• Title/Summary/Keyword: ${99m}^Tc$

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Preparation of Radiopharmaceutical (II) (방사성의약품(放射性醫藥品) 합성방식(合成方式)에 관(關)한 연구(硏究) -제 II 보-(第 II 報))

  • Kim, You-Sun;Kim, Tae-Young;Uhm, Kyung-Ja
    • The Korean Journal of Nuclear Medicine
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    • v.2 no.1
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    • pp.67-71
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    • 1968
  • Mercury bromo hydroxy propane-$Hg^{203},\;Tc-^{99m}$ colloidal, $Tc-^{99m}$ per technate (from $Tc-^{99m}$ Generator) were prepared and prepared products were tested their clinical usability to give agreeable results. Labelling of HSA by $Tc^{99m}$ and coagulation of HSA to MAA were conducted on a lab. scale. The iodine containning Radiopharmaceuticals; Hippuran, Sodiumiodide (inj), RISA, MAA, Rosebengal, Triolein, Phosphorus protein and $Mercury^{203}$ neohydrine were prepared by the conventional procedure. Total 206. 4 mC of Radiopharmaceuticals were prepared and 141.910 mC of them were distributed to the major users in this country.

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Lung Perfusion Imaging and $Tc^{99m}-Macroaggregated$ Human Serum Albumin

  • Haider, Kh.H.;Ilyas, M.;Hyder, Q.;Kim, Chong-Kook
    • Journal of Pharmaceutical Investigation
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    • v.31 no.2
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    • pp.73-80
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    • 2001
  • Lung perfusion scanning, invariably combined with ventilation studies provides a reliable and non-invasive mean to diagnose lung related pathologies despite the availability of modern techniques such as angiography, magnetic resonance imaging, magnetic resonance angiography, and helical (spiral) computed tomography. The technique involves the generation of images by radiations emitted from radioisotopes introduced in to the lungs. Various radiopharmaceuticals have been proposed and designed to incorporate $Tc^{99m}$ in to macroparticulate form for lung perfusion imaging. However, most of these have associated difficulties such as reproducibility of the product with regards to particle size distribution and poor elimination from the lung capillary bed. $Tc^{99m}$ macroaggregated albumin $(Tc^{99m}-MAA)$ is used extensively for clinical lung perfusion imaging and is considered as the radiopharmaceutical of choice. It is non-toxic, safe, and being biodegradable, is easily eliminated from the lung capillary bed by proteolytic enzyme metabolism and by mechanical forces due to lung movement.

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Study on $^{99m}Tc$-Labeling Mechanism of Bz-MAG3 (Bz-MAG3의 테크네슘표지 기전에 관한 연구)

  • Jeong, Jae-Min
    • The Korean Journal of Nuclear Medicine
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    • v.27 no.2
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    • pp.277-284
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    • 1993
  • $^{99m}Tc$-MAG3는 세뇨관 배설을 하는 신장 기능 영상용 방사성의 약품으로서, 가운데 $^{99m}Tc$이 있고 1개의 유황과 3개의 질소가 아래쪽 면에 정사각형으로 배치되고 정점에 산소가 위치한 4각 피라미드형을 하고 있다. 그러나 시판되는 신장 영상용 MAG3는 반응성이 강한 -SH기에 의한 부산물 생성을 방지하기 위해 benzoyl기로 보호되어 있으므로 보통 조건으로는 잘 표지되지 않고 10분 정도 끓여주어야 한다. 본 실험에서는 실온에서도 benzoyl기를 잘 끊어지게 하는 이미다졸, 아고마틴, 괴리딘등과 같은 염기성 촉매제를 가하고 여러가지 PH에서 실온에서 반응시켜 본 결과, benzoyl기가 끊어지면서 $^{99m}Tc$과 -SH기가 반응하는 첫번째 반응이 일어난 후에도 산성에서 약알칼리성 범위에서는 중간체가 상당량 생성되고 알칼리성 (pH 10.5)이 되어야 최종 산물로 재빨리 넘어가는 것을 발견하였다. 또한 glucarate, medronate, phthalate, acetate 등 여러가지 다른 transchelating agent를 사용하여 같은 반응을 시킨 후에도 생성된 중간체의 HPLC 피크가 같은 retention time (Rt)을 보이는 것으로 보아 이 중간체의 화학구조내에는 transchelating agent를 포함하지 않는 것으로 보인다. 최종 생성물과 중간체의 ImM 시트테인 용액 중에서의 안정도 시험을 하여 본 결과 최종 생성물은 매우 안정하나 중간체는 불안정한 것을 발견하였다.

