• 제목/요약/키워드: biomimetic materials

검색결과 80건 처리시간 0.034초

MEMS 기반 생체모사 음향센서 제작 및 주파수 특성 분석 (Fabrication of Biomimetic MEMS Acoustic Sensor and Analysis of Its Frequency Characteristics)

  • 허신;정영도;이영화;송원준;김완두
    • 비파괴검사학회지
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    • 제31권5호
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    • pp.522-528
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    • 2011
  • 인간의 청각기능을 보조하거나 대체할 수 있는 차세대 인공와우기술의 개발은 기존 인공와우의 단점인 잦은 충전, 장애 노출 등을 극복하고 향상된 음감을 전달할 수 있는 기술로서 세계적으로 많은 연구를 수행하고 있다. 본 연구에서는 달팽이관의 기저막이 갖는 주파수 분리 기능 및 유모세포(haircell)의 이온채널 작용에 의한 생체 전기신호 발생 기능을 할 수 있는 PVDF(polyvinylidene fluoride) 압전 박막형 인공기저막을 설계, 제작 및 시험평가를 하고자 하였다. 생체 기저막과 유사한 주파수 분리 특성을 갖는 사다리꼴 형상의 인공기저막을 제작하고, MEMS 공정을 이용한 전극 증착 및 유체 유동이 가능한 챔버를 형성하였다. 또한 인공기저막의 거동을 측정하기 위하여 비접촉 LDV측정 장비, 스피커, 기준 마이크로폰 등을 사용하여 실험 장치를 구성하였다. 기계적 성능시험 결과, PVDF 압전박막형 인공기저막은 입사하는 음파의 주파수 분리를 잘 수행할 수 있음을 실험적으로 입증하였다.

New Evaluation of Initial Growth Mechanisms of Hydroxyapatite on Self-assembled Collagen Nanofibrils by Using ToF-SIMS and AFM Techniques

  • Park, Young-Jae;Choi, Gyu-Jin;Lee, Tae-Geol;Lee, Won-Jong;Moon, Dae-Won
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.397-397
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    • 2010
  • Bone is considered as hierarchically organized biocomposites of organic (collagen) and inorganic (hydroxyapatite) materials. The precise structural dependence between hydroxyapatite (HAp, $Ca_{10}(PO_4)_6(OH)_2)$ crystals and collagen fibril is critical to unique characteristics of bone. To meet those conditions and obtain optimal properties, it is essential to understand and control the initial growth mechanisms of hydroxyapatite at the molecular level, such as other nano-structured materials. In this study, collagen fibrils were prepared by adsorbing native type I collagen molecules onto hydrophobic surface. Hydrophobicity was introduced on the Si wafer surface by using PECVD (plasma enhanced chemical vapor deposition) method and cyclohexane as a precursor. Biomimetic nucleation and growth of HAp on the self-assembled collagen nanofibrils were occurred through incubation of the sample in SBF (simulated body fluid). Chemical and morphological evolution of HAp nanocrystals was investigated by surface-sensitive analytical techniques such as ToF-SIMS (Time-of-Flight Secondary Ion Mass Spectrometry) and AFM (Atomic Force Microscopy) in the early growth stages (< 24 hrs). The very initial stages (< 12 hrs) of mineralization could be clearly demonstrated by ToF-SIMS chemical mapping of surface. In addition to ToF-SIMS and AFM measurement, scanning electron microscopy, energy dispersive spectroscopy and X-ray diffraction analysis were conducted to characterize the HAp layer in the late stages. This study is of great importance in the growth of real bone-like materials with a structure analogous to that of natural bones and the development of biomimetic nanomaterials.

