Noninvasive methods to monitor intracranial pressure

被引:5
|
作者
Dattilo, Michael [1 ,2 ]
机构
[1] Emory Univ, Emory Eye Ctr, Neuro Ophthalmol Div, Sch Med, Atlanta, GA USA
[2] Emory Univ, Emory Eye Ctr, Sch Med, Atlanta, GA 30322 USA
基金
美国国家卫生研究院;
关键词
cerebrospinal fluid; intracranial pressure; noninvasive; TRAUMATIC BRAIN-INJURY; NERVE SHEATH DIAMETER; TYMPANIC MEMBRANE DISPLACEMENT; OPTICAL COHERENCE TOMOGRAPHY; TRANSCRANIAL DOPPLER; VENOUS OPHTHALMODYNAMOMETRY; OTOACOUSTIC EMISSIONS; INTRAOCULAR-PRESSURE; PULSATILITY INDEX; LUMBAR PUNCTURE;
D O I
10.1097/WCO.0000000000001126
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Purpose of reviewIntracranial pressure (ICP) is determined by the production of and outflow facility of cerebrospinal fluid. Since alterations in ICP are implicated in several vision-threatening and life-threatening diseases, measurement of ICP is necessary and common. All current clinical methods to measure ICP are invasive and carry the risk for significant side effects. Therefore, the development of accurate, reliable, objective, and portal noninvasive devices to measure ICP has the potential to change the practice of medicine. This review discusses recent advances and barriers to the clinical implementation of noninvasive devices to determine ICP.Recent findingsMany noninvasive methods to determine ICP have been developed. Although most have significant limitations limiting their clinical utility, several noninvasive methods have shown strong correlations with invasively obtained ICP and have excellent potential to be developed further to accurately quantify ICP and ICP changes.Although invasive methods remain the mainstay for ICP determination and monitoring, several noninvasive biomarkers have shown promise to quantitatively assess and monitor ICP. With further refinement and advancement of these techniques, it is highly possible that noninvasive methods will become more commonplace and may complement or even supplant invasively obtained methods to determine ICP in certain situations.
引用
收藏
页码:1 / 9
页数:9
相关论文
共 50 条
  • [31] Update in intracranial pressure evaluation methods and translaminar pressure gradient role in glaucoma
    Siaudvytyte, Lina
    Januleviciene, Ingrida
    Ragauskas, Arminas
    Bartusis, Laimonas
    Siesky, Brent
    Harris, Alon
    ACTA OPHTHALMOLOGICA, 2015, 93 (01) : 9 - 15
  • [32] Noninvasive assessment of intracranial pressure with venous ophthalmodynamometry Clinical article
    Firsching, Raimund
    Mueller, Claudia
    Pauli, Steffen-Ulrich
    Voellger, Benjamin
    Rohl, Friedrich-Wilhelm
    Behrens-Baumann, Wolfgang
    JOURNAL OF NEUROSURGERY, 2011, 115 (02) : 371 - 374
  • [33] Accuracy of Noninvasive Intracranial Pressure Monitoring in Patients with Subarachnoid Hemorrhage
    Seddighi, Amir Saied
    Seddighi, Afsoun
    Zali, Alireza
    BIOMEDICAL AND BIOTECHNOLOGY RESEARCH JOURNAL, 2024, 8 (03): : 403 - 408
  • [34] Improved Noninvasive Intracranial Pressure Assessment With Nonlinear Kernel Regression
    Xu, Peng
    Kasprowicz, Magdalena
    Bergsneider, Marvin
    Hu, Xiao
    IEEE TRANSACTIONS ON INFORMATION TECHNOLOGY IN BIOMEDICINE, 2010, 14 (04): : 971 - 978
  • [35] Measuring intracranial pressure by invasive, less invasive or non-invasive means: limitations and avenues for improvement
    Evensen, Karen Brastad
    Eide, Per Kristian
    FLUIDS AND BARRIERS OF THE CNS, 2020, 17 (01)
  • [36] Intracranial pseudoaneurysm after intracranial pressure monitor placement (Reprinted)
    Shah, Kushal J.
    Jones, Aaron M.
    Arnold, Paul M.
    Ebersole, Koji
    JOURNAL OF NEUROINTERVENTIONAL SURGERY, 2016, 8 (01) : e3
  • [37] Usefulness of Transcranial Doppler-Derived Cerebral Hemodynamic Parameters in the Noninvasive Assessment of Intracranial Pressure
    Wakerley, Benjamin R.
    Kusuma, Yohanna
    Yeo, Leonard L. L.
    Liang, Shen
    Kumar, Komal
    Sharma, Arvind K.
    Sharma, Vijay K.
    JOURNAL OF NEUROIMAGING, 2015, 25 (01) : 111 - 116
  • [38] The Effects of Acute Intracranial Pressure Changes on the Episcleral Venous Pressure, Retinal Vein Diameter and Intraocular Pressure in a Pig Model
    Ghate, Deepta
    Kedar, Sachin
    Havens, Shane
    Fan, Shan
    Thorell, William
    Nelson, Carl
    Gu, Linxia
    Tong, Junfei
    Gulati, Vikas
    CURRENT EYE RESEARCH, 2021, 46 (04) : 524 - 531
  • [39] Modelling Intracranial Pressure with Noninvasive Physiological Measures
    Hughes, James Alexander
    Jackson, Ethan C.
    Daley, Mark
    2017 IEEE CONFERENCE ON COMPUTATIONAL INTELLIGENCE IN BIOINFORMATICS AND COMPUTATIONAL BIOLOGY (CIBCB), 2017, : 44 - 51
  • [40] Laboratory testing of the Pressio intracranial pressure monitor
    Allin, David
    Czosnyka, Marek
    Czosnyka, Zofia
    NEUROSURGERY, 2008, 62 (05) : 1158 - 1161