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Comparing of the Administered Activities and the Effective Dose of the Various Pediatric Dose Formulas of Nuclear Medicine (핵의학검사의 방사성의약품 소아투여량 공식 별 투여량 및 유효선량 비교)

  • Gil, Jong-Won
    • Journal of the Korea Convergence Society
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    • v.8 no.8
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    • pp.147-154
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    • 2017
  • The purpose of this study is to calculate and compare administered activities(MBq) and effective dose(mSv) of the various pediatric dose formulas of pediatric nuclear medicine and to provide base data for the criteria of the optimal administered activities. This study compares dosages and effective doses of 5 types of pediatric dose formulas(Clark rule, Area rule, Webster rule, Young rule, Solomon(Fried) rule) based on the dosage for adults of 2 types of radiopharmaceuticals($^{99m}Tc$-MDP, $^{99m}Tc$-Pertechnetate). The administered activities in adults, which is the criteria for calculating the Pediatric administered activities, used the value from the 'Nuclear Medicine' written by J-G Jeong & M-Ch Lee. and the administered activities by the radioactivity per effective dose(mSv/MBq) of the radiopharmaceuticals for calculating the effective dose used the value from ICRP 80 and the UNSCEAR 2008 Report. As a result of the study, the output of Young rule is the lowest, and its difference between other formulas is from minimum 1.7 times to maximum 3,4 times. The difference between administered activities of $^{99m}Tc$-MDP is maximum 309.9MBq and the effective dose is 3.76mSv. $^{99m}Tc$-Pertechnetate showed the figure at the maximum 154.9MBq and the effective dose has a difference of 5.50mSv. Since the pediatric dose formulas differ not only in administered activities but also in effective doses, the optimal administered activities have to be developed for optimization of medical radiation.

Evaluation of Renal Uptake Rate in 99mTc-DMSA Scan on Pediatrics (소아 99mTc-DMSA 검사에서 신장 섭취율의 평가)

  • Baek, Seungju;Lee, Hyoyeong;Gil, Sanghyeong;Jo, Kyoungnam
    • Journal of the Korean Society of Radiology
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    • v.9 no.4
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    • pp.235-238
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    • 2015
  • The aims of this study were to evaluate the difference of renal uptake rate in $^{99m}Tc-DMSA$ scan on pediatrics by including the bladder. Phantom and Clinical studies were performed. In the phantom study, we put $^{99m}TcO_4{^-}$ (300uCi, 11 MBq) in 3cups filled with distilled water at the rate 1:1:0, 1:1:0.5, 1:1:1, 1:1:2 and were placed Lt kidney, Rt kidney and bladder position on the table. To acquire the image, we used Symbia-E gamma camera from Siemens with preset count method(400,000 counts). In quantitative analysis, the counts of drawing ROIs on the phantom were analyzed. In clinical studies, we analyzed the 20 pediatrics who were examined by $^{99m}Tc-DMSA$ scan. At first, the images were acquired with both kidney and bladder. Secondly we acquired images after shielding the bladder. And the data were compared using a pared t-test by SPSS(ver.22.0). As a result of renal phantom's experiment, we compared with average of uptake rate(%), 1:1:0 was Lt 43.32%, Rt 45.97%, 1:1:0.5 was Lt 35.79%, Rt 36.89%, 1:1:1 was Lt 29.68%, Rt 31.45% and 1:1:2 was Lt 22.89%, Rt 24.32%. There was no correlation between the zoom and uptake rate. The results of patient were that excluded bladder was $29.83{\pm}8.81%$(Lt), $24.29{\pm}6.66%$(Rt) and included bladder was $26.65{\pm}8.03%$(Lt, $21.78{\pm}6.24%$(Rt). This is deemed statistically significant (p<0.05). Renal uptake rate was undervalued because the counts of bladder were included in the total counts.

