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1

Maeshima, Satoshi, and Masatoshi Teranishi. "Customized Thermoelectric Device Using Anisotropic Material." Materia Japan 54, no. 10 (2015): 505–6. http://dx.doi.org/10.2320/materia.54.505.

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Vijayakumar, A. "Customized Osteomesh Cranioplasty." Journal of Advanced Plastic Surgery Research 2, no. 1 (2016): 25–32. http://dx.doi.org/10.31907/2414-2093.2016.02.05.

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Cranioplasty, one of the oldest surgical procedures used to repair cranial defects, has undergone many revolutionary changes over time to find the ideal material to improve patient outcome. The surgical challenge in repairing large calvarial defects is known to craniofacial surgeons. Ongoing researches on various cranioplasty materials continue with the help of recent technology. Stem cell experiments and development of morphogenic proteins are expected to take the lead in future. With the aid of Computer Aided Designing technology, all currently used alloplastic materials can be custom made f
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Arai, Eiji, Hideo Suzuki, and Masatoshi Teranishi. "Delight Customized Optimization Design Using Anisotropic Material." Materia Japan 54, no. 10 (2015): 500–501. http://dx.doi.org/10.2320/materia.54.500.

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Kawaguchi, Aki, Tetsushi Ogawa, Mika Mizutani, and Masatoshi Teranishi. "Delight Assessments for Customized Products with Anisotropic Material." Materia Japan 54, no. 10 (2015): 513–14. http://dx.doi.org/10.2320/materia.54.513.

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Mustafa, Mohammed Ahmed, S. Raja, Layth Abdulrasool A. L. Asadi, Nashrah Hani Jamadon, N. Rajeswari, and Avvaru Praveen Kumar. "A Decision-Making Carbon Reinforced Material Selection Model for Composite Polymers in Pipeline Applications." Advances in Polymer Technology 2023 (April 11, 2023): 1–9. http://dx.doi.org/10.1155/2023/6344193.

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Pipes are manufactured primarily through the extrusion process. One of the material extrusion processes in recent digital manufacturing is additive manufacturing’s fusion deposition modeling. Pipes are made from various materials such as metal and plastic/polymers, and the main challenge has been in selecting the pipe material for the customized application. For the creation of water-passing tubes, this research has chosen appropriate carbon-reinforced polymers that can be used with filament made of polyether ether ketone (PEEK) and polyethylene terephthalate glycol (PETG). For this goal, the
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Chokaree, Parima, Pongsakorn Poovarodom, Pisaisit Chaijareenont, Apichai Yavirach, and Pimduen Rungsiyakull. "Biomaterials and Clinical Applications of Customized Healing Abutment—A Narrative Review." Journal of Functional Biomaterials 13, no. 4 (2022): 291. http://dx.doi.org/10.3390/jfb13040291.

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Customized healing abutments have been introduced in clinical practice along with implant surgery to preserve or create natural-appearing hard and soft tissue around the implant. This provides the benefits of reducing the overall treatment time by eliminating the second stage and reducing the elapsed time of the fabrication of the final prostheses. This article aims to review the types and properties of materials used for the fabrication of customized healing abutments and their clinical applications. Articles published in English on customized healing abutments were searched in Google Scholar
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Bogiel, Grzegorz. "Customized weapons identification tests." Issues of Forensic Science 308 (2020): 47–49. http://dx.doi.org/10.34836/pk.2020.308.2.

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The article raises the issue of individual weapons identification tests which can be performed, including when it is not possible to fire shots in order to obtain comparative material. The article describes one of such cases, involving bursting of the cartridge chamber of a shotgun during the shooting.
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Mian, Syed Hammad, Usama Umer, Khaja Moiduddin, and Hisham Alkhalefah. "Predicting Mechanical Properties of Polymer Materials Using Rate-Dependent Material Models: Finite Element Analysis of Bespoke Upper Limb Orthoses." Polymers 16, no. 9 (2024): 1220. http://dx.doi.org/10.3390/polym16091220.