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생체유사액 침적에 따른 표면 처리된 titanium plate에 아파타이트 형성 (Apatite formation on the surface treated-titanium plate in a simulated body fluid)

  • 이창훈;진형호;박홍채;윤석영
    • 한국결정성장학회지
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    • 제19권1호
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    • pp.19-24
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    • 2009
  • 생체모방법을 이용하여 표면 처리된 titanium plates 표면에 아파타이트 형성에 관하여 조사하였다. 표면 처리방법으로는 우선, titanium plate 표면에 titanium oxide층을 형성시키기 위하여 열처리온도를 $400^{\circ}C$, $600^{\circ}C$, 그리고 $800^{\circ}C$에서 전기로에서 5시간 유지하였으며, 열처리된 titanium plates 1 M를 수산화나트늄 용액에 침전시켜 표면을 화학적으로 처리하였다. 생체모방법으로 titanium plates 표면에 아파타이트를 형성시키기 위하여 표면처리된 titanium plates 를 Kokubo's recipe에 의하여 제조된 생체유사액(SBF)에 침적시켰다. SBF 용액에 1주와 3주기간 동안 침적시킨 후, 표면처리를 달리한 titanium plates 표면에 형성된 코팅층을 서로 비교 분석하였다.

Synergistic Effect of Ethaselen and Selenite Treatment against A549 Human Non-small Cell Lung Cancer Cells

  • Xu, Wei;Ma, Wei-Wei;Zeng, Hui-Hui
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권17호
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    • pp.7129-7135
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    • 2014
  • Background: In this study, we aimed to evaluate the growth inhibitory effect of the combination of ethaselen (BBSKE) and low fixed dose of selenite against A549 human non-small cell lung cancer cells in vitro. Materials and Methods: Growth inhibitory effects against A549 cells were determined by SRB assay. Combination index (CI) values were calculated based on Chou-Talalay median-effect analyses. Dose reduction index (DRI) values were applied to calculate dose reduction of selenite. Contents of free thiols and GSH were determined by DTNB assay and intracellular ROS levels by DCFH-DA fluorescence labeling. Results: Compared with BBSKE or selenite single treatment, the combined application of ethaselen and a low fixed dose of selenite shortened the onset time of sodium selenite, reduced $IC_{50}$ values, and increased the maximum inhibition rates, suggesting a possible molecular mechanism of the synergism. Obvious synergistic effects were observed after different times of combination treatment, especially after 24 h. Compared with selenite single treatment, dosage of selenite could be remarkably reduced in combination therapy to gain the same inhibitory effect on cell proliferation. Compared with BBSKE single treatment, the content of free thiols and GSH were significantly reduced and ROS levels greatly elevated in the combination group. For the combination treatment, cell viability increased as greater concentrations of GSH were added. Conclusions: All these results indicate that the combination treatment of BBSKE and selenite showed synergism to inhibit A549 cell proliferation in vitro, and also reduced the selenite dosage to mitigate its toxicity which is very meaningful for combination chemotherapy of lung cancer. The synergism was probably caused by the accelerated exhaustion of intracellular reductive substances, such as free thiols and GSH, which ultimately leads to enhanced oxidative stress and apoptosis.

생체모방 액츄에이터용 다중탄소나노튜브/고분자 나노복합체 (Tailored biomimetic actuators made with multiwalled carbon nanotube loaded ionomeric nanocomposites)

  • 이세종;이득용;이명현;김배연
    • 한국결정성장학회지
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    • 제15권3호
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    • pp.108-113
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    • 2005
  • 부드럽지만 큰 변위를 발생시키는 생체모방 액츄에이터는 관심의 대상이 되어왔다. 특히, 듀폰사의 나피온 고분자는 작은 전기장하에서도 큰 변위를 나타내었다. 전기기계적 특성을 향상시키기 위하여 탄소나노튜브/고분자 나노복합체를 제조하였다. 다중 탄소나노튜브/나피온 나노복합체를 캐스팅법으로 제조하고 탄소나노튜브 첨가량에$(0{\sim}7wt%)$ 따른 나노복합체의 전기기계적 특성을 조사하였다. 탄소나노튜브가 첨가된 나노복합체는 탄소나노튜브가 없는 고분자 액츄에이터와 비교하여 우수한 탄성계수와 응력이 관찰되었다. 다중 탄소나노튜브의 첨가는 고기능성 생체모방 액츄에이터 특성을 증진시키는데 효과적이었다.

