• 제목/요약/키워드: Biological adaptation

검색결과 198건 처리시간 0.024초

피학대아동의 위탁가정 적응과정에 관한 연구 (A Study of Adaptation Process relating to Abused Children in Long-term Foster Care)

  • 장윤영;박태영
    • 한국사회복지학
    • /
    • 제58권1호
    • /
    • pp.425-456
    • /
    • 2006
  • 본 연구는 불가피하게 친 가정으로부터 분리되어 위탁가정에서 보호될 수밖에 없는 피학대아동에 관한 연구로서, 피학대아동이 위탁가정 내에서 겪는 적응과정과 적응과정의 단계, 위탁가정 배치 후 적응에 영양을 미치는 요인들, 적응과정과 학대 후유증 회복과의 관련성을 조사하였다. 한편, 위탁가정 배치 후 친 가정 복귀 가능성에 영향을 미치는 요인들이 무엇인지 알아보았다. 3명의 위탁아동을 중심으로 3명의 위탁부모, 3명의 사회복지사를 통하여 연구 자료를 얻었으며, 자료에 대한 분석방법은 근거이론적인 접근 방법(Strauss and Corbin, 1990)에 의하여 개방코딩, 축코딩, 선택코딩을 중심으로 분석하였다. 또한 위탁가정 적응과정에 영향을 미치는 범주들을 살펴보기 위하여 마일즈와 휴버만(Miles and Huberman, 1994)의 시간에 따른 매트릭스와 시간에 따른 네트워크를 활용하여 분석하였다.

  • PDF

근육에 대한 역학적 스트레스의 영향 (Review of Effect of the Mechanical Stress on Muscle)

  • 강종호;김진상
    • PNF and Movement
    • /
    • 제6권2호
    • /
    • pp.51-57
    • /
    • 2008
  • Purpose : Mechanical stress activates signaling cascades and leading to a specific response of a network of signaling pathways. The purpose of this study is to review the effect of mechanical stress-induced adaptation in skeletal muscle involves a biological mechanisms. Methods : This is literature study with Pubmed, Medline and books. Results : Skeletal muscle tissue demonstrates a malleability and may adjust its metabilic response, vascularization and neuromuscular characteristic makeup in response to alteration in functional demands. The adaptation in skeletal muscle involoves a multitude of signalling mechanisms related with insuline-like growth factor, vascular endothelial growth factor, neurotrophins. Conclusions : The identification of the basic relationships underlying the malleability of skeletal muscle tissue is likely to be of relevance for our understanding with PNF technique.

  • PDF

Species Adaptation Evolutionary Algorithm for Solving the Optimization Problems

  • Lee, Dong-Wook;Sim, Kwee-Bo
    • International Journal of Fuzzy Logic and Intelligent Systems
    • /
    • 제3권2호
    • /
    • pp.233-238
    • /
    • 2003
  • Living creatures maintain their variety through speciation, which helps them to have more fitness for an environment. So evolutionary algorithm based on biological evolution must maintain variety in order to adapt to its environment. In this paper, we utilize the concept of speciation. Each individual of population creates their offsprings using mutation, and next generation consists of them. Each individual explores search space determined by mutation. Useful search space is extended by differentiation, then population explorers whole search space very effectively. If evolvable hardware evolves through mutation, it is useful way to explorer search space because of less varying inner structure. We verify the effectiveness of the proposed method by applying it to two optimization problems.

지력측정을 이용한 작업 적합성 평가 시스템개발 (A Development of Working Adaptation Evaluation System using Finger Force Measurement)

  • 변미경;허웅;한상휘;김정국
    • 대한안전경영과학회:학술대회논문집
    • /
    • 대한안전경영과학회 2002년도 춘계학술대회
    • /
    • pp.31-36
    • /
    • 2002
  • In this paper, we developed a working adaptation evaluation system using finger force measurement which interact between material and biological system. The system consists of a finger force transducer, a signal conditioner, an A/D converter, a computer, and a software system for data processing. The finger force transducer is made by a load cell and a special mechanism. The data processing software controls the A/D converter, data monitoring, and data analysis for group classification. The developed system were tested by 4 different materials in left hand and the finger forte transducer in the other hand's thumb and index finger with 16 persons. As the results of experiments, the developed system could measure the finger force quantitatively and classify the measured values into four groups.