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Three-dimensional printing—especially with fused deposition modeling (FDM)—is widely used in the medical field as it enables customization. FDM is versatile owing to the availability of various materials, but selecting the appropriate material for a certain application can be challenging. Understanding materials’ mechanical behaviors, particularly those of polymeric materials, is vital to determining their suitability for a given application. Physical testing with universal testing machines is the most used method for determining the mechanical behaviors of polymers. This method is resource-in
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Demirezen, Vildan Fadime, and Kenan Işık. "Comparison of Raw Materials Used in Customized Implant Systems through Finite Element Analysis and Dynamic Fatigue Testing." Black Sea Journal of Engineering and Science 8, no. 4 (2025): 67–68. https://doi.org/10.34248/bsengineering.1641111.

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Customized implants offer many advantages in medical implant applications. Material selection from the limited biocompatible material choices plays a crucial role in the success of the treatment. In this study, we compare the results obtained from dynamic fatigue testing and finite element analysis of raw materials planned for use in personalized implant systems which were made possible by the advancements in production technologies and their widespread adoption in the medical sector. The study first discusses the concept of customized implants and the materials necessary for these implants. M
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Sharma, Neha, Jokin Zubizarreta-Oteiza, Céline Tourbier, and Florian M. Thieringer. "Can Steam Sterilization Affect the Accuracy of Point-of-Care 3D Printed Polyetheretherketone (PEEK) Customized Cranial Implants? An Investigative Analysis." Journal of Clinical Medicine 12, no. 7 (2023): 2495. http://dx.doi.org/10.3390/jcm12072495.

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Polyetheretherketone (PEEK) has become the biomaterial of choice for repairing craniofacial defects over time. Prospects for the point-of-care (POC) fabrication of PEEK customized implants have surfaced thanks to the developments in three-dimensional (3D) printing systems. Consequently, it has become essential to investigate the characteristics of these in-house fabricated implants so that they meet the necessary standards and eventually provide the intended clinical benefits. This study aimed to investigate the effects of the steam sterilization method on the dimensional accuracy of POC 3D-pr
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Malik, Robin, Anmol S. Kalha Osre, Anil K. Chandna, Amrita Puri, and Riddhi Chawla. "Effects of debonding a conventional & customized lingual appliance on enamel structure- An invitro study." Orthodontic Journal of Nepal 10, no. 3 (2020): 14–20. http://dx.doi.org/10.3126/ojn.v10i3.35485.

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Introduction: To evaluate the surface changes on enamel structure after debonding of customized and conventional lingual brackets bonded using restorative dual cure bonding material and a chemically cured bonding material with and without sandblasting.
 Materials and Method: The sample consisted of 40 premolar teeth extracted for the purpose of orthodontic treatment. Enamel surface changes, prior to bonding, were studied using a stereomicroscope (Olympus SZX7) and an optical microscope. 20 extracted premolars were arranged in 2 arch forms with 5 teeth in each quadrant, after which impress
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Zolfagharian, Ali, Mohammad Lakhi, Sadegh Ranjbar, and Mahdi Bodaghi. "Custom Shoe Sole Design and Modeling Toward 3D Printing." International Journal of Bioprinting 7, no. 4 (2021): 396. http://dx.doi.org/10.18063/ijb.v7i4.396.

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This study introduces a design procedure for improving an individual’s footwear comfort with body weight index and activity requirements by customized three-dimensional (3D)-printed shoe midsole lattice structure. This method guides the selection of customized 3D-printed fabrications incorporating both physical and geometrical properties that meet user demands. The analysis of the lattice effects on minimizing the stress on plantar pressure was performed by initially creating various shoe midsole lattice structures designed. An appropriate common 3D printable material was selected along with v
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Kitahara, Toshihiro, Hiroki Shirato, Takeshi Nishioka, et al. "A new mold material for customized patient positioning in radiotherapy." Radiotherapy and Oncology 47, no. 1 (1998): 77–79. http://dx.doi.org/10.1016/s0167-8140(98)00003-6.

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Kao, C. H., C. H. Hsu, J. C. Lee, H. W. Wang, and K. K. Tsai. "Customized material choice for Asian rhinoplasty: how we do it." Clinical Otolaryngology 36, no. 2 (2011): 165–70. http://dx.doi.org/10.1111/j.1749-4486.2011.02266.x.

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Romanova, Anastasia M. "ECONOMIC EFFICIENCY OF ADDITIVE MANUFACTURING IN COMPARISON WITH TRADITIONAL METHODS." EKONOMIKA I UPRAVLENIE: PROBLEMY, RESHENIYA 4/4, no. 157 (2025): 20–25. https://doi.org/10.36871/ek.up.p.r.2025.04.04.003.

