• Title/Summary/Keyword: bone quality

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백서 하악골에서 신연골형성술시 압축력의 효능에 관한 실험적 연구 (EXPERIPENTAL STUDY OF ROLE OF COMPRESSION FORCES ON DISTRACTION OSTEOGENESIS ON THE RAT MANDIBLE)

  • 강항립;김철훈;신상훈;정인교;김욱규
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제30권5호
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    • pp.368-379
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    • 2004
  • Distraction osteogenesis is a biologic process of new bone formation between the surfaces of bone segments that are gradually separated by incremental traction. Distraction osteogenesis is clinically applied as a new treatment modality of mandibular hypoplasia or bony defect area in maxillofacial area by many studies of distraction devices and method. But disadvantage of distraction osteogenesis shows unfavorably long consolidation period and relapse tendency. Therefore. this experiment was designed to investigate the effectiveness of combined application of distraction and compression force for improving of bone quality and shortening of treatment period during distraction osteogenesis. Twenty-one Sprague-Dawley rats with $300{\sim}350gm$ were used. These were divided into two group as distraction group and combination group was applied with compression force in the consolidation period. The rat were sacrificed for gross finding, radiographic and histologic findings. at 2, 4 weeks after distraction. The result were follow : 1. On radiographic finding, all experimental groups appeared more radiopacity than control groups both at 2, 4 weeks after distraction. 2. On histologic finding, trabeculae of bone and mature lamellar bone were showed increasingly in experimental group. Ossification occured rapidly. From this study, we may suggest that compression force application in consolidation period during distraction osteogenesis can be useful method improve bone quality and to shorten the treatment period. But more experimental and clinical studis are necessitated on effects of compression force application during distraction osteogenesis.

골유착 치과 임플란트를 이용한 상악 무치악부 치료의 예후에 관한 임상적 평가 (CLINICAL EVALUATION OF PROGNOSIS OF OSSEOINTEGRATED DENTAL IMPLANT IN TREATMENT OF MAXILLARY EDENTULOUS AREA)

  • 심원보;이동근;최규환
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제21권2호
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    • pp.189-197
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    • 1999
  • The use of osseointegrated implant has been reported that is an acceptable procedure for the restoration of totally or partially edentulous patient and that offers good predictability of long term success. It is difficult to get high success rate in edentulous maxillae with inadequate bony quality and quantity, and anatomic limitations such as pneumatic maxillary sinus and nasal floor. The various trials such as sinus lifting, bone grafting, guided bone regeneration, trabecular condensation with osteotome, and the use of wide-diameter implant have been introduced to solve these problems. This study was undertaken to assess the evaluation of clinical prognosis of the implant restorations with these various implantation techniques in the maxillary edentulous area. One hundred eight patients were treated with a total of 386 endosseous implants from March 1994 to January 1998 at Dept. of Dentistry, Korea Veterans Hospital in Seoul Korea. The various techniques for implantation in the edentulous maxillae were supplied to overcome the limitations of implant fixation. These techniques consist of sinus lifting, guided bone regeneration, onlay bone grafting, and osteotome trabecular condensation technique. The total success rate of implant restoration of this study was 93% in the maxillae. The success rate of implant restorations with conventional technique was 94.6%, with osteotome trabecular condensation technique was 94.1%, with guided bone regeneration technique was 93.3%, with bone grafting technique was 92.9%, with sinus lifting technique was 83.8%. The success rate on the maxillary anterior area was 95.2% and that on the posterior area was 91.9%. The failures were associated not only with surgical installation techniques but also bony quality and quantity, characteristics of implant, and stress distribution when in function.

