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Regulating flow paths in a medical injection system

  • US 9,067,009 B2
  • Filed: 01/25/2013
  • Issued: 06/30/2015
  • Est. Priority Date: 01/25/2013
  • Status: Active Grant
First Claim
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1. A manifold assembly for a medical injection system, the assembly comprising:

  • a flow control core including a longitudinal axis, an outer perimeter surface, and a flow channel, the flow channel including a first section extending inward, toward the axis, from a first opening at the outer perimeter surface, and a second section extending inward, toward the axis, from a second opening at the outer perimeter surface; and

    a body including a longitudinal axis, an inner perimeter surface, a first fill port, a second fill port, a first injection port, and a second injection port, each port extending from a corresponding opening at the inner perimeter surface to a corresponding opening at an exterior of the body, and each port opening at the inner perimeter surface being located in a separate quadrant of four quadrants into which the inner surface is divided; and

    wherein the flow control core is fitted within the inner perimeter surface of the body such that the outer perimeter surface of the flow control core seals against the inner perimeter surface of the body, the axis of the flow control core is approximately aligned with the axis of the body, and the flow control core is rotatable about the axis thereof between a first position and a second position;

    when the flow control core is at the first position, the first opening of the flow channel aligns with the inner surface opening of the first fill port of the body, and the second opening of the flow channel aligns with the inner surface opening of the second fill port of the body, such that the channel allows fluid communication between the first and second fill ports;

    when the flow control core is at the second position, the first opening of the flow channel aligns with the inner surface opening of the first injection port of the body, and the second opening of the flow channel aligns with the inner surface opening of the second injection port of the body, such that the channel allows fluid communication between the first and second injection ports; and

    when the flow control core is rotated 360 degrees about the axis thereof, fluid communication between any ports of the body is prevented except at the first and second positions.

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