ri, memory read unit 231 searches memory 13 for record Ri having data D3 and D4 indicating the latest hour(s) and minute(s), and provides read record Ri to display control unit 241. In
Thereafter, when day update switch 24 is operated, based on operation signal 252 shown with an arrow 35, out of one or more record R8 to R12 in memory 13 storing data D1 indicative of “May” indicated by record R8 that is being displayed on display unit 2, memory read unit 231 specifies one or more record Ri storing data D2 indicating a day most recent next to the day indicated by data D2 in record R8 that is being displayed. Then, out of specified record Ri, record Ri storing time data T indicating the most recent time is retrieved and read from memory 13, and read record Ri is provided to display control unit 241. In
Thereafter, when day update switch 24 is operated, based on operation signal 252 shown with an arrow 36, out of one or more record R8 to R12 storing data D1 indicative of “May” indicated by record R9 that is being displayed on display unit 2, memory read unit 231 specifies one or more record R10 to R12 storing data D2 indicating a day most recent next to the day indicated by data D2 in record R9. Then, out of specified records R10 to R12, record Ri storing time data T indicating the most recent time is retrieved and read from memory 13, and read record Ri is provided to display control unit 241. In
Thus, each time day update switch 24 is operated, one or more record Ri having data D1 indicative of the month the same as that indicated by record Ri displayed on display unit 2 goes back to past record Ri by the day. Then, out of one or more record Ri indicating the retroactive day, record Ri indicating most recent time data T is selectively read and displayed.
For example, it is assumed that individual switch 25 is operated while record R10 indicative of “May 28” is retrieved and displayed on display unit 2 as a result of operation of day update switch 24 and resultant operation signal 252 shown with arrow 36. Here, based on operation signal 252 issued by individual switch 25 shown with an arrow 37, memory read unit 231 retrieves and reads from memory 13 record Ri storing time data T indicating the most recent time out of one or more record Ri having data D1 and D2 indicative of “May 28” indicated by record Ri that is being displayed, and provides read record Ri to display control unit 241. In
Thereafter, when individual switch 25 is operated, based on operation signal 252 shown with an arrow 38, memory read unit 231 retrieves and reads record Ri storing time data T indicating the most recent hour(s) and minute(s) next to the time indicated by data D3 and D4 in time data T of record R10 that is being displayed and provides read record Ri to display control unit 241. In
When individual switch 25 is further operated while record R11 is displayed, based on operation signal 252 shown with an arrow 39, memory read unit 231 retrieves and reads record Ri having data D2 and D3 indicating the most recent hour(s) and minute(s) next to the hour(s) and minute(s) indicated by data D2 and D3 of record R11 that is being displayed, out of records R10 to R12 having data D1 and D2 indicative of “May 28” the same as indicated by record R10 that is being displayed, and provides read record Ri to display control unit 241. In
Thus, each time individual switch 25 is operated, within a range of one or more record Ri having data D1 and D2 indicating the month and the day the same as indicated by record Ri displayed on display unit 2 among records Ri stored in memory 13, the record goes back to record Ri in the past by the hour and the minute, and the past record can selectively be read from memory 13 and displayed.
Initially, month update switch 23 is operated, and record R1 is read from memory 13 and displayed through display control unit 241 as in example 6A. As operation signal 252 is provided also to display control unit 241 in parallel to memory read unit 231, display control unit 241 allows display of record Ri read from memory 13 based on provided operation signal 252. Here, as to data 64 corresponding to time data T, a display manner of a value indicated by data D1 is made different from a display manner of other data based on the fact that operation signal 252 indicates that month update switch 23 has been operated. For example, the value blinks.
Thereafter, each time month update switch 23 is operated, records R1→R4→R8 are successively read from memory 13, and display on display unit 2 changes from example 6A→example 6B→example 6C. In example 6B and example 6C as well, as in example 6A, the display manner of the value indicated by data D1 of data 64 is different from the display manner of other data.
Therefore, by making the display manner of the value (value indicating the “month”) corresponding to data D1 of data 64 different from the display manner of others, the subject can be notified that, among the data measured in the month indicated by data 64, the blood pressure data and the pulse rate data obtained as a result of most recent measurement (on the last occasion in that month) are displayed.
When day update switch 24 is operated while example 6C is displayed on display unit 2, the screen on display unit 2 changes from example 6C to example 6D based on record R8. Display control unit 241 makes the display manner of a value indicated by data D2 on display unit 2 different from the display manner of other data based on the fact that provided operation signal 252 indicates that day update switch 24 has been operated. For example, the value blinks.