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Additive manufacturing (AM), or 3D printing, is one of the most promising technologies in modern industry, actively being integrated into various sectors, including aerospace, medical, and automotive industries. This article provides a detailed analysis of the economic efficiency of additive manufacturing compared to traditional production methods such as casting, machining, and stamping. The focus is on key factors influencing production costs: material expenses, energy consumption, labor intensity, production flexibility, and time-to-market. Additive manufacturing offers several advantages,
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Păcurar, Razvan, Ancuţa Păcurar, Nicolae Bâlc, Anna Petrilak, and Ladislav Morovič. "Estimating the Life-Cycle of the Medical Implants Made by SLM Titanium-Alloyed Materials Using the Finite Element Method." Applied Mechanics and Materials 371 (August 2013): 478–82. http://dx.doi.org/10.4028/www.scientific.net/amm.371.478.

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Within this article, there are presented a series of researches that were developed for the first time in Romania, in the field of customized medical implants made by using the Selective Laser Melting (SLM) technology. Finite Element Method (FEM) has been successfully used in order to analyze the fatigue and to determine the durability of a customized medical implant that has been selected for the made analysis. The material characteristics taken into consideration within the Finite Element Analysis (FEA) that has been performed were the ones of two types of dedicated metallic powders which ar
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Lestari, Junita Anjar, Edhy Rustan, and Magfirah Thayyib. "INTEGRATING LUWU CULTURE INTO ENGLISH LEARNING: A DEVELOPMENT OF CUSTOMIZED MATERIALS FOR NURSING STUDENTS." English Review: Journal of English Education 12, no. 2 (2024): 641–50. http://dx.doi.org/10.25134/erjee.v12i2.9254.

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This research aimed to fulfill the need of nursing students to master English with the integration of local culture. This research was conducted at Kurnia Jaya Persada Health and Business Institute, Palopo City, South Sulawesi, Indonesia, from March to May 2023. This study was a research and development through four stages: (1) needs analysis, (2) material design, (3) try-out, and (4) material revision. The need analysis was done by administering the questionnaire to 32 nursing students and interviewing four English lecturers in the study program. The English material developed consists of sev
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Annur, Dhyah, Muhammad S. Utomo, Talitha Asmaria, et al. "Material Selection Based on Finite Element Method in Customized Iliac Implant." Materials Science Forum 1000 (July 2020): 82–89. http://dx.doi.org/10.4028/www.scientific.net/msf.1000.82.

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Osteosarcoma, as the most frequent bone tumor cases, can be found in the pelvis bone. Within the pelvis, the ilium is the most common location for osteosarcoma, followed by the acetabulum and then the ischium. Surgery of pelvis is difficult and the reconstruction is complicated mainly due to the geometry complexity and also the weight support function of the pelvis. Endoprosthesis of the ilium is therefore designed to increase the quality of life of the patient. In this study, the iliac implant is designed based on the natural geometry of the ilium, and the size is modified to fit the morphome
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Seepersad, Carolyn Conner, Janet K. Allen, David L. McDowell, and Farrokh Mistree. "Robust Design of Cellular Materials With Topological and Dimensional Imperfections." Journal of Mechanical Design 128, no. 6 (2006): 1285–97. http://dx.doi.org/10.1115/1.2338575.

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A paradigm shift is underway in which the classical materials selection approach in engineering design is being replaced by the design of material structure and processing paths on a hierarchy of length scales for multifunctional performance requirements. In this paper, the focus is on designing mesoscopic material topology—the spatial arrangement of solid phases and voids on length scales larger than microstructures but smaller than the characteristic dimensions of an overall product. A robust topology design method is presented for designing materials on mesoscopic scales by topologically an
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Vaskooi-Eshkevari, Khorshid, Fatemeh Mirbazegh, Mojtaba Soltani-Kermanshahi, Mahin Sabzali-Poursarab-Saeedi, and Sadaf Alipour. "Customized patient clothing and patient satisfaction." International Journal of Health Care Quality Assurance 32, no. 3 (2019): 635–44. http://dx.doi.org/10.1108/ijhcqa-02-2018-0047.