Design and Analysis of Small Walking Robots Utilizing Piezoelectric Benders

  • Park, Jong Man;Song, Chi Hoon;Park, Min Ho
    • 한국전기전자재료학회논문지
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    • 제33권5호
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    • pp.380-385
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    • 2020
  • Over the past decade, small robots have been of particular interest in the engineering field. Among the various types of small robots, biomimetic robots, which mimic animals and insects, have been developed for special activities in areas where humans cannot physically access. The optimal motion of a walking robot can be determined by the characteristics of the traversed surface (e.g., roughness, curvature, slope, materials, etc.). This study proposes three types of piezoelectric structures using different driving mechanisms, depending on the application range of the small walking robots. Dynamic modeling using computer-aided engineering optimized the shape of the robot to maximize its moving characteristics, and the results were also verified through its fabrication and experimentation. Three types of robots, named by their actuator shapes as I, π, & T-shape, were proposed regarding application for small scale ambulatory robots to different terrain conditions. Among these, the T-shaped robots were shown to have a wide range of speeds (from 2 mm/s up to 255 mm/s) and good carrying capacity (up to 10 g at 50 mm/s) through driving experiments. Based on this study, we proposed possible application areas for the three types of walking robot actuators.

Fibre reinforcement in a structurally compromised endodontically treated molar: a case report

  • Soares, Renita;Ataide, Ida de Noronha de;Fernandes, Marina;Lambor, Rajan
    • Restorative Dentistry and Endodontics
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    • 제41권2호
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    • pp.143-147
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    • 2016
  • The reconstruction of structurally compromised posterior teeth is a rather challenging procedure. The tendency of endodontically treated teeth (ETT) to fracture is considerably higher than vital teeth. Although posts and core build-ups followed by conventional crowns have been generally employed for the purpose of reconstruction, this procedure entails sacrificing a considerable amount of residual sound enamel and dentin. This has drawn the attention of researchers to fibre reinforcement. Fibrereinforced composite (FRC), designed to replace dentin, enables the biomimetic restoration of teeth. Besides improving the strength of the restoration, the incorporation of glass fibres into composite resins leads to favorable fracture patterns because the fibre layer acts as a stress breaker and stops crack propagation. The following case report presents a technique for reinforcing a badly broken-down ETT with biomimetic materials and FRC. The proper utilization of FRC in structurally compromised teeth can be considered to be an economical and practical measure that may obviate the use of extensive prosthetic treatment.

Preparation and characterization of zirconium nitride and hydroxyapatite layered coatings for biomedical applications

  • ;이준희;홍순익
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.102.2-102.2
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    • 2012
  • Different layers of zirconium nitride (ZrN) and hydroxyapatite (HA) coatings were prepared on cp Ti substrate for biomedical applications. The main idea is to improve the mechanical strength as well as the biocompatibility of the coating. ZrN is known for its high mechanical strength, corrosion resistance. HA is well known for its biocompatibility properties. Hence, in this study, both materials were coated on a cp Ti substrate with bottom layer with ZrN for good bonding with substrate and the top layer with HA for induce bioactivity. Middle layer was formed by a composite of HA and ZrN. Detail analyses of the layered coatings for its structural, morphological, topographical properties were carried out. Then the mechanical property of the layered coatings was analyzed by nanoindentation. Biomimetic growths of apatite on the functionally graded coatings were determined by simulated body fluid method. This study provides promising results to use this kind of coatings in biomedical field.

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NaOH 처리에 따른 다공성 PCL 지지체의 의사체액 환경에서의 아파타이트 형성 (Apatite Formation of NaOH-treated Porous PCL Scaffolds in Simulated Body Fluid)

  • 이향미;진형호;현용택;박홍채;윤석영
    • 한국재료학회지
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    • 제17권11호
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    • pp.622-627
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    • 2007
  • Porous poly(e-caprolactone) (PCL) scaffolds were fabricated by salt leaching method. The PCL scaffolds were treated with aqueous NaOH for 0h, 2h, 4h, 8h, and 12h at $40^{\circ}C$. The NaOH-treated PCL scaffolds were dipped in $CaCl_2$ and $K_2HPO_4{\cdot}_3H_2O$ solution alternately three times to induce apatite nuclei onto the surface of the scaffolds. The NaOH-treated PCL scaffolds were immersed into SBF solution for 1day to grow the apatite. The apatite formation were investigated as a fuction of NaOH treatment time. The hydrophilicty and surface area of the PCL scaffolds were increased with NaOH-treatment time. The NaOH-treated PCL scaffolds were successfully formed a dense and uniform bone-like apatite layer after immersion for 1 day in SBF solution.