• Title/Summary/Keyword: PRIMO

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Histological study of the primo vascular system on the falciform ligament (Falciform ligament(간겸상인대)에서 관찰되는 프리모 조직의 조직학적 특성 연구)

  • Yeon, Sun-Hee;Kwon, O-Sang;Lee, Sae-Bhom;Cho, Seong-Jin;Choi, Kwang-Ho;Lee, Sang-Hun;Choi, Sun-Mi;Ryu, Yeon-Hee
    • Korean Journal of Oriental Medicine
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    • v.18 no.2
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    • pp.131-137
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    • 2012
  • Objectives : Primo vascular system is known to new circulatory system and suggested as a anatomical structure of meridian system. Primo-vessels are present throughout the whole body. The purpose of this study is to identify primo tissues taken from falciform ligament and to compare with organ surface primo tissue, blood vessel and lymph vessel. Methods : Male Sprague-Dawley rats (8weeks old, 250~320g) used for this study. The medial line of the abdomen was dissected and searched for primo tissues in falciform ligament and on the internal organs using stereomicroscope. We performed serial cross section and histological investigations. The tissues were stained with hematoxylin-eosin and Masson's trichrome. Results : 1. The primo tissues attached on the falciform ligament had white color and length of 5~8mm. 2. We could observe primo tissues are classified with ligament tissues. 3. Histologically, primo tissue on falciform ligament and organ surface primo tissue could be considered same tissue. Conclusions : In this study, we observed primo tissue discovered on the falciform ligament. And we also histologically compared such discovered primo tissue with organ surface primo tissue. Consequently, we could consider that two tissues have histological similarity and possibility of connection in one network system.

Visualizing the Peripheral Primo Vascular System in Mice Skin by Using the Polymer Mercox

  • Stefanov, Miroslav;Kim, Jungdae
    • Journal of Pharmacopuncture
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    • v.18 no.3
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    • pp.75-79
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    • 2015
  • Objectives: As the peripheral part of the primo vascular system (PVS) is difficult to visualize, we used a vascular casting material Mercox injected directly into the skin to take advantage of a simple procedure to visualize PVS structures as primo vessels (PVs) and primo nodes (PNs) in the skin. Methods: Two colors of the polymer Mercox were injected into mouse skin. After a partial maceration of the whole body with potassium hydroperoxide solution, we anatomized it under a stereomicroscope to trace the Mercox that had been injected into the PVS. Results: Injection of Mercox directly into the skin allowed the PVs and the PNs to be visualized. This approach can fill the PVS when the material is ejected out of the PVs or PNs. The shapes, sizes, and topographic positions of the nodes and the vessels are the hallmarks used to identify the PVS in skin when Mercox is used as a tracer. Conclusion: The direct injection of the casting material Mercox into skin, with modified partial maceration procedures, is a promising method for visualizing the PVs and the PNs in the peripheral part of the PVS in skin. The polymer Mercox can penetrate through the primo pores of the primo vascular wall and fill the PVs and the PNs. The data prove that PVs and PNs exist on the hypodermal layer of the skin.

The Magnetic Mobility of Biomolecule Sanals of the Lymphatic Primo Vascular System

  • Noh, Young-Il;Hong, Ye-Ji;Shin, Jun-Young;Rhee, Jin-Kyu;Lee, Sang-Suk
    • Journal of Magnetics
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    • v.18 no.2
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    • pp.188-191
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    • 2013
  • The magnetic properties for sanal's mobility inside of the lymphatic primo vascular system, the so-called Kyungrak (or meridian) system, are investigated under a low static magnetic field with the anatomy technology and optical microscope. One sanal with a size of 1 ${\mu}m$ under microscope selected and separated from the primo vessels of the primo vascular system are observed in rabbits' lymphatic vessels around abdominal aorta and placed in PBS solution with petridish. The moving displacement of sanal versus the measuring time of 20 Oe below a magnetic field of 80 Oe is stronger in dominanting dependence according to the x-direction than y-direction.