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Numerical simulation of the femur fracture under static loading

  • El Sallah, Zagane Mohammed;Smail, Benbarek;Abderahmane, Sahli;Bouiadjra, B. Bachir;Boualem, Serier
    • Structural Engineering and Mechanics
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    • 제60권3호
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    • pp.405-412
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    • 2016
  • Bone is a living material with a complex hierarchical structure that gives it remarkable mechanical properties. Bone constantly undergoes mechanical. Its quality and resistance to fracture is constantly changing over time through the process of bone remodeling. Numerical modeling allows the study of the bone mechanical behavior and the prediction of different trauma caused by accidents without expose humans to real tests. The aim of this work is the modeling of the femur fracture under static solicitation to create a numerical model to simulate this element fracture. This modeling will contribute to improve the design of the indoor environment to be better safe for the passengers' transportation means. Results show that vertical loading leads to the femur neck fracture and horizontal loading leads to the fracture of the femur diaphysis. The isotropic consideration of the bone leads to bone fracture by crack propagation but the orthotropic consideration leads to the fragmentation of the bone.

The influence of screw type and osseointegration ratio on stress distribution in two different endosseous implants

  • Han, Jung-Suk
    • 대한치과보철학회지
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    • 제38권3호
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    • pp.348-357
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    • 2000
  • The purpose of this study is to examine the effect of partial osseointegration situation on bone loading patterns around two different free-standing screw shaped implants (Nobel Biocare, Gothenburg, Sweden and Degussa-Huls, Hanau, German). Two dimensional axisymmetric Finite element models of two implants(10mm length and 4mm diameter) were created according to different bone quantity, quality and osseointegration ratio in maxilla and mandible bone. At the same time uni-cortical and hi-cortical fixation were analyzed. Generally, full bond case showed less stress than partial bond case in overall area and mandibular model showed less amount of stress than that of maxilla model. Maximum stress of the Branemark implant is higher than that of ANKYLOS regardless of bonding ratio at crestal and apex region. However, more stress concentration was noted in ANKYLOS implant at screw body area especially in mandible. The effect of bicortical fixation on crestal bone stress reduction is dramatical in mandible however, there was no significant effect in maxillary case. The effect of partial bond on stress distribution was more significant at screw body and apex region than in crestal region. Partial bond cases demonstrated greater stress accumulation in trabecular bone than cortical bone. It is concluded that the more accurate model of implant and bone which affects stress and strain distribution is needed to mimic in vivo behavior of implants.

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Three-dimensional bio-printing and bone tissue engineering: technical innovations and potential applications in maxillofacial reconstructive surgery

  • Salah, Muhja;Tayebi, Lobat;Moharamzadeh, Keyvan;Naini, Farhad B.
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제42권
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    • pp.18.1-18.9
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    • 2020
  • Background: Bone grafting has been considered the gold standard for hard tissue reconstructive surgery and is widely used for large mandibular defect reconstruction. However, the midface encompasses delicate structures that are surrounded by a complex bone architecture, which makes bone grafting using traditional methods very challenging. Three-dimensional (3D) bioprinting is a developing technology that is derived from the evolution of additive manufacturing. It enables precise development of a scaffold from different available biomaterials that mimic the shape, size, and dimension of a defect without relying only on the surgeon's skills and capabilities, and subsequently, may enhance surgical outcomes and, in turn, patient satisfaction and quality of life. Review: This review summarizes different biomaterial classes that can be used in 3D bioprinters as bioinks to fabricate bone scaffolds, including polymers, bioceramics, and composites. It also describes the advantages and limitations of the three currently used 3D bioprinting technologies: inkjet bioprinting, micro-extrusion, and laserassisted bioprinting. Conclusions: Although 3D bioprinting technology is still in its infancy and requires further development and optimization both in biomaterials and techniques, it offers great promise and potential for facial reconstruction with improved outcome.

성인초기 여성의 골건강 증진을 위한 스마트폰 앱 개발 및 적용: 예비연구 (Development of a Smartphone Application for Promoting Bone Health in Korean Young Adult Women: A Pilot Study)