  • PDF

Survey of Artificial Intelligence Approaches in Cognitive Radio Networks

  • Morabit, Yasmina EL;Mrabti, Fatiha;Abarkan, El Houssein
    • Journal of information and communication convergence engineering
    • /
    • 제17권1호
    • /
    • pp.21-40
    • /
    • 2019
  • This paper presents a comprehensive survey of various artificial intelligence (AI) techniques implemented in cognitive radio engine to improve cognition capability in cognitive radio networks (CRNs). AI enables systems to solve problems by emulating human biological processes such as learning, reasoning, decision making, self-adaptation, self-organization, and self-stability. The use of AI techniques is studied in applications related to the major tasks of cognitive radio including spectrum sensing, spectrum sharing, spectrum mobility, and decision making regarding dynamic spectrum access, resource allocation, parameter adaptation, and optimization problem. The aim is to provide a single source as a survey paper to help researchers better understand the various implementations of AI approaches to different cognitive radio designs, as well as to refer interested readers to the recent AI research works done in CRNs.

인체주행 시 중족지절 관절 보조 강성에의 적응에 따른 동역학적 변화 고찰 (Dynamic Changes depending on Adaptation to Assistive Joint Stiffness in Metatarsophalangeal Joint during Human Running)

  • 오건영
    • 대한의용생체공학회:의공학회지
    • /
    • 제45권2호
    • /
    • pp.57-65
    • /
    • 2024
  • Recently, several studies have been conducted to lower the cost of transport of human by adding external joint stiffness elements. However, it has not been clearly elucidated whether adaptation time is required for human subjects to adapt to the added external joint stiffness. In this study, carbon plates in the form of shoe midsoles were added to the metatarsophalangeal joint, and the lower limb joint torque and mechanical energy consumption were compared before and after a total of 5 sessions (2.5 weeks) of running. A total of 11 young healthy participants exhibited higher elastic energy storage in carbon plates in the fifth session compared to the first session, and lower power in the ankle joint. This suggests that a single training session may be insufficient to validate the efficiency effect of added joint stiffness, and the human body seems to increase the elastic energy stored in the assistive joint stiffness and its reutilization.

Identification of a PAS Domain-containing Protein in a Mammalian Hibernator, Murina leucogaster

  • Cho, Sang-Gil;Kim, Dong-Yong;Eom, Ki-Hyuk;Bae, Ki-Ho
    • Animal cells and systems
    • /
    • 제13권2호
    • /
    • pp.119-125
    • /
    • 2009
  • Mammalian hibernation is a type of natural adaptation that allows organisms to avoid harsh environment and to increase the possibility of survival. To investigate the molecular link between circadian and hibernating rhythms in the greater tube-nosed bats, Murina leucogaster, we set out to identify circadian genes that are expressed in bats, with specific focus on the PAS domain by using PCR-based screens. We could isolate a eDNA clone, designated as LPAS1, that encodes a protein of 521 amino acid residues. LPAS1 is closely related with CLOCK family with the highest homology to human CLOCK. Based on RT-PCR analyses, LPAS1 transcripts are ubiquitously present in tissues from both summer active and winter dormant periods. Given that LPAS1 is a member of the bHLH-PAS protein superfamily but lacks polyglutamine transactivation domains, it is likely to function as a repressor for endogenous CLOCK to hinder its roles in promoting transcription. Our result will open a new avenue to further examine the functional interconnection between the circadian clock and the circannual clock such as mammalian hibernation.

논문 - 기후변화에 따른 농업생산기반 재해 취약성 평가를 위한 대리변수 선정 (The Proxy Variables Selection of Vulnerability Assessment for Agricultural Infrastructure According to Climate Change)