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Purpose To respect the patients’ physical privacy, they should be provided with proper clothing that prevents the exposure of unnecessary parts of the body. The purpose of this paper is to evaluate patient satisfaction upon wearing customized, high-coverage, procedure-specific dresses. Design/methodology/approach New designs of clothing adapted for different kinds of procedures, and offering a good coverage of the body and easy access to the required parts were compared with regular patient clothing. Patients from six different wards of a university hospital filled out a questionnaire inquirin
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Rashika, Murugan, Pandian S. Atheenamilagi, M. Sudherson, and Manoj Kumar N. Sri. "Transforming organ transplantation and medical education advancements in 3D printing technology." i-manager’s Journal on Instrumentation and Control Engineering 12, no. 1 (2024): 39. http://dx.doi.org/10.26634/jic.12.1.20505.

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A major issue in the medical field worldwide is the limited number of organ donors available for transplants. The conventional methods are constrained by issues like scarcity of donors, further harm, and limited resources. The 3D printing technology provides a hopeful remedy by allowing the quick creation of customized tissue scaffolds, fixing tissue defects with cells, and potentially printing organs and tissues. These customized implants blend with the patient's tissue and include specific material patterns and cell clusters to promote cell growth and maturation, aiding in tissue repair. Thi
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Chang, Lin Song, and Bo Wen Wu. "New Application of Selection of Customized Lens Fitting in Optometry Services." Applied Mechanics and Materials 518 (February 2014): 343–49. http://dx.doi.org/10.4028/www.scientific.net/amm.518.343.

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Judging from existing technologies, using human eye measurement devices to obtain individual relevant optical feature parameters is no longer difficult. These parameters allow us to construct an eye model for individual eyeballs. Such customized eye models are used to select appropriate glass material for each lens fitting to achieve a relatively minimal degree of spherical aberration. However, due to the variety of glass materials, the selection process is time consuming and not cost-effective. Therefore, it is necessary to design a set of feasible methods to select appropriate glass material
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Elabed, Issa, Zhong Zheng, Yu Zhang, Chun-Hsi Chung, and Chenshuang Li. "The Mechanical and Clinical Properties of Customized Orthodontic Bracket Systems—A Comprehensive Review." Journal of Functional Biomaterials 15, no. 10 (2024): 299. http://dx.doi.org/10.3390/jfb15100299.

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The rise of computer-aided design and computer-aided manufacturing (CAD/CAM) and 3D printing technologies in orthodontics has revolutionized the development of customized labial and lingual bracket systems with a variety of materials, which offer potential advantages over traditional orthodontic brackets. To highlight the current state of knowledge regarding the mechanical and clinical properties of CAD/CAM and 3D-printed custom bracket systems, we conducted a comprehensive search across the PubMed, Embase, Cochrane Library, Web of Science, and Scopus databases to identify relevant articles pu
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Aversa, Raffaella, Relly Victoria V. Petrescu, Antonio Apicella, and Florian Ion Tiberiu Petrescu. "Bone modeling for customized hybrid biological prostheses development." Independent Journal of Management & Production 13, no. 1 (2022): 107–26. http://dx.doi.org/10.14807/ijmp.v13i1.1195.

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Faithful modeling of the femur accounting for bone distribution and material orthotropic behavior is presented. In this study, a biofidel femur Finite Element Model (FEM) has been developed from Computerized Tomography (CT) scans using a specific combination of software’s to correctly represent bone physiology and structural behavior. Proper identification of trabecular bone arrangement and distribution in the proximal diaphysis enabled modeling and definition of material properties. The faithful femur model proposed allows us to correctly account for non-isotropic properties to the proximal e
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Applegate, Matthew B., Jeannine Coburn, Benjamin P. Partlow, et al. "Laser-based three-dimensional multiscale micropatterning of biocompatible hydrogels for customized tissue engineering scaffolds." Proceedings of the National Academy of Sciences 112, no. 39 (2015): 12052–57. http://dx.doi.org/10.1073/pnas.1509405112.

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Light-induced material phase transitions enable the formation of shapes and patterns from the nano- to the macroscale. From lithographic techniques that enable high-density silicon circuit integration, to laser cutting and welding, light–matter interactions are pervasive in everyday materials fabrication and transformation. These noncontact patterning techniques are ideally suited to reshape soft materials of biological relevance. We present here the use of relatively low-energy (< 2 nJ) ultrafast laser pulses to generate 2D and 3D multiscale patterns in soft silk protein hydrogels without
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Zhang, Heqing, Tingting Guo, and Xiaobo Su. "Application of Big Data Technology in the Impact of Tourism E-Commerce on Tourism Planning." Complexity 2021 (May 28, 2021): 1–10. http://dx.doi.org/10.1155/2021/9925260.

