• 제목/요약/키워드: Tissue processing

검색결과 291건 처리시간 0.025초

폐암 선암 생존시간 예측을 위한 병리학적 영상분석 (Survival Time Prediction for Adenocarcinoma Lung Cancer based on Pathological Image Analysis)

  • 보티트엉비;김애라;이태범;김수형
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2021년도 추계학술발표대회
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    • pp.779-782
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    • 2021
  • Survival time analysis is one of the main methods used by the pathologist to prognosis for cancer patients. In this paper, we strive to estimate the individual survival time of Adenocarcinoma (ADC) lung cancer patients from pathological images by adopting the convolutional neural network called the SurvPatchV1 model. First, we extracted tissue patches from the whole-slide images (WSI) to deal with extremely large dimensions of WSI. Then the survival time of each patch is estimated through the SurvPatchV1 model. Finally, the individual survival time of each patient is computed. The proposed method is trained and tested on the subset of the NLST dataset for ADC lung cancer. The result demonstrates that our model can obtain all tissue information in lieu of only tumor information in a whole pathological image to estimate the individual survival time.

QUANTITATIVE MONITORING OF TISSUE OXYGENATION BY TIME-RESOLVED SPECTROSCOPY

  • Yamashita, Yutaka;Oda, Motoki;Ohmae, Etsuko;Tsuchiya, Yutaka
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.2101-2101
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    • 2001
  • Near-infrared spectroscopy is now being used in clinical diagnosis as a non-invasive monitor of tissue oxygenation state. However, due to lack of the optical pathlength information within tissues, it is still difficult to quantitate the hemoglobin concentration with present CW techniques. Time-resolved spectroscopy (TRS), which measures temporal profiles of emerging light from tissues, enables to estimate the pathlength distribution within tissues by converting time to distance. Consequently, quantitative measurement of tissue oxygenation is possible by analyzing the data with optical diffusion equation 1) or our Microscopic Beer-Lambert law2). Time-Resolved Spectroscopy System : TRS-1O3) Our TRS-10 system consists of a three-wavelength (759, 797, 833 nm) PLP as pulsed light source, a high speed PMT with high sensitivity and three signal-processing circuits for time-resolved measurement (CFD/TAC, A/D converter and histogram memory). Optical pulse train consisting of 759, 797 and 833nm is generated by PLP at 5㎒ repetition rate and irradiated a sample through a single optical fiber. The diffuse-reflected light from the sample is collected by a bundle fiber and then detected by the PMT for single photon measurement. After being amplified by a following fast amplifier, the electrical signals for each wavelength are picked out by CFD/TAC module. Then, a signal processing circuit integrated the TRS data for each wavelength individually. The simultaneous TRS measurement for three wavelengths achieved without any optical or mechanical switch. Experiment and Results Input and detection fibers of TRS-10 were attached at the human forehead with a fiber separation of 3cm. TRS measurements were continuously performed for about 20 minutes including 2 minutes hyper ventilation. It was observed that the total hemoglobin concentration was decreasing during the hyper ventilation and recovered until 2 minutes after hyper ventilation. On the other hand, the deoxy-hemoglobin concentration began to increase after hyper ventilation and had its peak at around 2 minute later, showing 502 drop from 75% to 60% due to inhibition of breathing by performing hyper ventilation. The results showed that this system might be able to quantitate the concentrations of oxy- and deoxy-hemoglobin in the human brain.

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Processing of Porous Ceramics by Direct Foaming: A Review

  • Pokhrel, Ashish;Seo, Dong Nam;Lee, Seung Taek;Kim, Ik Jin
    • 한국세라믹학회지
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    • 제50권2호
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    • pp.93-102
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    • 2013
  • Macro porous ceramics possessing controlled microstructures and chemical compositions have increasingly proven useful in the industrial sphere. Their sintered structures have found application in both established and emerging, areas such as thermal insulation in buildings, filtration of liquids and molten materials, refractory insulation, bone scaffolds and tissue engineering. Stable ceramic foams can be formed by wet chemical methods using inorganic particles(e.g., $Al_2O_3$ or $SiO_2$). The wet foams are dried and sintered with improved porosity and mechanical properties. This review examines the different techniques used to prepare porous ceramics from ceramic foams, focusing on the explanation of this versatile method of direct foaming from the past to the present. Comparisons of the processes and the processing parameters are explained with the produced microstructures.