  • 박영주;이숙자;신나미;신현정;윤성진;전송이;조인해
    • 성인간호학회지
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    • 제27권4호
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    • pp.459-471
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    • 2015
  • Purpose: The purpose of this study was to develop a smartphone application and evaluate it's effectiveness and usability for promoting bone health in Korean young adult women. Methods: A smartphone application was developed covering exercise, nutrition, and health habits related to bone health. A pilot testing was conducted using a one-group pre/posttest design. A total of 22 female college students with low bone mass participated in the 8-week use of a pilot testing. Results: The "Strong bone Fit body (SbFb)" application was developed using Android platform. In the pilot testing, bone mineral density, serum CTX, and 25 (OH)Vit.D were significantly decreased. There is no significant change in serum osteocalcin and calcium. Serum phosphorus concentration, nutrient intakes (fiber, VitB6, and pantotenic acid), and all bone composition profiles were significantly increased. Bone-health knowledge was significantly increased but no change in health belief and self-efficacy. Conclusion: The results of this pilot testing suggest the effectiveness of the SbFb application to enhance and promote self-managing abilities for bone health. It can provide continuous feedback and high-quality bone health information. However, some contents and working methods of the application need to be modified and its effectiveness on bone health requires further investigations.

심하게 위축된 하악 구치부에 치조제 분할술과 블록형 골이식술을 이용한 임플란트 식립: 4년 관찰 증례보고 (Implant placement in severely atrophic mandible using alveolar ridge splitting procedure and small block bone graft: A case report of 4-year follow-up)

  • 김나홍;방주혁;이동운
    • 대한심미치과학회지
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    • 제28권2호
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    • pp.64-73
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    • 2019
  • 심한 치조골의 위축과 흡수로 인한 형태학적 변화는 임플란트의 성공적인 식립과 임플란트의 골유착에 영향을 미친다. 이를 극복하기 위한 다양한 골증대술 중 치조제분할술은 좁은 치조골 폭을 성공적으로 증대시키는 수술방법으로 보고되었다. 또한 다양하게 개발되는 임플란트 디자인과 치조제 팽창 기구 등은 심하게 흡수된 위축된 하악부위에서도 협측골 파절을 최소화할 수 있다. 가철성 부분의치의 사용으로 심하게 흡수된 하악 구치부에 치조제 분할술과 최소 크기의 블록형 골이식술을 이용해 한개의 스크류로 수용부의 고정을 획득한 후 동시적 접근법을 이용한 골이식 증례를 보고 하고자 한다. 보철과와 치주과의 협업으로 환자의 기능과 심미를 회복해준 증례로 사료된다.

Skeletal-Related Events among Breast and Prostate Cancer Patients: Towards New Treatment Initiation in Malaysia's Hospital Setting

  • Ezat, Sharifa Wan Puteh;Junid, Syed Mohamed Aljunid Syed;Khamis, Noraziani;Ahmed, Zafar;Sulong, Saperi;Nur, Amrizal Muhammad;Aizuddin, Azimatun Noor;Ismail, Fuad;Abdullah, Norlia;Zainuddin, Zulkifli Md;Kassim, Abdul Yazid Mohd;Haflah, Nor Hazla Mohamed
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권5호
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    • pp.3357-3362
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    • 2013
  • The human skeleton is the most common organ to be affected by metastatic cancer and bone metastases are a major cause of cancer morbidity. The five most frequent cancers in Malaysia among males includes prostate whereas breast cancer is among those in females, both being associated with skeletal lesions. Bone metastases weaken bone structure, causing a range of symptoms and complications thus developing skeletal-related events (SRE). Patients with SRE may require palliative radiotherapy or surgery to bone for pain, having hypercalcaemia, pathologic fractures, and spinal cord compression. These complications contribute to a decline in patient healthrelated quality of life. The multidimensional assessment of health-related quality of life for those patients is important other than considering a beneficial treatment impact on patient survival, since the side effects of treatment and disease symptoms can significantly impact health-related quality of life. Cancer treatment could contribute to significant financial implications for the healthcare system. Therefore, it is essential to assess the health-related quality of life and treatment cost, among prostate and breast cancer patients in countries like Malaysia to rationalized cost-effective way for budget allocation or utilization of health care resources, hence helping in providing more personalized treatment for cancer patients.