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With the improvement of the material standard of living, the demand of the people for spiritual culture continues to increase. In terms of tourism, people have gradually shifted from simple tourism needs to integrated tourism needs. Tourism has become an effective way for people to expand their horizons and enrich their spiritual world. Tourism is one of the first industries to apply network technology. After long-term exploration and innovation, tourism e-commerce has developed rapidly. Coupled with the advent of the era of big data (EBD), the concept of customized tourism has gradually enter
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Omar, Khatir, Fekih Sidi Mohamed, Sahli Abderahmene, Boudjemaa Ismail, and Benkhettou Abdelkader. "OPTIMIZING TORP MIDDLE EAR PROSTHESIS MATERIAL PERFORMANCE USING FGM MATERIAL DEGRADATION APPROACH." Journal of the Serbian Society for Computational Mechanics 18, no. 1 (2024): 94–109. https://doi.org/10.24874/jsscm.2024.18.01.07.

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The advancement of technology in the field of human health plays a significant and positive role, particularly in the realm of hearing. In this study, we propose a novel approach for middle ear prostheses. We constructed a finite element (FE) model of the ear with a pure titanium TORP prosthesis, which we validated using experimental results. Subsequently, we applied the FGM (material degradation) method to alter the prosthesis material, utilizing biocompatible materials that can be used as hearing prostheses. We found that steel and hydroxyapatite ceramic can be used as alloys with titanium,
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Yuan, Chao, Fangfang Wang, David W. Rosen, and Qi Ge. "Voxel design of additively manufactured digital material with customized thermomechanical properties." Materials & Design 197 (January 2021): 109205. http://dx.doi.org/10.1016/j.matdes.2020.109205.

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Saraswathy, G., Gautham Gopalakrishna, and B. N. Das. "New material for recording impression of foot for customized footwear applications." Foot 14, no. 4 (2004): 192–97. http://dx.doi.org/10.1016/j.foot.2004.03.004.

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Nakano, Takayoshi, Takuya Ishimoto, Koji Hagihara, et al. "Control of “Material Parameters” and “Structural Parameters” for Anisotropic and Customized Design." Materia Japan 54, no. 10 (2015): 502–4. http://dx.doi.org/10.2320/materia.54.502.

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Seo, Hyeonweon, and Namwook Kang. "A case study on the development of AI-based reading assistive materials for on-site needs of Korean reading materials for textbook text adaptation of KSL learners." Korean Society of Bilingualism 99 (March 31, 2025): 205–38. https://doi.org/10.17296/korbil.2025..99.205.

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The purpose of this study is to develop customized textbook-based reading materials for Korean as a Second Language (KSL) students using generative AI and to explore its educational applicability. A survey was conducted with 36 public school teachers regarding the development of customized reading materials, and the revisions and satisfaction levels concerning reading material drafts generated by ChatGPT were analyzed. The findings indicate that teachers recognize the necessity of textbook-based reading materials to support KSL students in their academic studies,emphasizing the importance of t
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Yao, Xiling, Seung Ki Moon, and Guijun Bi. "Multidisciplinary design optimization to identify additive manufacturing resources in customized product development." Journal of Computational Design and Engineering 4, no. 2 (2016): 131–42. http://dx.doi.org/10.1016/j.jcde.2016.10.001.

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Abstract Additive manufacturing (AM) techniques are ideal for producing customized products due to their high design flexibility. Despite the previous studies on specific additive manufactured customized products such as biomedical implants and prostheses, the simultaneous optimization of components, materials, AM processes, and dimensions remains a challenge. Multidisciplinary design optimization (MDO) is a research area of solving complex design problems involving multiple disciplines which usually interact with each other. The objective of this research is to formulate and solve an MDO prob
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Qian, Yinlin, Xiangjie Zhang, Zhuofan Zhang, and Junie Luo. "A Review of Customized Material Properties for Automotive Applications Considering Specific Strength and Corrosion Resistance." Theoretical and Natural Science 107, no. 1 (2025): 1–13. https://doi.org/10.54254/2753-8818/2025.22652.

