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      Application of near-infrared spectroscopy in clinical neurology

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      https://www.riss.kr/link?id=A106060347

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      다국어 초록 (Multilingual Abstract)

      Near-infrared spectroscopy (NIRS) monitoring has been used mainly to detect reduced perfusion of the brain during orthostatic stress in order to assess orthostatic intolerance (OI). Many studies have investigated the use of NIRS to reveal the pathophy...

      Near-infrared spectroscopy (NIRS) monitoring has been used mainly to detect reduced perfusion of the brain during orthostatic stress in order to assess orthostatic intolerance (OI). Many studies have investigated the use of NIRS to reveal the pathophysiology of patients with OI.
      Research using NIRS in other neurological diseases (e.g., stroke, epilepsy, and migraine) is continuing.
      NIRS may play an important role in monitoring the regional distribution of the hemodynamic flow in real time and thereby reveal the underlying pathophysiology and facilitate the management of not only patients with OI symptoms but also those with various neurological diseases.

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      참고문헌 (Reference)

      1 Okada E, "Theoretical and experimental investigation of near-infrared light propagation in a model of the adult head" 36 : 21-31, 1997

      2 Stone KJ, "The validity and reliability of continuous-wave near-infrared spectroscopy for the assessment of leg blood volume during an orthostatic challenge" 251 : 234-239, 2016

      3 Liboni W, "The diagnostic iter of patent foramen ovale in migraine patients: an update" 29 (29): S19-S22, 2008

      4 Benarroch EE, "The clinical approach to autonomic failure in neurological disorders" 10 : 396-407, 2014

      5 Saito S, "The cerebral hemodynamic response to electrically induced seizures in man" 673 : 93-100, 1995

      6 변정익, "Spontaneous Low-Frequency Cerebral Hemodynamics Oscillations in Restless Legs Syndrome with Periodic Limb Movements During Sleep: A Near-Infrared Spectroscopy Study" 대한신경과학회 12 (12): 107-114, 2016

      7 Yucel MA, "Short separation regression improves statistical significance and better localizes the hemodynamic response obtained by near-infrared spectroscopy for tasks with differing autonomic responses" 2 : 035005-, 2015

      8 Rothschild AH, "Sensitivity of R-R variation and valsalva ratio in assessment of cardiovascular diabetic autonomic neuropathy" 10 : 735-741, 1987

      9 Kita Y, "Selfface recognition in children with autism spectrum disorders: a near-infrared spectroscopy study" 33 : 494-503, 2011

      10 Wang B, "Posture-related changes in brain functional connectivity as assessed by wavelet phase coherence of NIRS signals in elderly subjects" 312 : 238-245, 2016

      1 Okada E, "Theoretical and experimental investigation of near-infrared light propagation in a model of the adult head" 36 : 21-31, 1997

      2 Stone KJ, "The validity and reliability of continuous-wave near-infrared spectroscopy for the assessment of leg blood volume during an orthostatic challenge" 251 : 234-239, 2016

      3 Liboni W, "The diagnostic iter of patent foramen ovale in migraine patients: an update" 29 (29): S19-S22, 2008

      4 Benarroch EE, "The clinical approach to autonomic failure in neurological disorders" 10 : 396-407, 2014

      5 Saito S, "The cerebral hemodynamic response to electrically induced seizures in man" 673 : 93-100, 1995

      6 변정익, "Spontaneous Low-Frequency Cerebral Hemodynamics Oscillations in Restless Legs Syndrome with Periodic Limb Movements During Sleep: A Near-Infrared Spectroscopy Study" 대한신경과학회 12 (12): 107-114, 2016

      7 Yucel MA, "Short separation regression improves statistical significance and better localizes the hemodynamic response obtained by near-infrared spectroscopy for tasks with differing autonomic responses" 2 : 035005-, 2015

      8 Rothschild AH, "Sensitivity of R-R variation and valsalva ratio in assessment of cardiovascular diabetic autonomic neuropathy" 10 : 735-741, 1987

      9 Kita Y, "Selfface recognition in children with autism spectrum disorders: a near-infrared spectroscopy study" 33 : 494-503, 2011

      10 Wang B, "Posture-related changes in brain functional connectivity as assessed by wavelet phase coherence of NIRS signals in elderly subjects" 312 : 238-245, 2016

      11 Viola S, "Pathophysiology of migraine attack with prolonged aura revealed by transcranial Doppler and near infrared spectroscopy" 31 (31): S165-S166, 2010

      12 Liboni W, "Patent foramen ovale detected by near-infrared spectroscopy in patients suffering from migraine with aura" 29 (29): S182-S185, 2008

      13 "Optical absorption of hemoglobin [Internet]" Scott Prahl, Oregon Medical Laser Center

      14 Jobsis FF, "Noninvasive, infrared monitoring of cerebral and myocardial oxygen sufficiency and circulatory parameters" 198 : 1264-1267, 1977

      15 Liu H, "Noninvasive investigation of blood oxygenation dynamics of tumors by near-infrared spectroscopy" 39 : 5231-5243, 2000

      16 Nguyen DK, "Noninvasive continuous functional near-infrared spectroscopy combined with electroencephalography recording of frontal lobe seizures" 54 : 331-340, 2013

      17 Villringer A, "Non-invasive optical spectroscopy and imaging of human brain function" 20 : 435-442, 1997

      18 Obrig H, "Non-invasive optical imaging of stroke" 369 : 4470-4494, 2011

      19 Strangman G, "Non-invasive neuroimaging using near-infrared light" 52 : 679-693, 2002

      20 Nguyen DK, "Non-invasive continuous EEG-fNIRS recording of temporal lobe seizures" 99 : 112-126, 2012

      21 Szufladowicz E, "Near-infrared spectroscopy in evaluation of cerebral oxygenation during vasovagal syncope" 25 : 823-836, 2004