다축 RP 소프트웨어 기술을 이용한 스캐폴드 제조 장비 개발 (Development of Scaffold Fabrication System using Multi-axis RP Software Technique)

  • 박정환;이준희;조현욱;이수희;박수아;김완두
    • 한국정밀공학회지
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    • 제29권1호
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    • pp.33-40
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    • 2012
  • The scaffold serves as 3D substrate for the cells adhesion and mechanical support for the newly grown tissue by maintaining the 3D structure for the regeneration of tissue and organ. In this paper, we proposed integrated scaffold fabrication system using multi-axis rapid prototyping (RP) technology. It can fabricate various types of scaffolds: arbitrary sculptured shape, primitive shape, and tube shape scaffolds by layered dispensing biocompatible/ biodegradable polymer strands in designated patterns. In order to fabricate the 3D scaffold, we need to generate the plotting path way for the scaffold fabrication system. We design a data processing program - scaffold plotting software, which can convert the 3D STL file, primitive and tube model images into the NC code for the system. Finally, we fabricated the customized 3D scaffolds with high accuracy using the plotting software and the fabrication system.

Representation Techniques for 4-Dimensional MR Images

  • Homma, Kazuhiro;Takenaka, Kenji;Nakai, Yoshihiko;Hirose, Takeshi
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.429-431
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    • 2002
  • Metabolic analysis of biological tissues, the interventional radiology in MRT (Magnetic Resonance Treatment) and for clinical diagnoses, representation of 4-Dimensional (4D) structural information (x,y,z,t) of biological tissues is required. This paper discusses image representation techniques for those 4D MR Images. We have proposed an image reconstruction method for ultra-fast 3D MRI. It is based on image interpolation and prediction of un-acquired pictorial data in both of the real and the k-space (the acquisition domain in MRI). A 4D MR image is reconstructed from only two 3D MR images and acquired a few echo signals that are optimized by prediction of the tissue motion. This prediction can be done by the phase of acquired echo signal is proportioned to the tissue motion. On the other hand, reconstructed 4D MR images are represented as a 3D-movie by using computer graphics techniques. Rendered tissue surfaces and/or ROIs are displayed on a CRT monitor. It is represented in an arbitrary plane and/or rendered surface with their motion. As examples of the proposed representation techniques, the finger and the lung motion of healthy volunteers are demonstrated.

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수지 재접합 실패시 허혈 상태의 수지골과 피판술을 이용한 구제술 (Salvage of Failed Digital Replantation Using Necrotizing Phalangeal Bone and Flap Coverage)

  • 권부경;정덕환;이재훈
    • Archives of Reconstructive Microsurgery
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    • 제16권2호
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    • pp.86-92
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    • 2007
  • Failure of reattachment of finger is inevitable in replantation surgery and that failure rate is about 10 % are reported in many authors. Management of the failed finger replantation is challenge to microsurgeons. We report 7 cases of thumb reconstruction after failure of replantation. The reconstructive surgery composed with early debridement of soft tissue that are under gangrenous processing, extract the phalangeal bone without any soft tissues. Osteosynthesis of the extracted phalangeal bone with host phalangeal bone. The exposed bony portion covered with vascularized flaps such as reverse radial forearm pedicled flap, free radial forearm flap and neurovascular island finger flap. This procedure underwent within a week after vascular insufficiency developed. All of the flaps are survived, bone union achieved within 3 months. The function and external appearance of the reconstructed thumb were encouraging; pinch power was average 1.2 pounds. Early removal of necrotizing soft tissue followed by covering none vascular phalangeal bone which extracted from the dead phalanx with vascularized flap is one of the useful alterative solutions in failed replantation surgery in hand.

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Designing Materials for Hard Tissue Replacement

  • Nath, Shekhar;Basu, Bikramjit
    • 한국세라믹학회지
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    • 제45권1호
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    • pp.1-29
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    • 2008
  • In last two decades, an impressive progress has been recorded in terms of developing new materials or refining existing material composition/microstructure in order to obtain better performance in biomedical applications. The success of such efforts clearly demands better understanding of various concepts, e.g. biocompatibility, host response, cell-biomaterial interaction. In this article, we review the fundamental understanding that is required with respect to biomaterials development, as well as various materials and their properties, which are relevant in applications, such as hard tissue replacement. A major emphasize has been placed to present various design aspects, in terms of materials processing, of ceramics and polymer based biocomposites, Among the bioceramic composites, the research results obtained with Hydroxyapatite (HAp)-based biomaterials with metallic (Ti) or ceramic (Mullite) reinforcements as well as $SiO_2-MgO-Al_2O_3-K_2O-B_2O_3-F$ glass ceramics and stabilized $ZrO_2$ based bioinert ceramics are summarized. The physical as well as tribological properties of Polyethylene (PE) based hybrid biocomposites are discussed to illustrate the concept on how can the physical/wear properties be enhanced along with biocompatibility due to combined addition of bioinert and bioactive ceramic to a bioinert polymeric matrix. The tribological and corrosion properties of some important orthopedic metallic alloys based on Ti or Co-Cr-Mo are also illustrated. At the close, the future perspective on orthopedic biomaterials development and some unresolved issues are presented.

