IP Library Patent Application 12558157
Patent Application
App. No. 12/558,157

INTRACRANIAL PRESSURE SENSOR

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Quick Facts
Patent No.
US None
App. No.
12/558,157
Abstract

An intracranial pressure device for measuring CSF pressure in a skull includes a housing located between the scalp and the skull containing pressure device circuitry and a conduit extending downwardly from the housing to the vicinity of the CSF. A pressure sensor is coupled to the conduit and located in communication with the CSF wherein the pressure sensor directly senses the pressure of the CSF and provides a signal representative of the pressure of the CSF to the pressure device circuitry by way of the conduit. The skull has a dura and the conduit extends by way of an opening through the skull and an opening through the dura to position the sensor in direct contact with the CSF. A fluid reservoir can be in communication with the CSF by way of a tube and by way of the housing. The fluid reservoir contains CSF.

Claims (24)

1 . An intracranial pressure device for measuring CSF pressure in a skull having a scalp, comprising:

a housing located between the scalp and the skull containing pressure device circuitry;

a conduit extending downwardly from the housing to the vicinity of the CSF; and

a pressure sensor coupled to the conduit and located in communication with the CSF wherein the pressure sensor senses the pressure of the CSF and provides a signal representative of the pressure of the CSF to the pressure device circuitry located in the housing by way of the conduit.

2 . The intracranial pressure device of claim 1 , wherein the skull has a dura and the conduit extends by way of an opening through the skull and an opening through the dura to position the sensor in direct contact with the CSF.

3 . The intracranial pressure device of claim 1 , further comprising a fluid reservoir in communication with the CSF by way of a tube.

4 . The intracranial pressure device of claim 1 , further comprising a fluid reservoir in communication with the CSF by way of the housing.

5 . The intracranial pressure device of claim 3 , wherein the fluid reservoir contains CSF.

6 . The intracranial pressure device of claim 3 , wherein the fluid reservoir is self sealing after it is penetrated by a syringe to prevent fluid from passing through a wall of the fluid reservoir at a point where the fluid reservoir is penetrated by the syringe.

7 . The intracranial pressure device of claim 5 , wherein fluid is withdrawn from the fluid reservoir by way of a syringe.

8 . The intracranial pressure device of claim 5 , wherein fluid is injected into the fluid reservoir by way of a syringe.

9 . The intracranial pressure device of claim 7 , wherein the fluid is withdrawn from the fluid reservoir in accordance with the signal representative of the pressure of the CSF.

10 . The intracranial pressure device of claim 1 , wherein the sensor is MEMS-based circuitry.

11 . The intracranial pressure device of claim 1 , wherein the pressure device circuitry comprises transmission circuitry and a transmission signal is transmitted by the transmission circuitry in accordance with the signal representative of the pressure of the CSF.

12 . The intracranial pressure device of claim 11 , further comprising a display provided in accordance with the transmission signal.

13 . The intracranial pressure device of claim 1 , wherein the pressure device circuitry includes a battery further comprising an energy source for recharging the battery.

14 . The intracranial pressure device of claim 13 , wherein the energy source comprises an energy transducer.

15 . The intracranial pressure device of claim 14 , wherein the energy transducer comprises a photodetector for converting light energy into electrical energy.

16 . The intracranial pressure device of claim 13 , further comprising a substrate carrying a plurality of energy transducers.

17 . The intracranial pressure device of claim 14 , wherein the energy transducer is attached to the housing portion.

18 . The intracranial pressure device of claim 17 , wherein the energy transducer is located interior to at least a layer of the skin.

19 . The intracranial pressure device of claim 3 , further comprising a sensor applied to the fluid reservoir to provide a signal representative of the pressure of the fluid within the fluid reservoir.

20 . The intracranial pressure device of claim 3 , wherein the fluid reservoir is in fluid communication with intraventricular CSF by way of the tube.

21 . The intracranial pressure device of claim 1 , further comprising a shunt which is in fluid communication with an intraventricular space for draining the ventricular space.

Assignments (2)
MERGER Recorded Jan 7, 2015
From: PHILADELPHIA HEALTH & EDUCATION CORPORATION
To: DREXEL UNIVERSITY
Reel/Frame 034650/0341 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2014
From: ROSEN, ARYE; KAWOOS, USMAH; ROSEN, HAREL; KRALICK, FRANCIS A.
To: DREXEL UNIVERSITY; PHILADELPHIA HEALTH & EDUCATION CORPORATION D/B/A DREXEL UNIVERSITY COLLEGE OF MEDICINE
Reel/Frame 032298/0643 →