PENGUKURAN NILAI METABOLIT PADA PENGGUNAAN VARIASI NILAI TIME ECHO PEMERIKSAAN MAGNETIC RESONANCE SPECTROSCOPY OTAK

Agi Febrian Trihadijaya, Bagus Abimanyu, Darmini Darmini

Abstract


Background : Application of MRS itself to measure the N-Acetyl Aspartate (NAA) content in tumour, stroake and epilepsy. Contents of NAA has important role in the central nervous system. Examination of MRS itself should be included to support the patient diagnose. Time echo is an important parameter which affect the metabolite spectrum. So, measurement of metabolic value using variants of TE which is 35, 144, 288 ms, are the main idea. The purpose of this research to know the measurable metabolic which use of variants of TE and to know which TE has show the smallest difference with normal metabolic value.

Methods : This research is a quantitative descriptive method. Reasearch subject is Radiographer which has competence dan enough experience in MRI. Research samples using 10 person who become the research probandus. The acquisition is do three times on right temporal lobe with TE value 35, 144 and 288 ms. Another parameter which controlled is TR 2000 ms, Single Voxel Spectroscopy (SVS) acquisition sized 31.7mm3 with Point Resolved Spatial Selection (PRESS) pulse sequence. Measurable metabolic aspect which will be evaluate is N-Acetyl aspartate (NAA), Choline (Cho) and Creatine (Cr). Data processing and analysis is do by calculate the spectroscopy spectrum intensity so obtained the measurable metabolic value then using univariate analysis or descriptive analysis.

Results : Results of measurable metabolites is the longer TE use so the metabolic spectrum will be decrease on NAA (35 ms: 8.2, 144 ms: 7.3, 288 ms: 5.4), Cr (35 ms: 6.8, 144 ms: 5.8, 288 ms: 3.8) and Cho (35 ms: 6.9, 144 ms: 6.0, 288 ms: 4.4). Then on the calculate of metabolic value difference with normal metabolic value, the longer TE use so the difference will be increase on NAA (35 ms: 1.8, 144 ms: 2.7, 288 ms: 4.6), Cr (35 ms: 1.2, 144 ms: 2.2, 288 ms: 4.2) and Cho (35 ms: 0.1, 144 ms: 1.0, 288 ms: 2.6).

Conclusion : So can be assumed that using TE 35 ms on MRS will obtain the metabolic spectrum which close to normal metabolic value. But, short TE unable to show the Lactate spectrum in case of brain tissue abscess, so it’s required to scanning using TE 35 ms and 144 ms or 288 ms as comparison to get more accurate measurable metabolic value.


Keywords


MRS; Metabolic value; Time Echo value

Full Text:

PDF

References


Aun, Abdel Aziz Kamal. 2016. Role of Magnetic Resonance Spectroscopy (MRS) in Nonlesional Temporal Lobe Epilepsy. The Egyptian Journal of Radiology and Nuclear Medicine. 47, 217-231.

Barrker, Peter B, Alberto Bizzi, Nicola De Stefano, Rao Gullapalli dan Doris

D. M. Lin. 2010. Clinical MR Spectroscopy: Technique and Applications. Cambrige: Cambrige University Press.

Dale, Brian M, Mark A. Brown dan Richard C. Semelka. 2015. MRI Basic Principles and Application Fifth Edition. West Sussex: Wiley Blackwell.

Engel, Jerome, Gretchen L. Birbeck, Amadou Gallo Diop, Satis Jain dan André Palmini. 2005. Epilepsy: Global Issues for the Practicing Neurologist. Editor: Theodore L. Munsat. New York: Demos Medical Publishing.

Hulmansyah, Danil. 2017. Prosedur Pemeriksaan Magnetic Resonance Spectroscopy (MRS) Kepala pada Kasus Tumor Otak di Instalasi Radiologi RSUD Dr. Soetomo Surabaya. Semarang: Repository Politeknik Kesehatan Kemenkes Semarang.

Hutabarat, Leni Maria Br. 2017. Prosedur Pemeriksaan Magnetic Resonance Spectroscopy (MRS) Kepala pada Kasus Alzheimer di Instalasi Radiologi Rumah Sakit Santo Borromeus Bandung. Semarang: Repository Politeknik Kesehatan Kemenkes Semarang.

Hutapea, Charles. 2009. Teknik Pemeriksaan Magnetic Resonance Spectroscopy (MRS) Brain pada Kasus Parkinson. Semarang: Repository Politeknik Kesehatan Kemenkes Semarang.

Kristinawati, Murdiana. 2009. Magnetic Resonance Spectroscopy (MRS) Kepala pada Kasus Hippocampus Epilepsi di RS Spesialis Husada Surabaya. Semarang: Repository Politeknik Kesehatan Kemenkes Semarang.

Mayani, Anita Nur. 2016. Analisa Pemilihan Region of Interest (ROI) pada Magnetic Resonance Spectroscopy (MRS). Semarang: Repository Politeknik Kesehatan Kemenkes Semarang.

Moffet, John R, Brian Ross, Peethambaran Arun, Shikkathur N. Madhavaro dan M. A. A. Namboodiri. 2007. N-Acetylaspartate in the CNS: From Neurodiagnostics to Neurobiology. Progress in Neurobiology. Vol. 81. Hal. 89-131.

Netter, Frank H. 2011. Atlas of Human Anatomy Fifth Edition. Philadelphia: Saunders Elsevier.

Ochoa, Juan G. 2017. Antiepileptic Drugs: Overview, Mechanism of Action, Sodium Channel Blockers. Medscape.

Paulsen, Friedrich dan Jens Waschke. 2011. Sobotta Atlas of Human Anatomy: Head, Neck and Neuroanatomy. Munich: Elsevier.

Rasad, Sjahriar. 2005. Radiologi Diagnostik Edisi kedua. Jakarta: Balai Penerbit FK UI.

Reiser, Maximilliam F, Hedvig Hricak dan Michael Knauth. 2013. MRI in Epilepsy. Berlin: Springer.

Sherwood, Lauralee. 2011. Fisiologi Manusia dari Sel ke Sistem. Edisi: 6. Terjemahan: dr. Brahm U. Pendit. Editor: dr. Nella Yesdelita. Jakarta: Penerbit Buku Kedokteran EGC.

Sugiyono. 2010. Penelitian Pendidikan Pendekatan Kuantitatif, Kualitatif dan R&D. Bandung: Alfabeta.

Stagg, Charlotte dan Doughlas Rothman. 2014. Magnetic Resonance Spectroscopy: Tools for Neuroscience Research and Emerging Clinical Applications. London: Elsevier.

Tchofo, Patrice Jissendi. 2009. Brain 1H-MR Spectroscopy in Clinical Neuroimaging at 3T. Journal of Neuroradiology 36, 24-40. France: Elsevier Masson.




DOI: https://doi.org/10.31983/jimed.v5i2.4476

Article Metrics

Abstract view : 763
Download PDF : 619

Refbacks

  • There are currently no refbacks.



Creative Commons License  Statcounter Global Stats - Browser, OS, Search Engine including Mobile  Usage Share          Dimensions AI | The most advanced scientific research database

             
JURNAL IMEJING DIAGNOSTIK by http://ejournal.poltekkes-smg.ac.id/ojs/index.php/jimed is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

View My Stats