Thereafter, each time day update switch 24 is operated, records R8→R9→R10 are successively read from memory 13, and display on display unit 2 changes from example 6D→example 6E→example 6F. In example 6E and example 6F as well, as in example 6D, the display manner of the value indicated by data D2 of data 64 is different from the display manner of other data.
Therefore, by making the display manner of the value (value indicating a “day”) corresponding to data D2 of data 64 different from the display manner of others, the subject can be notified that, among the data measured on the date indicated by data 64, the blood pressure data and the pulse rate data measured most recently (last measurement data among data measured on that date) are displayed.
When individual switch 25 is operated while example 6F is displayed, the screen on display unit 2 changes from example 6F to example 6G based on record R10. Display control unit 241 makes the display manner of values indicated by data D3 and D4 of data 64 on display unit 2 different from the display manner of other data based on the fact that provided operation signal 252 indicates that individual switch 25 has been operated. For example, the values blink.
Thereafter, each time individual switch 25 is operated, records R10→R11→R12 are successively read from memory 13, and display on display unit 2 changes from example 6G→example 6H→example 6I. In example 6H and example 6I as well, as in example 6G, the display manner of the values indicated by data D3 and D4 of data 64 is different from the display manner of other data.
Therefore, by making the display manner of the values (values indicating the “hour(s) and minute(s)”) corresponding to data D3 and D4 of data 64 different from the display manner of others, the subject can be notified that the blood pressure data and the pulse rate data different in the time of measurement in one day are displayed.
Thus, by providing month update switch 23, day update switch 24 and individual switch 25 as switches for calling the blood pressure measurement data stored in memory 13, measurement data on a desired date can readily be called. Namely, instead of retrieving and displaying measurement data stored in memory 13 simply in the descending order from latest data to past data as in a conventional example, representative measurement data of each month can be called from memory 13 for each operation of month update switch 23 and representative measurement data of each day (latest and most recent) can be called from memory 13 for each operation of day update switch 24. Consequently, the data at a desired measurement time out of a large amount of measurement data stored in memory 13 can readily be called.
In a second embodiment, an electronic blood pressure monitor 1A shown in
Flag F1 is stored in the internal memory (not shown) of CPU 16 and referred to by memory read unit 232 and display control unit 242. Flag F1 instructs an operating mode of memory read unit 232 and display control unit 242.
Thereafter, each time update switch 27 is operated, records R1→R4→R8 are successively called as in the case of operation of month update switch 23 in the first embodiment, and therefore, display on display unit 2 sequentially changes from example 9A→example 9B→example 9C. In example 9B and example 9C, display control unit 242 causes the value indicating data D1, among values indicated by data 64 displayed on display unit 2, to be displayed in a manner different from others, based on operation signal 253 indicating that update switch 27 has been operated while the mode of reading the measurement data by the month is set.
When setting switch 26 is operated again while example 9C is displayed, flag F1 is updated to a value indicating the mode of reading the measurement data by the day, based on operation signal 253. Here, memory read unit 232 searches memory 13 based on the value of flag F1, retrieves and reads record Ri, and provides the record to display control unit 242. Specifically, out of one or more record Ri having data D1 indicating a month the same as the month indicated by data D1 of record R8 that is being displayed on display unit 2, record Ri having data D1 and D2 indicating the most recent date is retrieved and read, and provided to display control unit 242. Display control unit 242 causes display unit 2 to display provided record Ri as shown in example 9D. Here, display control unit 242 causes a value indicated by data D2 of data 64 to be displayed on display unit 2 in a manner different from others, based on the value of flag F1 that is referred to. For example, the value blinks.
Thereafter, each time update switch 27 is operated, records R9→R10 are successively read as in the case of operation of day update switch 24 in the first embodiment, and therefore, display on display unit 2 (example 9D) changes to example 9E→example 9f. While example 9D, example 9E and example 9F are displayed, display control unit 242 makes the display manner of the value indicated by data D2 of data 64 that is being displayed different from others, based on operation signal 253 indicating that update switch 27 has been operated while the mode of reading the measurement data by the day is set.
When setting switch 26 is operated again while example 9F is displayed, flag F1 is updated to a value indicating the mode of reading the measurement data by the hour and the minute within the same day, based on operation signal 253. Here, memory read unit 232 searches memory 13 based on the value of flag F1, retrieves and reads record Ri, and provides the record to display control unit 242. Specifically, out of one or more record Ri having data D1 and D2 indicating the month and day the same as the month and day indicated by data D1 and D2 of record R10 that is being displayed on display unit 2, record Ri having data D3 and D4 indicating the most recent hour(s) and minute(s) is retrieved and read, and provided to display control unit 242. Display control unit 242 causes display unit 2 to display provided record Ri as shown in example 9G. Here, data 64 to be displayed (data 64 corresponding to time data T) shows data D3 and D4. The data is displayed in a manner different from others, based on the value of flag F1 that is referred to by display control unit 242. For example, the data blinks.
