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Total hip replacement (THR) = effect of inclination and anteversion angle on the performance of epoxy-UHMWPE acetabular cup /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Total hip replacement (THR)/ by Muhammad Faris bin Abd Manap, Solehuddin Shuib, Ahmad Zafir Romli.
其他題名:
effect of inclination and anteversion angle on the performance of epoxy-UHMWPE acetabular cup /
作者:
Manap, Muhammad Faris bin Abd.
其他作者:
Shuib, Solehuddin.
出版者:
Singapore :Springer Nature Singapore : : 2024.,
面頁冊數:
xvii, 94 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Total hip replacement. -
電子資源:
https://doi.org/10.1007/978-981-96-0975-8
ISBN:
9789819609758
Total hip replacement (THR) = effect of inclination and anteversion angle on the performance of epoxy-UHMWPE acetabular cup /
Manap, Muhammad Faris bin Abd.
Total hip replacement (THR)
effect of inclination and anteversion angle on the performance of epoxy-UHMWPE acetabular cup /[electronic resource] :by Muhammad Faris bin Abd Manap, Solehuddin Shuib, Ahmad Zafir Romli. - Singapore :Springer Nature Singapore :2024. - xvii, 94 p. :ill. (some col.), digital ;24 cm. - SpringerBriefs in applied sciences and technology,2191-5318. - SpringerBriefs in applied sciences and technology..
Chapter 1. THE EFFECT OF INCLINATION AND ANTEVERSION ANGLE ON THE PERFORMANCE OF EPOXY-UHMWPE ACETABULAR CUP -- Chapter 2. METAL-ON-METAL TOTAL HIP REPLACEMENT AND SAFE ZONE ORIENTATION OF ACETABULAR CUP -- Chapter 3. FINITE ELEMENT ANALYSIS (FEA) OF METAL-ON-POLYMER (MoP) AND ACETABULAR CUP MATERIAL -- Chapter 4. NUMERICAL AND MATHEMATICAL MODELLING FOR ACETABULAR CUP ORIENTATION -- Chapter 5. EXPERIMENTAL WORK OF EPOXY-UHMWPE MATERIALS -- Chapter 6. ANALYTICAL RESULTS OF SAFE ZONE ORIENTATION -- Chapter 7. FINITE ELEMENT ANALYSIS (FEA) STATIC STRUCTURAL ANALYSIS -- Chapter 8. EXPERIMENTAL WORK OF EPUHMWPE MATERIALS -- Chapter 9. THE PERFORMANCE OF EPOXY-UHMWPE AT DIFFERENT INCLINATION AND ANTEVERSION ANGLE.
This book highlights the critical challenges faced in total hip replacement (THR) procedures, particularly concerning the performance and longevity of acetabular components. Despite advancements in implant technology, issues such as improper orientation and material failure continue to result in complications, including dislocation and wear. Recognizing the need for more reliable solutions, this book explores the optimization of safe zone orientation and the development of composite materials, specifically focusing on metal-on-polymer (MoP) implants. By investigating these factors through numerical analysis, finite element analysis (FEA), and experimental studies, the book seeks to enhance implant performance, reduce failure rates, and ultimately improve patient outcomes in THR surgeries.
ISBN: 9789819609758
Standard No.: 10.1007/978-981-96-0975-8doiSubjects--Topical Terms:
674143
Total hip replacement.
LC Class. No.: RD549
Dewey Class. No.: 617.5810592
Total hip replacement (THR) = effect of inclination and anteversion angle on the performance of epoxy-UHMWPE acetabular cup /
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Chapter 1. THE EFFECT OF INCLINATION AND ANTEVERSION ANGLE ON THE PERFORMANCE OF EPOXY-UHMWPE ACETABULAR CUP -- Chapter 2. METAL-ON-METAL TOTAL HIP REPLACEMENT AND SAFE ZONE ORIENTATION OF ACETABULAR CUP -- Chapter 3. FINITE ELEMENT ANALYSIS (FEA) OF METAL-ON-POLYMER (MoP) AND ACETABULAR CUP MATERIAL -- Chapter 4. NUMERICAL AND MATHEMATICAL MODELLING FOR ACETABULAR CUP ORIENTATION -- Chapter 5. EXPERIMENTAL WORK OF EPOXY-UHMWPE MATERIALS -- Chapter 6. ANALYTICAL RESULTS OF SAFE ZONE ORIENTATION -- Chapter 7. FINITE ELEMENT ANALYSIS (FEA) STATIC STRUCTURAL ANALYSIS -- Chapter 8. EXPERIMENTAL WORK OF EPUHMWPE MATERIALS -- Chapter 9. THE PERFORMANCE OF EPOXY-UHMWPE AT DIFFERENT INCLINATION AND ANTEVERSION ANGLE.
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This book highlights the critical challenges faced in total hip replacement (THR) procedures, particularly concerning the performance and longevity of acetabular components. Despite advancements in implant technology, issues such as improper orientation and material failure continue to result in complications, including dislocation and wear. Recognizing the need for more reliable solutions, this book explores the optimization of safe zone orientation and the development of composite materials, specifically focusing on metal-on-polymer (MoP) implants. By investigating these factors through numerical analysis, finite element analysis (FEA), and experimental studies, the book seeks to enhance implant performance, reduce failure rates, and ultimately improve patient outcomes in THR surgeries.
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