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With the rapid development of fuel vehicles, fuel consumption has gradually become a concern of people. How to effectively improve fuel efficiency is also a challenge. This study explores the application of cutting-edge materials such as carbon fiber, ceramics, aluminum alloys, and titanium alloys in the automotive industry to improve lightweight design and performance. The assessment encompasses the unique advantages, corrosion resistance, and compatibility with high-temperature environments demonstrated by each material. This paper will compare the strength and corrosion resistance of these
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Van Holm, Wannes, Katleen Vandamme, Jill Hadisurya, et al. "Thermoplastic Zinc-Infused Polymer for Chairside Socket Seal Abutments Enhances Antimicrobial and Tissue-Integrative Properties." Antibiotics 14, no. 5 (2025): 441. https://doi.org/10.3390/antibiotics14050441.

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Background/Objectives: The essential trace element zinc (Zn) has a pivotal role in wound healing and can show antibacterial activity, but its application in oral implant materials is underexplored. Customized healing abutments can modulate the peri-implant tissue health when appropriate bioactive materials promoting mucosal healing are used. The present study investigated a novel Zn-containing polymer for its potential in soft-tissue engineering applications. Methods: Four traditional materials—titanium, glass ionomer, a composite, and the novel Zn-containing polymer—were tested in vitro for b
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Tabersky, Daniel, Norman A. Luechinger, Michael Rossier, et al. "Development and characterization of custom-engineered and compacted nanoparticles as calibration materials for quantification using LA-ICP-MS." J. Anal. At. Spectrom. 29, no. 6 (2014): 955–62. http://dx.doi.org/10.1039/c4ja00054d.

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Bai, Gong, Chen, et al. "Additive Manufacturing of Customized Metallic Orthopedic Implants: Materials, Structures, and Surface Modifications." Metals 9, no. 9 (2019): 1004. http://dx.doi.org/10.3390/met9091004.

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Metals have been used for orthopedic implants for a long time due to their excellent mechanical properties. With the rapid development of additive manufacturing (AM) technology, studying customized implants with complex microstructures for patients has become a trend of various bone defect repair. A superior customized implant should have good biocompatibility and mechanical properties matching the defect bone. To meet the performance requirements of implants, this paper introduces the biomedical metallic materials currently applied to orthopedic implants from the design to manufacture, elabor
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Zhang, Jing, and Dandan Wang. "Study on Evaluation of Indoor Material Aging Based on Analytic Hierarchy Process." International Journal of Environmental Sustainability and Protection 3, no. 1 (2023): 1–6. http://dx.doi.org/10.35745/ijesp2023v03.01.0001.

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In order to improve the living environment of the elderly, the physiological and psychological influence of indoor materials on the elderly’s living was investigated. The evaluation index system of indoor material aging was composed of 4 first-level indicators and 11 second-level indicators. The analytic hierarchy process (AHP) was used to analyze the weight of each index in the evaluation system. The result provided a reference for the selection of the appropriate materials in the interior space design for the elderly to promote customized construction in an age-friendly society.
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Banga, Harish Kumar, Parveen Kalra, Rajendra M. Belokar, and Rajesh Kumar. "Customized design and additive manufacturing of kids’ ankle foot orthosis." Rapid Prototyping Journal 26, no. 10 (2020): 1677–85. http://dx.doi.org/10.1108/rpj-07-2019-0194.

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Purpose The purpose of this study is improvement of human gait by customized design of ankle foot orthosis (AFO). An has been the most frequently used orthosis in children with cerebral palsy. AFOs are designed to boost existing features or to avoid depression or traumatize muscle contractures. The advantages of AFO’s utilized for advancement in human walk attributes for the improvement in foot deformities patients or youngsters with spastic loss of motion. In this research on the customized design of AFO's to improve gait, there are limitations during walking of foot drop patients. In childre
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Salmi, Mika, Jukka Tuomi, Rauno Sirkkanen, Tuula Ingman, and Antti Mäkitie. "Rapid Tooling Method for Soft Customized Removable Oral Appliances." Open Dentistry Journal 6, no. 1 (2012): 85–89. http://dx.doi.org/10.2174/1874210601206010085.

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Traditionally oral appliances i.e. removable orthodontic appliances, bite splints and snoring / sleep apnea appliances are made with alginate impressions and wax registrations. Our aim was to describe the process of manufacturing customized oral appliances with a new technique i.e. rapid tooling method. The appliance should ideally be custom made to match the teeth. An orthodontic patient, scheduled for conventional orthodontic treatment, served as a study subject. After a precise clinical and radiographic examination, the approach was to digitize the patient’s dental arches and then to correc
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Geng, Yiming, Xiaochuan Ma, and Xinbei Yu. "Progress on High-Performance PEEK Material for 3D Printing." Highlights in Science, Engineering and Technology 120 (December 30, 2024): 171–83. https://doi.org/10.54097/qvt2ka43.