Lung/Heart Uptake Ratio in Dipyridamole $^{99m}Tc-MIBI$ Myocardial Perfusion Scan in Coronary Artery Disease (관상동맥질환에서 디피리다몰 부하 $^{99m}Tc-MIBI$ 심근스캔의 폐/심장 섭취율)

  • Kang, Keon-Wook;Lee, Dong-Soo;Choi, Chang-Woon;Lee, Kyung-Han;Chung, June-Key;Lee, Myung-Chul;Seo, Jung-Don;Koh, Chang-Soon
    • The Korean Journal of Nuclear Medicine
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    • v.27 no.2
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    • pp.218-222
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    • 1993
  • Lung/heart uptake ratio (L/H R) in $^{201}Tl$ myocardial perfusion scan is a reliable marker for long-term prognosis in patients with coronary artery disease. However, the value of L/H R in $^{99m}Tc-MIBI$ myocardial perfusion scan is controversial in determining the prognosis and severity of the coronary artery disease. The purpose of this study was to determine the clinical implications of L/H R in $^{99m}Tc-MIBI$ myocardial perfusion scan. Forty five patients who received $^{99m}Tc-MIBI$ myocardial perfusion scan were divided into control group and coronary artery disease (CAD) group by their clinical findings, EKGs, and $^{99m}Tc-MIBI$ myocardial perfusion scans. Twenty five patients in CAD group were divided into ischemic group and infarct group according to their results from $^{99m}Tc-MIBI$ myocardial perfusion scan. L/H R was calculated on the anterior planar view, 60 minutes after infusion of dipyridamole. Two regions of interest (ROI) were placed on the left lung area 8 pixel above the left ventricle and on the myocardial area which had the highest radioactivity. In the control group, there were no significant differences of L/H R according to sex and age. No significant difference of L/H R was found between the control and CAD group ($0.26{\pm}0.06,\;0.29{\pm}0.05$, p>0.05). In the CAD group, there was also no significant difference of L/H R between the ischemic group and infarct group ($0.29{\pm}0.07,\;0.30{\pm}0.04$, p>0.05). L/H R in CAD group did not show correlations with the defect area of stress polar map (r=0.18, p >0.05) and with the sum of severity weighted extent score or reversibility score which represent severity and extent of myocardial perfusion defect area in stress (r=0.18, p>0.05). We conclude that it is difficult to use L/H R as a marker for severity of CAD in dipyridamole $^{99m}Tc-MIBI$ myocardial perfusion scan.

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Synthesis Characterization and Biodistribution of $^{99m}Tc$-Ethyl-3-Isocyanobutyrate as a New Myocardial Perfusion Agent (새로운 심관관류 영상 화합물로서 $^{99m}Tc$-Ethyl-3-Isocyano-butyrate의 합성, 표지 및 체내동태에 대한 연구)

