Model-based noninvasive estimation of intracranial pressure from cerebral blood flow velocity and arterial pressure.

نویسندگان

  • Faisal M Kashif
  • George C Verghese
  • Vera Novak
  • Marek Czosnyka
  • Thomas Heldt
چکیده

Intracranial pressure (ICP) is affected in many neurological conditions. Clinical measurement of pressure on the brain currently requires placing a probe in the cerebrospinal fluid compartment, the brain tissue, or other intracranial space. This invasiveness limits the measurement to critically ill patients. Because ICP is also clinically important in conditions ranging from brain tumors and hydrocephalus to concussions, noninvasive determination of ICP would be desirable. Our model-based approach to continuous estimation and tracking of ICP uses routinely obtainable time-synchronized, noninvasive (or minimally invasive) measurements of peripheral arterial blood pressure and blood flow velocity in the middle cerebral artery (MCA), both at intra-heartbeat resolution. A physiological model of cerebrovascular dynamics provides mathematical constraints that relate the measured waveforms to ICP. Our algorithm produces patient-specific ICP estimates with no calibration or training. Using 35 hours of data from 37 patients with traumatic brain injury, we generated ICP estimates on 2665 nonoverlapping 60-beat data windows. Referenced against concurrently recorded invasive parenchymal ICP that varied over 100 millimeters of mercury (mmHg) across all records, our estimates achieved a mean error (bias) of 1.6 mmHg and SD of error (SDE) of 7.6 mmHg. For the 1673 data windows over 22 hours in which blood flow velocity recordings were available from both the left and the right MCA, averaging the resulting bilateral ICP estimates reduced the bias to 1.5 mmHg and SDE to 5.9 mmHg. This accuracy is already comparable to that of some invasive ICP measurement methods in current clinical use.

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منابع مشابه

Award Number: W81XWH-11-1-0676 TITLE: Model-Based, Noninvasive Monitoring of Intracranial Pressure PRINCIPAL INVESTIGATOR:

• I Hwang, FM Kashif, GC Verghese, T Heldt. A frequency-domain approach to model-based noninvasive intracranial pressure estimation from arterial blood pressure and cerebral blood flow velocity. Invited contribution to the Minisymposium on Information Derived from the Arterial Blood Pressure Waveform and Its Significance. IEEE Engineering in Medicine and Biology Conference, San Diego, CA, Septe...

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Kashif Cerebral Blood Flow Velocity and Arterial Pressure Model - Based Noninvasive Estimation of Intracranial Pressure from

measurement. real-time estimation of ICP could spare patients the pain of and recovery from more invasive methods of immediately upon examining a patient. Such a model-based approach will find use in many clinical situations where it does not require calibration or training before application. This feature makes it amenable to use in the clinic, is that −− other than its ability to estimate ICP...

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Cerebral Blood Flow Velocity and Arterial Pressure Model - Based Noninvasive Estimation of Intracranial Pressure from

measurement. real-time estimation of ICP could spare patients the pain of and recovery from more invasive methods of immediately upon examining a patient. Such a model-based approach will find use in many clinical situations where it does not require calibration or training before application. This feature makes it amenable to use in the clinic, is that −− other than its ability to estimate ICP...

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عنوان ژورنال:
  • Science translational medicine

دوره 4 129  شماره 

صفحات  -

تاریخ انتشار 2012