• Title/Summary/Keyword: 혈류증강

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Implementation of Non-Invasive Cerebral Perfusion Platform (비침습적 대뇌관류 장치의 구현)

  • Kwon, Seong-tae;Lee, Jean;Kim, Young-kil
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.21 no.5
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    • pp.1016-1026
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    • 2017
  • Shipping Along with the aging of the total population, its importance is greater cause of stroke, which is one of the diseases are listed cerebral perfusion is about 80%,.ie that the flow of blood flowing to the brain is reduced as the cause. One of the most typical prophylaxis and treatment of these stroke is to enhance cerebral perfusion. There are several ways to increase cerebral blood flow are a therapy through drugs, through surgery and invasive NeuroFlo. NeuroFlo is to insert a catheter to which a balloon is attached into a patient's artery. However, since the method of enhancing conventional cerebral perfusion have been conducted mainly in invasive method, giving a burden to the patient, the problem of inducing a number of complications were noted. In this paper, an attempt to supplement the shortcomings of such invasive brain perfusion increase method, to provide a device to enhance the non-invasively brain perfusion.

Implementation of Non-Invasive Pressurized Cerebral Perfusion Platform (가압식 비침습적 대뇌 혈류 증가 장치의 구현)

  • Lee, Jean;Yu, Hyung-gon;Kim, Young-kil
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.21 no.9
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    • pp.1752-1760
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    • 2017
  • One of the treatments and preventions of strokes such as ischemic stroke is to increase cerebral blood flow. This aims to minimize the size of the stroke by increasing the quantity of blood to the cerebral region circuitously. Several ways to increase cerebral blood flow are a therapy though drugs and through surgery. However these invasive method giving a burden to the patient, the problem of inducing a number of complications were noted. In this thesis, we propose a non-invasive brain flow enhancer to complement the disadvantages of such invasive treatment methods. To compensate for the shortcomings of the existing devices, the patient's blood pressure is accurately measured and the blood pressure is applied to the extremities, thereby increasing blood flow to the femoral region to produce blood clotting treatments. Although somewhat inadequate blood flow increases compared to conventional devices, blood flow can be significantly increased, which can be selectively.

Implementation of Non-Invasive Pressurized Cerebral Perfusion Platform (가압식 비침습적 대뇌 혈류 증가 장치의 구현)

  • Lee, Jean;Yu, Hyeong-gon;Kim, Young-kil
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2017.05a
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    • pp.171-174
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    • 2017
  • One of the treatments and preventions of strokes such as ischemic stroke is to increase cerebral blood flow. This aims to minimize the size of the stroke by increasing the quantity of blood to the cerebral region circuitously. Several ways to increase cerebral blood flow are a therapy though drugs and through surgery. However these invasive method giving a burden to the patient, the problem of inducing a number of complications were noted. In this thesis, we propose a non-invasive cerebral blood flow augmentation device to compensate for the disadvantages of these invasive treatments. To compensate for the shortcomings of the existing cerebral blood flow device, apply a positive measure of the patient's extremities to measure the blood pressure of the patient's blood pressure and conduct a frontal injection of blood flow to increase blood flow. Although somewhat inadequate blood flow increases compared to conventional devices, blood flow can be significantly increased, which can be selectively.

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Surgical Managements of Ischemic Stroke (뇌허혈증의 외과적 치료)

  • Choe, Byeong-Yeon
    • Journal of Yeungnam Medical Science
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    • v.11 no.2
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    • pp.202-212
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    • 1994
  • 뇌헐혈증은 다양한 요인으로 유발될 수 있겠으나 궁극적으로는 국소적 뇌혈류량이 적정수준 이하로 감소됨으로 해서 초래된다. 이렇게 뇌혈류가 감소된 부위의 중심에는 이미 괴사가 일어난 부위도 있겠지만, 그 주위에 현재 뇌기능은 없으나 장차 혈류가 충분해 지면 소생 가능한 penumbra 영역이 있다. 이런 penumbra영역으로 다시 혈류가 충분히 보충되면 뇌기능이 소생되어 호전의 양상을 보이게 되나, 혈류가 계속 저하되어 있으면 비가역적 뇌손상을 받게 되어 증상이 악환된다. 병변 부위는 자율조절기능(autoregulation)이 파괴되어 혈관이 이완된 상태이기 때문에 측부혈행을 통하여 뇌혈류를 공급시키기기 위해서 혈압을 올리면서 혈액유동을 원활하게 해주는 보존적인 방법을 시행하면서 적응증이 되는 경우에는 수술적으로 외내경동맥문합술과 같은 여러 방법의 bypass혈관 수술이나 경동맥내막절제술로 뇌허혈 부위에 뇌혈류를 적극적으로 증강시켜 호전시킬 수 있다.