  • Lee, Myung-Chul;Cho, Jung-Hyuck;Lee, Dong-Soo;Lim, Sang-Moo;Oh, Seung-Joon;Chung, Soo-Wook;Lee, Kyung-Han;Jeong, Jae-Min;Chung, June-Key;Koh, Chang-Soon
    • The Korean Journal of Nuclear Medicine
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    • v.27 no.2
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    • pp.223-232
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    • 1993
  • Technetium labeled isonitrile analogues are widely used as myocardial perfusion imaging agents. We synthesized and characterized a new isonitrile compound, ethyl 3-isocyanobutyrate(EIB). Proton and $^{13}C$ NMR spectroscopy and thin layer chromatography with a $C_{18}$ coat was performed. EIB was easily labeled with $^{99m}TcO_4^-$- with sodium dithionite. The labeling efficiency measured by RP-HPLC was over 95%. The labeled product was stable with dilution in normal saline and with prolonged incubation at room temperature. There was no formation of secondary products or free $^{99m}TcO_4^-$. In vivo kinetics study of $^{99m}Tc$ (I) labeled EIB in rabbits showed adequate myocardial uptake, good contrast against lung background, and relatively rapid liver clearance. The heart to lung ratio was over 2.5 and the heart to liver ratio was approximately from 0.4 to 5 at 60 minutes post injection. Hepatic clearance of $^{99m}Tc-MIBI$ was faster ($t_{1/2}$=6 minutes) than that of $^{99m}Tc-MIBI$. In vivo kinetics observed in dog was similar to that in rabbit but there was faster gallbladder filling, and thus lower liver background. SPECT imaging of the canine myocardium showed favorable imaging characteristics. However, biodistribution in mice demonstrated a myocardial % injected dose/organ of less than 0.1%. This was thought to be due to interspecies difference in plasma esterase activity. In human plasma, $^{99m}Tc$ ( I ) labeled EIB was stable for at least 2 hours, without production of secondary products by HPLC. We conclude that ethyl 3-isocyanobutyrate may be a potential new myocardial perfusion imaging agent and deserves further investigation as to its usefulness for clinical use.

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Detection of Atherosclerotic Lesion with $^{99m}Tc-LDL$ Scintigraphy ($^{99m}Tc-LDL$ (Low Density Lipoprotein)신티그라피를 이용한 동맥경화병소 진단)

  • Kim, Deog-Yoon;Koh, Eun-Mi;Woo, Jeong-Taek;Kim, Sung-Woon;Yang, In-Myung;Kim, Jin-Woo;Kim, Young-Seol;Kim, Kwang-Won;Choi, Young-Kil
    • The Korean Journal of Nuclear Medicine
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    • v.26 no.2
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    • pp.257-264
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    • 1992
  • Diagnostic approaches such as angiography, ultrasound, computed tomography and nuclear magnetic resonance have limitation for contributing to the early clinical diagnosis of atherosclerosis. Recently, $^{99m}Tc-labelled$ low density lipoprotein was developed to detect early atherosclerotic lesion by external imaging with gamma camera. To determine whether $^{99m}Tc-LDL$ scintigraphy can visualize the active atherosclerotic lesion, rabbits were injected with $^{99m}Tc-LDL$, 3 months after feeding dietary fat (lanolin) and we obtained following results. 1) Labelling efficiency of $^{99m}Tc-LDL$ was $79\sim88%$. 2) Biodistribution study of normal rabbits with $^{99m}Tc-LDL$ revealed the high activities in spleen, adrenal gland, liver, kidney which are major organs of high metabolic rate of LDL. 3) Three months after feeding lanolin, serum cholesterol was markedly increased from $74{\pm}17mg/dl$ to $979{\pm}153mg/dl$ and histologic study of aorta after sacrificing the rabbit demonstrated marked atherosclerotic changes. 4) Atherosclerotic lesion of abdominal aorta which was confirmed with histologic study could be demonstrated in $^{99m}Tc-LDL$ scintigraphy after feeding lanolin for 3 months. In conclusion, the results of this preliminary investigation suggest that it may be possible to image active atheromatous lesion with $^{99m}Tc-LDL$. It is anticipated that this promising agent may allow the in vivo monitoring of preclinical atherosclerotic lesions and may be useful to evaluate the metabolic pathway of LDL in humans.