형광과 레이저 스펙클 대조도 이미징을 결합한 실시간 의료영상 시스템 개발 (Development of a Real-time Medical Imaging System Combined with Laser Speckle Contrast Imaging and Fluorescence Imaging)

  • 심민재;김이근;고택용;최진혁;안예찬
    • 대한의용생체공학회:의공학회지
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    • 제42권3호
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    • pp.116-124
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    • 2021
  • It is important to differentiate between the target tissue (or organ) and the rest of the tissue before incision during surgery. And when it is necessary to preserve the differentiated tissues, the blood vessels connected to the tissue must be preserved together. Various non-invasive medical imaging methods have been developed for this purpose. We aimed to develop a medical imaging system that can simultaneously apply fluorescence imaging using indocyanine green (ICG) and laser speckle contrast imaging (LSCI) using laser speckle patterns. We designed to collect images directed to the two cameras on a co-axial optical path and to compensate equal optical path length for two optical designs. The light source used for fluorescence and LSCI the same 785 nm wavelength. This system outputs real-time images and is designed to intuitively distinguish target tissues or blood vessels. This system outputs LSCI images up to 37 fps through parallel processing. Fluorescence for ICG and blood flow in animal models were observed throughout the experiment.

SLS에 의한 PCL/TCP 복합체 제작공정변수의 최적화 (Processing Optimization of PCL/TCP Composites Produced by Selective Laser Sintering)

  • 정하승;지해성
    • 한국CDE학회논문집
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    • 제13권6호
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    • pp.421-428
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    • 2008
  • This article investigates the fabrication of polycaprolactone (PCL) composites filled with different volume fractions (10-30%) of tricalcium phosphate (TCP) by selective laser sintering (SLS) for tissue engineering scaffolds. Optimal processing parameters for each composition were developed by design of experiments (DOE). Specimens for compressive testing for each composition were fabricated and tested. The results showed that the compressive modulus increases as a function of TCP volume fraction. The experimentally measured compressive moduli were compared with moduli predicted by Halpin's theoretical model and were found to be in excellent agreement. This result proved that experimentally determined processing parameters for each composition were well optimized.

조직투명화 기술을 통한 3차원적 접근 (Three-Dimensional Approaches in Histopathological Tissue Clearing System)

  • 이태복;이재왕;전진현
    • 대한임상검사과학회지
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    • 제52권1호
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    • pp.1-17
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    • 2020
  • 조직병리학에서 현미경을 이용한 삼차원적 접근법은, 이차원 단면의 조직 슬라이드에서 박절 과정 중 부차적으로 발생하는 공간정보의 손실로 인하여 확인하기 어려웠던, 조직 내부 분자들의 공간적 배열, 상호결합, 구조적인 형태와 이들의 통합적인 공간적 정보체로서, 조직 내에 복잡하게 얽혀진 다양한 정보를 풀어내는데 있어서 복합적인 데이터를 제시하여 준다. 이광자 현미경(two-photon microscope)과 자동화된 보정환(correction collar)이 탑재된 고성능 대물렌즈의 개발과 같은 광학장비 영역의 발전은 조직투명화 과정을 거치지 않은 두꺼운 시료의 이미징에 있어서 광학적인 이론과 실체 사이에 존재하는 격차를 줄이는데 기여하였다고 할 수 있다. 하지만, 대물렌즈의 길어진 작동범위(working distance)와 최적화된 고강도 레이저의 사용으로 얻게 되는 이점들은 세포 내 각 구성요소의 굴절률(refractive index) 차이로 인하여 증가되는 빛의 분산(light scattering) 현상으로 인해 자연스럽게 감소하게 된다. 조직투명화 기술이 처음 등장하였던 초창기 시도되던 간단한 굴절률 일치화(RI matching) 기법에서부터 현대의 최첨단 통합 조직 투명화 기술에 이르기 까지를 관찰하여 볼 때, 형태학적인 변화없이 조직의 투명도를 높이는 것과, 내재적으로 또는 고정과정 중에 유래되어 혼합된 자가형광 노이즈를 효과적으로 제거하는것이 선명한 이미지를 얻기 위한 주요한 고려대상이라고 할 수 있다. CLARITY는 장비에 기반한 조직투명화 기법으로서 임상 조직병리 실험실에서 처리되는 동결절편과 포르말린에 고정된 검체 모두의 투명화를 위한 실험실 작업흐름(workflow) 통합 및 일상적인 실험절차와 호환이 가능할 것으로 보여진다.