ULTRASONIC DIAGNOSTIC APPARATUS

PROBLEM TO BE SOLVED: To provide improved technologies for the weighting in reception of array transducers. SOLUTION: In Figure (A), a receiving beam 102 is formed by using a weighting function 112. The position of the peak of the weighting function 112 is the position of the receiving beam 102. A r...

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Hauptverfasser: SO KEIBUN, KUZU MASANORI
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KUZU MASANORI
description PROBLEM TO BE SOLVED: To provide improved technologies for the weighting in reception of array transducers. SOLUTION: In Figure (A), a receiving beam 102 is formed by using a weighting function 112. The position of the peak of the weighting function 112 is the position of the receiving beam 102. A receiving beam 104 is formed by a weighting function 114, and the position of the peak of the weighting function 114 is the position of the receiving beam 104. A receiving beam 106 is formed by using a weighting function 116, and the position of the peak of the weighting function 116 is the position of the receiving beam 106. In this way, the positions of the weighting functions 112, 114 and 116 are shifted within a receiving opening to follow the movement of the receiving beams 102, 104 and 106 by the electronic scan. COPYRIGHT: (C)2010,JPO&INPIT
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The position of the peak of the weighting function 112 is the position of the receiving beam 102. A receiving beam 104 is formed by a weighting function 114, and the position of the peak of the weighting function 114 is the position of the receiving beam 104. A receiving beam 106 is formed by using a weighting function 116, and the position of the peak of the weighting function 116 is the position of the receiving beam 106. In this way, the positions of the weighting functions 112, 114 and 116 are shifted within a receiving opening to follow the movement of the receiving beams 102, 104 and 106 by the electronic scan. 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SOLUTION: In Figure (A), a receiving beam 102 is formed by using a weighting function 112. The position of the peak of the weighting function 112 is the position of the receiving beam 102. A receiving beam 104 is formed by a weighting function 114, and the position of the peak of the weighting function 114 is the position of the receiving beam 104. A receiving beam 106 is formed by using a weighting function 116, and the position of the peak of the weighting function 116 is the position of the receiving beam 106. In this way, the positions of the weighting functions 112, 114 and 116 are shifted within a receiving opening to follow the movement of the receiving beams 102, 104 and 106 by the electronic scan. 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SOLUTION: In Figure (A), a receiving beam 102 is formed by using a weighting function 112. The position of the peak of the weighting function 112 is the position of the receiving beam 102. A receiving beam 104 is formed by a weighting function 114, and the position of the peak of the weighting function 114 is the position of the receiving beam 104. A receiving beam 106 is formed by using a weighting function 116, and the position of the peak of the weighting function 116 is the position of the receiving beam 106. In this way, the positions of the weighting functions 112, 114 and 116 are shifted within a receiving opening to follow the movement of the receiving beams 102, 104 and 106 by the electronic scan. COPYRIGHT: (C)2010,JPO&amp;INPIT</abstract><oa>free_for_read</oa></addata></record>
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subjects ANALOGOUS ARRANGEMENTS USING OTHER WAVES
DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES
DIAGNOSIS
HUMAN NECESSITIES
HYGIENE
IDENTIFICATION
LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION ORRERADIATION OF RADIO WAVES
MEASURING
MEDICAL OR VETERINARY SCIENCE
PHYSICS
RADIO DIRECTION-FINDING
RADIO NAVIGATION
SURGERY
TESTING
title ULTRASONIC DIAGNOSTIC APPARATUS
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