Method and device for measuring intracranial pressure
First Claim
1. A method for measuring intracranial pressure by using a device comprising a reservoir implantable under the skin of a patient and into which cerebrospinal fluid can be introduced from a brain ventricle of the patient, a flexible dome configured to be upwardly projected from said reservoir by the pressure of the cerebrospinal fluid and flexibly deformable according to an external force, a pressing part for pressing against said dome through the skin, a pressing-part-driving means for driving said pressing part toward said dome at a constant speed, a pressure transducer for measuring the force of the pressing part pressing the dome and a flexible membrane provided at the tip of the pressing part and having an interior filled with a fluid, the method comprising:
- pressing the flexible membrane of the pressing part against the dome of the reservoir through the skin by means of the pressing-part-driving means after a zero point correction of the pressure transducer is performed by communicating the interior of the flexible membrane with the atmosphere.
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Abstract
This invention provides a method for measuring intracranial pressure and a device for the same which enable intracranial pressure to be accurately measured without any conventional calibration using data obtained by previous measurement because they are characterized in that intracranial pressure is measured after a communication valve capable of communicating with the atmosphere is closed following zero point correction of a pressure transducer performed by adjusting the internal pressure of a flexible membrane provided at the tip of a pressing part and filled with a fluid to atmospheric pressure by the operation of the above communication valve.
63 Citations
20 Claims
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1. A method for measuring intracranial pressure by using a device comprising a reservoir implantable under the skin of a patient and into which cerebrospinal fluid can be introduced from a brain ventricle of the patient, a flexible dome configured to be upwardly projected from said reservoir by the pressure of the cerebrospinal fluid and flexibly deformable according to an external force, a pressing part for pressing against said dome through the skin, a pressing-part-driving means for driving said pressing part toward said dome at a constant speed, a pressure transducer for measuring the force of the pressing part pressing the dome and a flexible membrane provided at the tip of the pressing part and having an interior filled with a fluid, the method comprising:
- pressing the flexible membrane of the pressing part against the dome of the reservoir through the skin by means of the pressing-part-driving means after a zero point correction of the pressure transducer is performed by communicating the interior of the flexible membrane with the atmosphere.
- View Dependent Claims (2)
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3. A device for measuring intracranial pressure of cerebrospinal fluid in a brain ventricle of a patient, comprising:
- a reservoir implantable under the skin of a patient and into which cerebrospinal fluid can be introduced from a brain ventricle of the patient, a flexible dome configured to be upwardly projected from said reservoir by the pressure of the cerebrospinal fluid and flexibly deformable according to an external force, and a detector comprising a pressing part movable to be pressed against said dome through the skin, a pressing-part-driving means for driving the pressing part toward the dome at a constant speed, a pressure transducer for measuring the force of the pressing part pressing the dome, a flexible membrane provided at the tip of the pressing part and having an interior filled with a fluid, means defining an exhaust path for communicating the interior of said flexible membrane with the atmosphere, and a valve for opening and closing said exhaust path.
- View Dependent Claims (4, 5, 6, 7, 8)
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9. A device for measuring the pressure of cerebrospinal fluid in a brain ventricle of a patient, comprising:
- a reservoir implantable under the skin of a patient during use of the device and having a flexible dome portion for receiving therein cerebrospinal fluid under pressure from a brain ventricle of the patient; and
a detector positionable in opposed spaced relation from the implanted reservoir during use of the device for detecting the pressure of the cerebrospinal fluid, the detector comprising a flexible membrane having an interior, means including a conduit connected to the flexible membrane for selectively communicating the interior of the flexible membrane with ambient air to equalize the air pressure within the flexible membrane with that of the ambient air and for thereafter fluidtightly closing the conduit to maintain the flexible membrane filled with air, means mounting the flexible membrane for displacement toward and away from the flexible dome portion of the reservoir, driving means for displacing the air-filled flexible membrane toward the reservoir to cause the flexible membrane to exert an inward pressing force on the flexible dome portion of the reservoir through the patient'"'"'s skin to flexibly inwardly deform the dome portion, and means for measuring the force with which the flexible membrane presses against the flexible dome portion and producing a corresponding output signal representative of the pressure of the cerebrospinal fluid. - View Dependent Claims (10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20)
- a reservoir implantable under the skin of a patient during use of the device and having a flexible dome portion for receiving therein cerebrospinal fluid under pressure from a brain ventricle of the patient; and
Specification