Structural and Biochemical Characterization of the Two Drosophila Low Molecular Weight-Protein Tyrosine Phosphatases DARP and Primo-1

  • Lee, Hye Seon;Mo, Yeajin;Shin, Ho-Chul;Kim, Seung Jun;Ku, Bonsu
    • Molecules and Cells
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    • v.43 no.12
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    • pp.1035-1045
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    • 2020
  • The Drosophila genome contains four low molecular weight-protein tyrosine phosphatase (LMW-PTP) members: Primo-1, Primo-2, CG14297, and CG31469. The lack of intensive biochemical analysis has limited our understanding of these proteins. Primo-1 and CG31469 were previously classified as pseudophosphatases, but CG31469 was also suggested to be a putative protein arginine phosphatase. Herein, we present the crystal structures of CG31469 and Primo-1, which are the first Drosophila LMW-PTP structures. Structural analysis showed that the two proteins adopt the typical LMW-PTP fold and have a canonically arranged P-loop. Intriguingly, while Primo-1 is presumed to be a canonical LMW-PTP, CG31469 is unique as it contains a threonine residue at the fifth position of the P-loop motif instead of highly conserved isoleucine and a characteristically narrow active site pocket, which should facilitate the accommodation of phosphoarginine. Subsequent biochemical analysis revealed that Primo-1 and CG31469 are enzymatically active on phosphotyrosine and phosphoarginine, respectively, refuting their classification as pseudophosphatases. Collectively, we provide structural and biochemical data on two Drosophila proteins: Primo-1, the canonical LMW-PTP protein, and CG31469, the first investigated eukaryotic protein arginine phosphatase. We named CG31469 as DARP, which stands for Drosophila ARginine Phosphatase.

A primo vessel-like structure in a dog with inflammatory pseudotumor

  • Cho, Sung-Jin;Hong, Sun-Hwa;Han, Sang-Jun;Kim, Ok-Jin
    • Korean Journal of Veterinary Service
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    • v.35 no.1
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    • pp.77-82
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    • 2012
  • Inflammatory pseudotumor (IPT) is a term defining a mass characterized microscopically by a proliferation of bland mesenchymal spindle cells infiltrated by diffuse mixed inflammatory cells with a predominance of plasma cells and lymphocytes. Here, we show the primo vessel-like structure of the primo-vascular system (PVS) in a dog with IPT. A 6-years old male Mongrel dog was diagnosed with an abnormal mass (diameter 5.5 cm, weight 22 g) near left preputial area. The dog was submitted to the surgical detectomy of the mass. During the surgical operation, we observed primo vessel-like material. After fixations, the masses appeared macroscopically as lipoid-like, firm, white to grey masses, measuring $5{\times}8cm$. Histologically, cellular infiltration into the muscular layers was frequently seen. The mesenchymal proliferation remained the main component of the mass and was composed of myofibroblastic-like spindle cells characterized by globular, irregular nuclei containing open chromatin and a prominent nucleolus. On the basis of the histopathologic lesions, the subcutaneous mass was diagnosed as IPT. Also, we detected a primo vessel-like structures in some areas of the IPT tissues. These were observed as novel thread-like structures and bundle of tubular structures. To our knowledge, this report is the first case of primo vessel-like structure in a dog with IPT.

Publication Review about Discriminative Characteristics of Organ Surface Primo Vessel Based on Kim Bonghan's Paper (Organ Surface Primo Vessel의 감별특성에 대한 문헌고찰 - 김봉한의 논문을 중심으로)

  • Lee, Sang-Hun;Zhang, Wenji;Ahn, Seong-Hun;Sohn, In-Chul;Ryu, Yeon-Hee
    • Korean Journal of Acupuncture
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    • v.28 no.1
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    • pp.125-137
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    • 2011
  • Objectives : The Primo system is a hypothesis on the new circulation system. It orginates from Bonghan theory. Bonghan theory is about the anatomical substance of acupuncture point and meridian system. It has been regarded as a misunderstanding of the lymphatic system or as a made-up story for the past 40 years. Since 2002, many studies have been published either to support the theory or to refute the old viewpoint. But there are still difficulties about the proper sampling. The purpose of this study is to find out the discriminative criteria of Organ Surface Primo sytem by reviewing the Kim Bonghan's publications. Methods : Abstract of description about the Organ Surface Primo system in 5 publications of Kim Bonghan are weighted by the reverse order of publication. Results and Conclusions : 6 characters of anatomical structure and 11 characters of histological structure are founded as repeated descriptions. We hope that this summarized characteristics would be a good guide to Primo system experiments.