  • 김성재;박태양;김성민;김상민
    • 한국관개배수논문집
    • /
    • 제18권2호
    • /
    • pp.33-42
    • /
    • 2011
  • Climate change has impacts on not only the average temperature rise but also the intensity and frequency of extreme events such as flood and drought. It is also expected that the damages on agricultural infrastructure will be increased resulting from increased rainfall intensity and frequency caused by climate change. To strengthen the climate change adaptation capacity, it is necessary to identify the vulnerability of a given society's physical infrastructures and to develop appropriate adaptation strategies with infrastructure management because generally facilities related to human settlements are vulnerable to climate changes and establishing an adaptive public infrastructure would reduce the damages and the repair cost. Therefore, development of mitigation strategies for agricultural infrastructure against climatic hazard is very important, but there are few studies on agricultural infrastructure vulnerability assessment and adaptation strategies. The concept of vulnerability, however, is difficult to functionally define due to the fact that vulnerability itself includes many aspects (biological, socioeconomic, etc.) in various sectors. As such, much research on vulnerability has used indicators which are useful for standardization and aggregation. In this study, for the vulnerability assessment for agricultural infrastructure, 3 categories of climate exposure, sensitivity, and adaptation capacity were defined which are composed of 16 sub-categories and 49 proxy variables. Database for each proxy variables was established based on local administrative province. Future studies are required to define the weighting factor and standardization method to calculate the vulnerability indicator for agricultural infrastructure against climate change.

  • PDF

Transcriptomic Approach for Understanding the Adaptation of Salmonella enterica to Contaminated Produce

  • Park, Sojung;Nam, Eun woo;Kim, Yeeun;Lee, Seohyeon;Kim, Seul I;Yoon, Hyunjin
    • Journal of Microbiology and Biotechnology
    • /
    • 제30권11호
    • /
    • pp.1729-1738
    • /
    • 2020
  • Salmonellosis is a form of gastroenteritis caused by Salmonella infection. The main transmission route of salmonellosis has been identified as poorly cooked meat and poultry products contaminated with Salmonella. However, in recent years, the number of outbreaks attributed to contaminated raw produce has increased dramatically. To understand how Salmonella adapts to produce, transcriptomic analysis was conducted on Salmonella enterica serovar Virchow exposed to fresh-cut radish greens. Considering the different Salmonella lifestyles in contact with fresh produce, such as motile and sessile lifestyles, total RNA was extracted from planktonic and epiphytic cells separately. Transcriptomic analysis of S. Virchow cells revealed different transcription profiles between lifestyles. During bacterial adaptation to fresh-cut radish greens, planktonic cells were likely to shift toward anaerobic metabolism, exploiting nitrate as an electron acceptor of anaerobic respiration, and utilizing cobalamin as a cofactor for coupled metabolic pathways. Meanwhile, Salmonella cells adhering to plant surfaces showed coordinated upregulation in genes associated with translation and ribosomal biogenesis, indicating dramatic cellular reprogramming in response to environmental changes. In accordance with the extensive translational response, epiphytic cells showed an increase in the transcription of genes that are important for bacterial motility, nucleotide transporter/metabolism, cell envelope biogenesis, and defense mechanisms. Intriguingly, Salmonella pathogenicity island (SPI)-1 and SPI-2 displayed up- and downregulation, respectively, regardless of lifestyles in contact with the radish greens, suggesting altered Salmonella virulence during adaptation to plant environments. This study provides molecular insights into Salmonella adaptation to plants as an alternative environmental reservoir.

Perspectives provided by leopard and other cat genomes: how diet determined the evolutionary history of carnivores, omnivores, and herbivores

  • Kim, Soonok;Cho, Yun Sung;Bhak, Jong;O'Brian, Stephen J.;Yeo, Joo-Hong
    • BMB Reports
    • /
    • 제50권1호
    • /
    • pp.3-4
    • /
    • 2017
  • Recent advances in genome sequencing technologies have enabled humans to generate and investigate the genomes of wild species. This includes the big cat family, such as tigers, lions, and leopards. Adding the first high quality leopard genome, we have performed an in-depth comparative analysis to identify the genomic signatures in the evolution of felid to become the top predators on land. Our study focused on how the carnivore genomes, as compared to the omnivore or herbivore genomes, shared evolutionary adaptations in genes associated with nutrient metabolism, muscle strength, agility, and other traits responsible for hunting and meat digestion. We found genetic evidence that genomes represent what animals eat through modifying genes. Highly conserved genetically relevant regions were discovered in genomes at the family level. Also, the Felidae family genomes exhibited low levels of genetic diversity associated with decreased population sizes, presumably because of their strict diet, suggesting their vulnerability and critical conservation status. Our findings can be used for human health enhancement, since we share the same genes as cats with some variation. This is an example how wildlife genomes can be a critical resource for human evolution, providing key genetic marker information for disease treatment.