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Implementation of Non-Invasive Cerebral blood Increasing Platform using PI (혈류지수를 이용한 비침습적 대뇌혈류증가 장치의 구현)

  • Kwon, Seong-tae;Lee, Jean;Kim, Young-kil
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.21 no.9
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    • pp.1761-1770
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    • 2017
  • Treatment for cerebral blood flows is one of the most important treatments for cerebral infarction. There is a concern that the increasing number of cerebral blood flow treatments can cause multiple complications as it is invasive. To compensate for these problems, recently non-invasive cerebral blood flow increases have emerged. However, the current implementation of the non-invasive cerebral blood flow sensor raises the question of speed and accuracy. In this theses, the system aims to minimize the final cortical damage to the cerebrum by implementing a system in a completely different manner to complement the disadvantages of the existing non-invasive cerebral blood flow device. The system measure the PI of the limbs while simultaneously pressing limbs. Blood flow rate is carried out indirectly by increasing blood flow to peer pressure through the limbs in which the PI eips below a certain level. This can be used selectively in patients to increase blood flow.

The Effect of Ginkgo Biloba Extract on the Fractionsted Radiation Therapy in C3H Mouse Fibrosarcoma (Ginkgo Biloba Extract가 C3H 마우스 섬유육종의 분할 방사선치료에 미치는 영향)

  • Kim, Jong-Hoon;Ha, Sung-Whan;Park, Charn-Il
    • Radiation Oncology Journal
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    • v.20 no.2
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    • pp.155-164
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    • 2002
  • Purpose : A ginkgo biloba extract (GBE) has been known as a hypoxic cell radiosensitizer. Its mechanisms of action are increase of the red blood cell deformability, decrease the blood viscosity, and decrease the hypoxic cell fraction in the tumor. The aims of this study were to estimate the effect of GBE on fractionated radiotherapy and to clarify the mechanism of action of the GBE by estimating the blood flow in tumor and normal muscle. Materials and Methods : Fibrosarcoma (FSall) growing in a C3H mouse leg muscle was used as the tumor model. When the tumor size reached 7 mm in diameter, the GBE was given intraperitoneally at 1 and 25 hours prior to irradiation. The tumor growth delay was measured according to the various doses of radiation (3, 6, 9, 12 Gy and 15 Gy) and to the fractionation (single and fractionated irradiation) with and without the GBE injection. The radiation dose to the tumor the response relationships and the enhancement ratio of the GBE were measured. In addition, the blood flow of a normal muscle and a tumor was compared by laser Doppler flowmetry according to the GBE treatment. Results : When the GBE was used with single fraction irradiation with doses ranging from 3 to 12 Gy, GBE increased the tumor growth delay significantly (p<0.05) and the enhancement ratio of the GBE was 1.16. In fractionated irradiation with 3 Gy per day, the relationships between the radiation dose (D) and the tumor growth delay (TGD) were TGD $(days)=0.26{\times}D$ (Gy)+0.13 in the radiation alone group, and the TGD $(days)=0.30{\times}D$ (Gy)+0.13 in the radiation with GBE group. As a result, the enhancement ratio was 1.19 ($95\%$ confidence interval; $1.13\~1.27$). Laser Doppler flowmetry was used to measure the blood flow. The mean blood flow was higher in the muscle (7.78 mL/100 g/min in tumor and the 10.15 mL/100 g/min in muscle, p=0.005) and the low blood flow fraction (less than 2 mL/100 g/min) was higher in the tumor $(0.5\%\;vs.\;5.2\%,\;p=0.005)$. The blood flow was not changed with the GBE in normal muscle, but was increased by $23.5\%$ ( p=0.0004) in the tumor. Conclusion : Based on these results, it can be concluded that the GBE enhanced the radiation effect significantly when used with fractionated radiotherapy as well as with single fraction irradiation. Furthermore, the GBE increased the blood flow of the tumor selectively.