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Amidst the rising demand for lightweight, sturdy, and durable materials across various industries, the research emphasizes the widespread application of polyetheretherketone (PEEK) due to its superior characteristics. This paper inquiry scrutinizes the advanced potential of three-dimensional printing utilizing high-performance PEEK material, with a concentrated examination of the Fused Deposition Modeling (FDM) and Selective Laser Sintering (SLS) methodologies. These technologies have been verified to fabricate complex structures and customized components accurately. The analysis investigates
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Kuczmann, Miklós, and Tamás Orosz. "Temperature-Dependent Ferromagnetic Loss Approximation of an Induction Machine Stator Core Material Based on Laboratory Test Measurements." Energies 16, no. 3 (2023): 1116. http://dx.doi.org/10.3390/en16031116.

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The accurate measurement and modeling of ferromagnetic material losses are vital issues during the design and analysis of electrical machines. Higher loss values can describe the manufactured rotor and stator machine plates better than the catalog data obtained by standardized measurements using the Epstein frame. In this paper, different temperature-dependent models based on the loss-separation principle are introduced and compared with the measurements. The model parameters are computed from customized laboratory and standardized measurements. The customized measurements based on the stator
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Dantas, Telma, Sara Madeira, Michael Gasik, Paula Vaz, and Filipe Silva. "Customized Root-Analogue Implants: A Review on Outcomes from Clinical Trials and Case Reports." Materials 14, no. 9 (2021): 2296. http://dx.doi.org/10.3390/ma14092296.

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(1) It is estimated that 10% of the world’s population will need a dental implant in their lifetime. Despite all the advances in the comprehension of dental implant designs, materials and techniques, traditional implants still have many limitations. Customized root-analogue implants are, therefore, gaining increased interest in dental rehabilitation and are expected to not only preserve more hard and soft tissues but also avoid a second surgery and improve patient overall satisfaction. In this sense, the aim of this review was to collect and analyse the clinical trials and case reports on cust
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Perez-Alfaro, Irene, Daniel Gil-Hernandez, Nieves Murillo, and Carlos Bernal. "On Mechanical and Electrical Coupling Determination at Piezoelectric Harvester by Customized Algorithm Modeling and Measurable Properties." Sensors 22, no. 8 (2022): 3080. http://dx.doi.org/10.3390/s22083080.

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Piezoelectric harvesters use the actuation potential of the piezoelectric material to transform mechanical and vibrational energies into electrical power, scavenging energy from their environment. Few research has been focused on the development and understanding of the piezoelectric harvesters from the material themselves and the real piezoelectric and mechanical properties of the harvester. In the present work, the authors propose a behavior real model based on the experimentally measured electromechanical parameters of a homemade PZT bimorph harvester with the aim to predict its Vrms output
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Popescu, Diana, Aurelian Zapciu, Cristian Tarba, and Dan Laptoiu. "Fast production of customized three-dimensional-printed hand splints." Rapid Prototyping Journal 26, no. 1 (2020): 134–44. http://dx.doi.org/10.1108/rpj-01-2019-0009.

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Purpose This paper aims to propose a new solution for producing customized three-dimensional (3D)-printed flat-shaped splints, which are then thermoformed to fit the patient’s hand. The splint design process is automated and is available to clinicians through an online application. Design/methodology/approach Patient anthropometric data measured by clinicians are associated with variables of parametric 3D splint models. Once these variables are input by clinicians in the online app, customized stereo lithography (STL) files for both splint and half mold, in the case of the bi-material splint,
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Lotha, Liyingbeni, Nikhil Kumar Sharma, Devendra Chopra, and Ashutosh Gupta. "Prosthetic rehabilitation of a patient with ocular defect: A case report." Asian Journal of Oral Health and Allied Sciences 14 (August 29, 2024): 13. http://dx.doi.org/10.25259/ajohas_7_2024.