골밀도 측정의 올바른 질 관리방법 (Appropriate image quality management method of bone mineral density measurement)

  • 김호성;동경래
    • 한국콘텐츠학회:학술대회논문집
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    • 한국콘텐츠학회 2009년도 춘계 종합학술대회 논문집
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    • pp.1141-1149
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    • 2009
  • 골밀도 측정은 정확도와 정밀도가 우수하여야 작은 골량의 변화에도 진정한 생물학적 변화를 알 수 있다. 따라서 장비 및 검사자의 올바른 질 관리를 통하여 골밀도 검사의 신뢰성을 높이는 것을 목적으로 한다. 장비관리방법은 각각의 골밀도 장비 제조사에서 권고하는 팬텀을 이용하여 10~25회 측정하여 기준 값과 허용 범위를 정하고 검사가 있는 날에 매일 측정하거나 일주일에 3회 이상 측정하여 실제 골밀도의 값의 변화 유무를 확인하여야 한다. 또한 측정된 팬텀의 골밀도 수치를 기록하여 Shewart control chart와 CUSUM control chart를 만들어 각각의 Rule에 따라 평가한다. 이러한 관리는 장비의 설치 및 이동 시에 반드시 행해져야 한다. 검사자 관리방법은 정밀도 측정으로 평가하는데 정밀도는 재검사하였을 때에 실제 생물학적의 변화 없이 수치상의 결과값을 똑같이 재현할 수 있는지 알아보는 것이다. 측정 방법은 환자를 두 번씩 30번 측정하는 방법과 세 번씩 15번 측정하는 방법이 있다. 측정에서 중요한 것은 한 번 검사 후 두번째나 세 번째 검사에서도 반드시 검사 테이블에서 내려왔다 다시 올라가서 검사를 해야 한다. 측정된 골밀도 수치를 이용하여 정밀오차를 산출하여 95% 신뢰수준으로 정밀오차에 2.77을 곱하여 최소한의 생물학적 골밀도 변화를 산출한다. 골밀도 장비는 과학의 발달로 인하여 장비의 정확 오차가 1%이내로 줄었기 때문에 장비관리와 측정자의 기계조작 및 검사 오차를 잘 관리한다면 검사의 신뢰성 확보에 도움을 줄 것이다.

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The effect of various thread designs on the initial stability of taper implants

  • Park, Ju-Hee;Lim, Young-Jun;Kim, Myung-Joo;Kwon, Ho-Beom
    • The Journal of Advanced Prosthodontics
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    • 제1권1호
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    • pp.19-25
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    • 2009
  • STATEMENT OF PROBLEM. Primary stability at the time of implant placement is related to the level of primary bone contact. The level of bone contact with implant is affected by thread design, surgical procedure and bone quality, etc. PURPOSE. The aim of this study was to compare the initial stability of the various taper implants according to the thread designs, half of which were engaged to inferior cortical wall of type IV bone(Group 1) and the rest of which were not engaged to inferior cortical wall(Group 2) by measuring the implant stability quotient(ISQ) and the removal torque value(RTV). MATERIAL AND METHODS. In this study, 6 different implant fixtures with 10 mm length were installed. In order to simulate the sinus inferior wall of type IV bone, one side cortical bone of swine rib was removed. 6 different implants were installed in the same bone block following manufacturer s recommended procedures. Total 10 bone blocks were made for each group. The height of Group 1 bone block was 10 mm for engagement and that of group 2 was 13 mm. The initial stability was measured with ISQ value using Osstell $mentor^{(R)}$ and with removal torque using MGT50 torque gauge. RESULTS. In this study, we found the following results. 1. In Group 1 with fixtures engaged to the inferior cortical wall, there was no significant difference in RTV and ISQ value among the 6 types of implants. 2. In Group 2 with fixtures not engaged to the inferior cortical wall, there was significant difference in RTV and ISQ value among the 6 types of implants(P < .05). 3. There was significant difference in RTV and ISQ value according to whether fixtures were engaged to the inferior cortical wall or not(P < .05). 4. Under-drilling made RTV and ISQ value increase significantly in the NT implants which had lower RTV and ISQ value in Group 2(P < .05). CONCLUSIONS. Without being engaged to the inferior cortical wall fixtures had initial stability affected by implant types. Also in poor quality bone, under-drilling improved initial stability.