Thereafter, each time update switch 27 is operated, records R10→R11→R12 are successively called as in the case of operation of individual switch 25 in the first embodiment, and therefore, example 9G on the screen of display unit 2 changes to example 9H→example 9I. While example 9G, example 9H and example 9I are displayed, display control unit 242 causes the value indicating data D3 and D4 indicated by data 64 to be displayed in a manner different from others, based on operation signal 253 indicating that update switch 27 has been operated while the mode of reading the measurement data by the hour and minute within the same day is set.
Thereafter, when setting switch 26 is operated, flag F1 is updated to the value indicating the mode of reading the measurement data by the month. Therefore, as described previously, the representative blood pressure measurement data of each month is called.
It is noted that a rotary switch or the like may implement setting switch 26 and update switch 27.
As in the present second embodiment, when setting switch 26 and update switch 27 are provided instead of month update switch 23, day update switch 24 and individual switch 25 in the first embodiment as well, measurement data on a desired date can be called readily and quickly. Namely, instead of retrieving and displaying measurement data stored in memory 13 simply in the descending order from latest data to past data as in a conventional example, representative measurement data of each month, representative measurement data of each day, and measurement data by the hour and minute in one day can be called for each operation of setting switch 26 and update switch 27. Consequently, the data at a desired measurement time out of a large amount of measurement data stored in memory 13 can be called readily and quickly.
When the subject performs an operation for designating desired month and day in calendar 40 displayed as shown in
The month and day in calendar 40 can be designated, for example, by touching display unit 2 implemented by a touch screen with a finger or the like. Alternatively, a cross-shaped switch, a rotary switch, or the like may be provided in operation unit 4, and desired month and day may be designated by operating such a switch to move a cursor 41 or the like over calendar 40.
Storage operation unit 223 includes a call switch 28 and a calendar designation unit 29. Call switch 28 and calendar designation unit 29 are configured integrally with display unit 2. While display control unit 243 causes display unit 2 to display calendar 40, the subject designates a desired date on calendar 40 (designation using calendar designation unit 29) by operating the touch screen described previously, and operates call switch 28. Here, operation signal 254 indicating the operation detail, that is, indicating the designated date, is provided to memory read unit 233. Memory read unit 233 reads record Ri by searching memory 13, based on provided operation signal 254. Specifically, out of one or more record Ri storing time data T indicating the date the same as the date indicated by operation signal 254, record Ri storing data T indicating the latest (most recent) time is retrieved and read, and provided to display control unit 243. Display control unit 243 causes display unit 2 to display data as shown in
Though the month and day is designated by using calendar 40, only the month may be designated using the calendar and measurement data representative of the designated month may be called.
Data for displaying calendar 40 may be created by CPU 16, or may be stored in advance in a prescribed storage area of memory 13 and read and displayed on display unit 2.
In each embodiment, if a plurality of pieces of blood pressure measurement data (data SBP, data DBP, data PLS) associated with time data T corresponding to the time (month and day) indicated by operation signals 252, 253 and 254 are stored, that is, if a plurality of records Ri having corresponding time data T are stored, the blood pressure measurement data associated with time data T indicating the most recent time is retrieved and read as representative data. Namely, the measurement data stored in memory 13 most recently or finally is retrieved and read as the data representative of the plurality of pieces of blood pressure measurement data. The representative data, however, is not limited to the most recent measurement data. For example, measurement data (record Ri) having a highest value of data SBP or measurement data (record Ri) indicating a median value of data SBP may serve as representative data.
It is noted that the configuration of memory 13 is not limited to that shown in
According to each embodiment described above, among a large amount of blood pressure measurement data (record Ri) stored in memory 13, measurement data at a specific (desired) measurement time can be called quickly with a simple operation, without a complicated operation or repeated operations many times, and therefore, operability for managing blood pressure is excellent.
It should be understood that the embodiments disclosed herein are illustrative and non-restrictive in every respect. The scope of the present invention is defined by the terms of the claims, rather than the description above, and is intended to include any modifications within the scope and meaning equivalent to the terms of the claims.
Number | Date | Country | Kind |
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2005-323705 | Nov 2005 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2006/321951 | 11/2/2006 | WO | 00 | 4/24/2008 |