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Eye loss can lead to significant physical and psychological distress due to facial deformity. Rehabilitation options currently revolve around ocular prostheses, where resin has proven to be an effective material choice. Our clinical report explores a semi-customized approach, combining a stock iris with a customized sclera, which balances the advantages and disadvantages of both standard and custom prostheses. This solution aims to provide both esthetic appeal and functional effectiveness for individuals adjusting to the loss of an eye.
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Wang, Yu-Tzu, Jian-Hong Yu, Lun-Jou Lo, Pin-Hsin Hsu, and CHun-Li Lin. "Developing Customized Dental Miniscrew Surgical Template from Thermoplastic Polymer Material Using Image Superimposition, CAD System, and 3D Printing." BioMed Research International 2017 (2017): 1–8. http://dx.doi.org/10.1155/2017/1906197.

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This study integrates cone-beam computed tomography (CBCT)/laser scan image superposition, computer-aided design (CAD), and 3D printing (3DP) to develop a technology for producing customized dental (orthodontic) miniscrew surgical templates using polymer material. Maxillary bone solid models with the bone and teeth reconstructed using CBCT images and teeth and mucosa outer profile acquired using laser scanning were superimposed to allow miniscrew visual insertion planning and permit surgical template fabrication. The customized surgical template CAD model was fabricated offset based on the tee
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Muradbegovic, Alen, Matej Par, Vlatko Panduric, et al. "Water-Induced Changes in Experimental Resin Composites Functionalized with Conventional (45S5) and Customized Bioactive Glass." Journal of Functional Biomaterials 14, no. 6 (2023): 298. http://dx.doi.org/10.3390/jfb14060298.

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The aim of the study was to evaluate microhardness, mass changes during 1-year water immersion, water sorption/solubility, and calcium phosphate precipitation of experimental composites functionalized with 5–40 wt% of two types of bioactive glass (BG): 45S5 or a customized low-sodium fluoride-containing formulation. Vickers microhardness was evaluated after simulated aging (water storage and thermocycling), water sorption and solubility were tested according to ISO 4049, and calcium phosphate precipitation was studied by scanning electron microscopy, energy dispersive X-ray spectroscopy, and F
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Coello Martinez, Celine Jireh, and Fernanda de Lourdes Cáceres Lagos. "Design of a Customized Thumb Prosthesis: Focus on Functionality and Comfort." Journal of Biomimetics, Biomaterials and Biomedical Engineering 66 (September 23, 2024): 17–26. http://dx.doi.org/10.4028/p-umwt7z.

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This research focuses on addressing the scarcity of personalized and affordable prostheses in Honduras by designing and developing a functional prosthesis for a thumb. The general objective was to design a model suitable for 3D printing adapted to the specific needs of a patient who had her index and thumb fingers amputated. To achieve this, an integral methodology was employed, ranging from an exhaustive literature review of current solutions to detailed material evaluations, including interviews with patients and medical experts, SolidWorks modeling, and simulations. The result was the succe
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Song, Qingchuan, Yunong Chen, Peilong Hou, et al. "Fabrication of Multi-Material Pneumatic Actuators and Microactuators Using Stereolithography." Micromachines 14, no. 2 (2023): 244. http://dx.doi.org/10.3390/mi14020244.

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Pneumatic actuators are of great interest for device miniaturization, microactuators, soft robots, biomedical engineering, and complex control systems. Recently, multi-material actuators have become of high interest to researchers due to their comprehensive range of suitable applications. Three-dimensional (3D) printing of multi-material pneumatic actuators would be the ideal way to fabricate customized actuators, but so far, this is mostly limited to deposition-based methodologies, such as fused deposition modeling (FDM) or Polyjetting. Vat-based stereolithography is one of the most relevant
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Trindade, Daniela, Rachel Habiba, Cristiana Fernandes, et al. "Material Performance Evaluation for Customized Orthoses: Compression, Flexural, and Tensile Tests Combined with Finite Element Analysis." Polymers 16, no. 18 (2024): 2553. http://dx.doi.org/10.3390/polym16182553.

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Orthoses are commonly used for treating injuries to improve the quality of life of patients, with customized orthoses offering significant benefits. Additive manufacturing, especially fused deposition modelling, enhances these benefits by providing faster, more precise, and more comfortable orthoses. The present study evaluates nine polymeric materials printed in horizontal and vertical directions by assessing their performance through compressive, flexural, and tensile tests. Among all materials, polycarbonate, polylactic acid, and ULTEMTM 1010 showed the most promising results, not only beca
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