Determination of Initial Beam Parameters of Varian 2100 CD Linac for Various Therapeutic Electrons Using PRIMO

  • Maskani, Reza;Tahmasebibirgani, Mohammad Javad;Hoseini-Ghahfarokhi, Mojtaba;Fatahiasl, Jafar
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.17
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    • pp.7795-7801
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    • 2015
  • The aim of the present research was to establish primary characteristics of electron beams for a Varian 2100C/D linear accelerator with recently developed PRIMO Monte Carlo software and to verify relations between electron energy and dose distribution. To maintain conformity of simulated and measured dose curves within 1%/1mm, mean energy, Full Width at Half Maximum (FWHM) of energy and focal spot FWHM of initial beam were changed iteratively. Mean and most probable energies were extracted from validated phase spaces and compared with related empirical equation results. To explain the importance of correct estimation of primary energy on a clinical case, computed tomography images of a thorax phantom were imported in PRIMO. Dose distributions and dose volume histogram (DVH) curves were compared between validated and artificial cases with overestimated energy. Initial mean energies were obtained of 6.68, 9.73, 13.2 and 16.4 MeV for 6, 9, 12 and 15 nominal energies, respectively. Energy FWHM reduced with increase in energy. Three mm focal spot FWHM for 9 MeV and 4 mm for other energies made proper matches of simulated and measured profiles. In addition, the maximum difference of calculated mean electrons energy at the phantom surface with empirical equation was 2.2 percent. Finally, clear differences in DVH curves of validated and artificial energy were observed as heterogeneity indexes were 0.15 for 7.21 MeV and 0.25 for 6.68 MeV. The Monte Carlo model presented in PRIMO for Varian 2100 CD was precisely validated. IAEA polynomial equations estimated mean energy more accurately than a known linear one. Small displacement of R50 changed DVH curves and homogeneity indexes. PRIMO is a user-friendly software which has suitable capabilities to calculate dose distribution in water phantoms or computerized tomographic volumes accurately.

Isolation and Yield Enhancement of Primo Vessels Inside of Rabbit Lymph Vessels by Using Sound Wave Vibration (음파진동을 이용한 토끼의 림프관내 프리모관 분리와 수득률 향상 특성 연구)

  • Heo, June-Yi;Chung, Ji-Hwan;Choi, Dong-Hee;Lee, Hye-Rie;Noh, Young-Il;Han, Moon-Young;Jeong, Yeon-Chul;Lee, Jae-Yeon;Seo, Kyeong-Ju;Park, Ji-Su;Kim, Nu-Ri;Lee, Kyu-Hwan;Bae, Yu-Mi;Lee, Eun-Sae;Lee, Sang-Suk
    • Korean Journal of Acupuncture
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    • v.30 no.2
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    • pp.122-130
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    • 2013
  • Objectives : The fact that Primo vessel as a new circulatory system exists in the lymphatic vessels of the rabbits which were treated with sound wave vibration therapy is confirmed with the anatomy of rabbit. Isolated Primo vessel is investigated, particularly focused on morphological features. Methods : Before the anatomy, a rabbit in a cage box was laid on the sound wave vibrating apparatus and then is applied by various frequencies and intensities for 30 min with music that a rabbit likes. Results : Isolation and observation of Primo vessel was easier when the lymphatic circular system was applied at a certain frequency and intensity of 7 Hz and 50. The probability of observation for Primo vessel enhanced to 90%. Conclusions : The sound wave therapy by a vibration apparatus is considered necessary as major process to facilitate the reproducible isolation and observation of Primo vessel.

The Low and Static Magnetic Field Effects on the Motion of Biomolecule Sanals Inside the Primo Vascular System (낮은 정자기장 하에서 프리모 시스템 산알의 운동특성 연구)

  • Lee, Sang-Suk;Soh, Kwang-Sup
    • Journal of the Korean Magnetics Society
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    • v.21 no.6
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    • pp.219-224
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    • 2011
  • The motion features of sanals inside of the primo vascular system (PVS), that is so-called the Kyungrak system, are investigated under a low static magnetic field by using the anatomy technology and optical microscope. The sanals with a size of about 1 selected and separated from the primo vessel and node of the real PVS inside of the surface of the internal organs are observed from rabbits' abdominal wall and dipped with PBS liquid inside of petri dish. The sanal's moving velocity along the direction of magnetic field (xdirection) and perpendicular to the direction of magnetic field (y-direction) under the low magnetic field of 0 Oe, 20 Oe, 40 Oe, 60 Oe, and 80 Oe, respectively, is observed below a internal temperature of $38^{\circ}C$. Ten sanals' moving velocities versus magnetic field are shown two differently dominant tendencies with an average velocity of 0.9 pixel/s and a random velocity according to the x-direction and y-direction, respectively. This experimental results imply that the rotating motion of sanal with nuclei DNA composed of many inorganic magnetic materials of Mn and Co is monotonically weakened by the increase of applied magnetic field.