Visualization of Contrast Enhancement Patterns in Ultrasound Images (의료 초음파 영상에서 조영증강 패턴의 가시화 기법)

  • Lee, Jun-Yong;Jung, Joong-Eun;Kim, Ho-Joon
    • Proceedings of the Korea Information Processing Society Conference
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    • 2015.04a
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    • pp.862-863
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    • 2015
  • 본 연구에서는 조영증강 초음파 진단에서 혈류의 패턴을 효과적으로 판단할 수 있게 하기 위하여 조영제의 확산패턴을 영상으로 표현하는 방법론을 제안한다. 초음파 영상에서 조영제의 전이 시간에 대한 파라미터의 가시화 기법과, 단계별 전이패턴을 단일 영상으로 표현하는 방법을 제시함으로써, 병변의 진단 및 분석과정에서 대상 영역 내 혈류의 형태와 속도를 효과적으로 판별할 수 있게 한다. 분석과정의 필요에 따라 영상에서 정밀도를 선택적으로 적용할 수 있도록 하였으며, 노이즈 제거를 위한 필터링 과정과 단계별 전이 시점의 위치에 대한 영역 분할 과정을 거쳐 영상 생성결과를 개선할 수 있도록 하였다.

Implementation of Non-Invasive Cerebral Perfusion Platform (비침습적 대뇌관류 장치의 구현)

  • Lee, Jean;Kwon, Seong-tae;Kim, Young-kil
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2016.10a
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    • pp.105-108
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    • 2016
  • Shipping Along with the aging of the total population, its importance is greater cause of stroke, which is one of the diseases are listed cerebral perfusion is about 80%,.ie that the flow of blood flowing to the brain is reduced as the cause. One of the most typical prophylaxis and treatment of these stroke is to enhance cerebral perfusion. However, since the method of enhancing conventional cerebral perfusion have been conducted mainly in invasive method, giving a burden to the patient, the problem of inducing a number of complications were noted. Therefore, in this paper, an attempt to supplement the shortcomings of such invasive brain perfusion increase method, to provide a device to enhance the non-invasively brain perfusion.

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Diagnostic Imaging of Isolated Splenic Torsion in a German Shepherd Dog (독일셰퍼드 견에서 단독으로 발생한 비장 염전의 영상진단)

  • Lee, Ki-Ja;Jeong, Seong-Mok;Choi, Ho-Jung;Lee, Young-Won
    • Journal of Veterinary Clinics
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    • v.28 no.6
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    • pp.613-616
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    • 2011
  • A 5-year-old male German shepherd dog was presented with a 4 day-history of anorexia and depression. Abdominal radiographs showed a large soft tissue mass and loss of serosal detail. Ultrasonographs revealed splenomegaly with the lacy pattern parenchyma, perivenous hyperechoic region at the splenic hilum, and loss of splenic venous flow. Computed tomographic findings included the enlarged non-enhanced spleen except perivenous region at the splenic hilum and a whirled soft tissue mass at the splenic hilum. Exploratory laparotomy confirmed the diagnosis of splenic torsion. Ultrasonographic findings including lacy appearance, hyperechoic perivenous echogenicity and absence of splenic blood flow and CT findings including no or minimal enhancement of the spleen and a whirled appearance of splenic pedicle could be useful for diagnosing isolated splenic torsion in the dog.

Parametric Imaging with Respiratory Motion Correction for Contrast-Enhanced Ultrasonography (조영증강 초음파 진단에서 호흡에 의한 흔들림을 보정한 파라미터 영상 생성 기법)

  • Kim, Ho-Joon;Cho, Yun-Seok
    • KIPS Transactions on Software and Data Engineering
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    • v.9 no.2
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    • pp.69-76
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    • 2020
  • In this paper, we introduce a method to visualize the contrast diffusion patterns and the dynamic vascular patterns in a contrast-enhanced ultrasound image sequence. We present an imaging technique to visualize parameters such as contrast arrival time, peak intensity time, and contrast decay time in contrast-enhanced ultrasound data. The contrast flow pattern and its velocity are important for characterizing focal liver lesions. We propose a method for representing the contrast diffusion patterns as an image. In the methods, respiratory motion may degrade the accuracy of the parametric images. Therefore, we present a respiratory motion tracking technique that uses dynamic weights and a momentum factor with respect to the respiration cycle. Through the experiment using 72 CEUS data sets, we show that the proposed method makes it possible to overcome the limitation of analysis by the naked eye and improves the reliability of the parametric images by compensating for respiratory motion in contrast-enhanced ultrasonography.