      22 Rao RP, "Near infrared spectroscopy: guided tilt table testing for syncope" 31 : 674-679, 2010

      23 Aries MJ, "Near infrared spectroscopy for the detection of desaturations in vulnerable ischemic brain tissue: a pilot study at the stroke unit bedside" 43 : 1134-1136, 2012

      24 Sokol DK, "Near infrared spectroscopy (NIRS) distinguishes seizure types" 9 : 323-327, 2000

      25 Obrig H, "NIRS in clinical neurology - a 'promising' tool?" 85 : 535-546, 2014

      26 Igarashi T, "Monitoring of hemodynamic change in patients with carotid artery stenosis during the tilt test using wearable near-infrared spectroscopy" 789 : 463-467, 2013

      27 Pott F, "Middle cerebral artery blood velocity during intense static exercise is dominated by a valsalva maneuver" 94 : 1335-1344, 2003

      28 Saager R, "Measurement of layer-like hemodynamic trends in scalp and cortex: implications for physiological baseline suppression in functional near-infrared spectroscopy" 13 : 034017-, 2008

      29 Goto T, "Lateralized frontal activity for Japanese phonological processing during child development" 9 : 417-, 2015

      30 Canova D, "Inconsistent detection of changes in cerebral blood volume by near infrared spectroscopy in standard clinical tests" 110 : 1646-1655, 2011

      31 Misgeld T, "In vivo imaging of the diseased nervous system" 7 : 449-463, 2006

      32 Han CH, "Hemodynamic responses in rat brain during transcranial direct current stimulation: a functional near-infrared spectroscopy study" 5 : 1812-1821, 2014

      33 Bunce SC, "Functional near-infrared spectroscopy" 25 : 54-62, 2006

      34 Izzetoglu M, "Functional near-infrared neuroimaging" 13 : 153-159, 2005

      35 Irani F, "Functional near infrared spectroscopy (fNIRS): an emerging neuroimaging technology with important applications for the study of brain disorders" 21 : 9-37, 2007

      36 Watanabe E, "Focus diagnosis of epilepsy using near-infrared spectroscopy" 43 (43): 50-55, 2002

      37 Strangman G, "Factors affecting the accuracy of near-infrared spectroscopy concentration calculations for focal changes in oxygenation parameters" 18 : 865-879, 2003

      38 Gratton G, "Effects of measurement method, wavelength, and source-detector distance on the fast optical signal" 32 : 1576-1590, 2006

      39 Tsubaki A, "Effect of valsalva maneuver-induced hemodynamic changes on brain near-infrared spectroscopy measurements" 789 : 97-103, 2013

      40 Shields RW Jr, "Comprehensive clinical neurophysiology" Saunders 307-324, 2000

      41 Perry BG, "Cerebral hemodynamics during graded valsalva maneuvers" 5 : 349-, 2014

      42 Lee S, "Cerebral hemodynamic responses to seizure in the mouse brain: simultaneous near-infrared spectroscopy-electroencephalography study" 15 : 037010-, 2010

      43 Pizza F, "Cerebral hemodynamic changes in stroke during sleep-disordered breathing" 43 : 1951-1953, 2012

      44 Sakatani K, "Cerebral blood oxygenation changes induced by auditory stimulation in newborn infants measured by near infrared spectroscopy" 55 : 229-236, 1999

      45 Lankford J, "Cerebral blood flow during HUTT in young patients with orthostatic intolerance" 25 : 277-284, 2015

      46 Damian MS, "Bilateral near infrared spectroscopy in space-occupying middle cerebral artery stroke" 6 : 165-173, 2007

      47 Jones PK, "Autonomic function testing: an important diagnostic test for patients with syncope" 15 : 346-351, 2015

      48 "Assessment: clinical autonomic testing report of the Therapeutics and Technology Assessment Subcommittee of the American Academy of Neurology" 46 : 873-880, 1996

      49 Laures M, "Assessing the role of cerebral autoregulation during intrathoracic pressure changes by near infrared spectroscopy (NIRS)" 46 : PA2355-, 2015

      50 김학영, "Application of Functional Near-Infrared Spectroscopy to the Study of Brain Function in Humans and Animal Models" 한국분자세포생물학회 40 (40): 523-532, 2017

      51 Strangman G, "A quantitative comparison of simultaneous BOLD fMRI and NIRS recordings during functional brain activation" 17 : 719-731, 2002

      52 Everdell NL, "A portable wireless near-infrared spatially resolved spectroscopy system for use on brain and muscle" 35 : 1692-1697, 2013

      53 Ferrari M, "A brief review on the history of human functional near-infrared spectroscopy (fNIRS) development and fields of application" 63 : 921-935, 2012

      54 Shen WK, "2017 ACC/AHA/HRS guideline for the evaluation and management of patients with syncope: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society" 14 : e155-e217, 2017

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2028 평가예정 재인증평가 신청대상 (재인증)
      2022-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2019-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2016-12-26 학술지명변경 한글명 : 대한임상신경생리학회 -> Annals of Clinical Neurophysiology
      외국어명 : Korean Journal of Clinical Neurophysiology -> Annals of Clinical Neurophysiology
      KCI등재
      2016-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2015-12-01 평가 등재후보로 하락 (기타) KCI등재후보
      2014-06-16 학술지명변경 외국어명 : Journal of Korean Society for clinical Neurophysiology -> Korean Journal of Clinical Neurophysiology KCI등재
      2011-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2010-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2008-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.02 0.02 0.03
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.04 0.04 0.236 0
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