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Transient Prolonged Stunning by Dipyridamole Stress Proved by Post-stress(1 hour) and 24 hour Tc-99m-MIBI Gated SPECT (반복 게이트 심근 Tc-99m-MIBI SPECT로 확인한 디피리다몰 부하에 의한 일과성 심근기절현상)

  • Lee, Dong-Soo;Yoon, Seok-Nam;Lee, Won-Woo;Chung, June-Key;Lee, Myoung-Mook;Lee, Myung-Chul;Koh, Chang-Soon
    • The Korean Journal of Nuclear Medicine
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    • v.31 no.1
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    • pp.57-66
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    • 1997
  • We performed 1st day Tc-99m-sestamibi gated SPECT with dipyridamole/rest T1-201 SPECT and 2nd day 24 hour delay T1-201 SPECT/rest Tc-99m-sestamibi gated SPECT in 27 patients with coronary artery disease(24) or having chest pain(3). Stress and rest Tc-99m-sestamibi gated SPECT was acquired at 60min post-injection. A 4-point scoring system(0 to 3 for normal to absent tracer uptake) for 17 segments was used. Wall motion was scored on another 4 point scale(0 to 3 for normal to dyskinesia) in the 1st day post-stress gated and the 2nd day rest gated SPECT. Post-stress gated SPECT showed wall motion abnormality in 94 segments(20%). Fifty-five segments among these 94 showed the same wall motion between post-stress and rest gated SPECT: i.e. 1-1 23 segments, 2-2: 29 segments, 3-3: 3 segments. Remaining 39 segments(41.5%) showed different wall motion between post- stress and rest Tc-99m-sestamibi gated SPECT. Twenty one segments with wall motion abnormality had normal perfusion(rest : 15 segments, 24 hour delay: 6 segments) at either rest or 24 hour delay. Fifteen among these 21 segments showed persistent post-stress and the 2nd day rest wall motion abnormality(persistent stunning). However, in 6 segments with pro-longed (1 hour after stress) stunning, abnormal wall motion did improve in the 2nd day rest Tc-99m-sestamibi gated SPECT(transient prolonged stunning). These 6 segments had normal perfusion at rest(n=4) or at 24 hour delay(n=2). Post stress wall motions showed significantly higher scores in persistent stunning than in prolonged transient stunning(P value<0.05). It was concluded that we could find stunned myocardium with gated Tc-99m-sestamibi SPECT at either post-stress or rest and that some myocardial walls of post-stress 1 hour gated SPECT did not show truly rest wall motion. So, we should be cautious if we use post-stress Tc-99m-sestamibi wall motion to assess rest wall motion.

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The Clinical Efficacy of Lung to Heart Ratio in 1 Hour Delayed Tc-99m Tetrofosmin Gated Myocardial SPECT after Adenosine Stress: Comparison with Coronary Angiography (아데노신 부하 1시간 지연 Tc-99m tetrofosmin 게이트 심근 SPECT에서 관찰되는 심장 대 폐 섭취비의 임상적 유용성: 관상동맥조영술과의 비교)

  • Won, Kyoung-Sook
    • Nuclear Medicine and Molecular Imaging
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    • v.42 no.5
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    • pp.362-368
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    • 2008
  • Purpose: It is well known that lung to heart ratio (LHR) is one of the high risk findings in TI- 201 myocardial perfusion SPECT. We evaluated the clinical efficacy of LHR to identify severe coronary artery disease in adenosine stress Tc-99m tetrofosmin gated myocardial perfusion SPECT (gSPECT). Materials and Methods: The study population was 157 patients who underwent both adenosine stress Tc-99m gSPECT and coronary angiography (CAG) within one month. According to the results of CAG and gSPECT LHR and the incidence of increased LHR were compared. Results: Among 53 patients with normal coronary arteries increased LHR was found in 2 patients (3.8%) and 0 in 44 patients (0%) with one vessel disease, 2 in 27 with two vessel disease (7.4%) and 8 in 33 with triple vessel disease (24.2%). Significant differences were found in LHR between subgroups of summed stress score, summed rest score and LV ejection fraction (LVEF). There were weak negative correlation between LHR and LVEF and weak positive correlation between LHR and SSS and SRS. Conclusion: Increased LHR had higher incidence in patients with triple vessel disease, severe LV dysfunction and/or extensive perfusion defect than those of normal group. Although its sensitivity might be low to identify severe coronary artery disease, LHR could be helpful in abnormal myocardial perfusion SPECT to stratify risk and prognosis.