A Comprehensive Software Tool For The Diagnosis Planning And Navigation For Minimally Invasive Surgical Treatment Of Femoroacetabular Impingement PDF Download

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Hip Arthroscopy and Hip Joint Preservation Surgery

Hip Arthroscopy and Hip Joint Preservation Surgery
Author: Shane J. Nho
Publisher: Springer Nature
Total Pages: 1874
Release: 2022-08-01
Genre: Medical
ISBN: 3030432408

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The field of hip preservation surgery has evolved over the past decade as our understanding of hip pathomechanics and pathomorphology has expanded. The published literature on non-arthritic hip pathology, for example, has grown exponentially. The topics of controversy in the past decade have been answered in some cases, but new questions have also arisen. In addition to the 99 chapters in the original edition – most of which will be retained and updated as applicable – there will be over 30 brand new chapters focusing on new and more sophisticated techniques from authors that have been the pioneers of the field. The text is divided into nine thematic sections, covering the breadth of the topic and the current state of the art: basic science of the hip; operative basics for hip arthroscopy and open hip preservation surgery; pediatric hip conditions; approaches to disorders of the hip and pelvis; enthesopathy and neuromuscular disorders; hip fractures and instability; avascular necrosis; hip cartilage restoration; and oncologic conditions. Throughout, there is a heavy emphasis on surgical techniques, and video clips will be included in selected chapters. Written by edited by thought leaders and seasoned practitioners in the field, this new edition of Hip Arthroscopy and Hip Joint Preservation Surgery will remain the gold standard for orthopedic surgeons and sports medicine specialists, expanding on the range of techniques available to clinicians treating injuries to and disorders of the hip.


Digital Orthopedics

Digital Orthopedics
Author: Guoxian Pei
Publisher: Springer
Total Pages: 447
Release: 2019-03-14
Genre: Medical
ISBN: 9402410767

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This book addresses all aspects of digital techniques in orthopedics, from development of the core principles to imaging techniques, computer-aided design, reverse engineering and their applications. It illustrates the successful applications in accurate operation using 3-D reconstruction and applied digital techniques. All illustrations and tables were meticulously selected and are easy to understand. The book was written for all doctors and researchers who work in the fields of orthopedics, CAD/CAM and anatomy. Above all, surgeons, physiatrists, radiologists, and engineers in image processing and orthopedics will find it a valuable resource.


Functional Testing Provides Unique Insights Into the Pathomechanics of Femoroacetabular Impingement and an Objective Basis for Evaluating Treatment Outcome

Functional Testing Provides Unique Insights Into the Pathomechanics of Femoroacetabular Impingement and an Objective Basis for Evaluating Treatment Outcome
Author: Jonathan Henry Rylander
Publisher:
Total Pages:
Release: 2012
Genre:
ISBN:

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The underlying motivation for this dissertation was the need for a better understanding of the biomechanical factors associated with a clinical problem recently termed Femoroacetabular Impingement (FAI). FAI has been associated with morphologic abnormalities at the hip, resulting in a large number of patients presenting with groin pain, soft tissue damage, and loss of hip motion. Proper diagnosis and treatment for FAI is still debated, and support can be found for conservative, open displacement surgery, as well as arthroscopic techniques. There is a popular belief in the orthopaedic community that FAI is a risk factor for the development of hip osteoarthritis (OA), but the dynamic pathomechanics of FAI and long term outcome for treatment versus non-treatment is still not known. Surgical intervention is gaining in popularity to treat this condition, but current outcome metrics are short-mid term and are either subjective, passive, or static. However, FAI is a condition whose underlying injury mechanism is thought to be dynamic movement. Therefore, the goals of this dissertation were to utilize motion capture techniques to provide an objective analysis of the pathomechanics of FAI and to utilize the FAI kinematic profile as a metric for evaluating surgical outcome and as a potential link to hip osteoarthritis risk. The results of this work provided support for the conclusion that FAI represents a substantial risk factor for OA at the hip where a specific gait profile previously identified as an early biomechanical marker for hip OA was found in untreated patients with FAI. The gait profile was characterized as a "reversal gait profile" where the normal pattern of flexion motion at the hip had an abnormal reversal pattern near the mid stance of gait. The observed "reversal gait pattern" in untreated patients with FAI provided objective support for the idea that FAI is a risk factor for the premature development of hip OA. This work also provided a basis for the objective assessment of treatment for FAI by testing for changes in ambulatory mechanics before and after arthroscopic surgery for FAI. It was found that arthroscopic surgical intervention significantly restored normal hip motion in the FAI group during walking. This was important, since as noted above, the abnormal hip motion during walking is considered a biomechanical marker for hip OA. However arthroscopic surgery did not completely restore normal motion during the more strenuous activities (stair climbing and jogging). While surgery improved the reversal gait profile, there were other kinematic abnormalities, including a general loss of flexion-extension range of motion, a loss of hip adduction, and a loss of internal rotation over the stance phase of walking, stair climbing, and jogging. The abnormal motion observed post-operatively during more strenuous activities indicates a continued underlying joint problem or a learned behavior that was not corrected through surgical intervention and/or rehabilitation. The results of the FAI studies motivated further assessment of the abnormal kinematic profile (reversal gait pattern and reduced hip motions) to gain a better understanding of the causes of the altered motion. Two additional studies were conducted. The first study tested the hypothesis that older healthy subjects will have a greater incidence of the reversal gait pattern. A group of asymptomatic people aged 20-80 were studied and the results indicated an increase in the prevalence of reversal gait pattern in the older age range where there is a substantial increase in the incidence of hip OA. A second study tested a group of patients with documented hamstrings muscle weakness and found the reversal pattern as well as other limited hip kinematics similar to the FAI group. These results suggest muscle weakness as a contributor to the altered kinematics and reversal gait profile and provide pilot data for future studies. Taken together, the results of this dissertation indicate that symptomatic FAI individuals have a distinct kinematic profile that suggests they are on a pathway to hip OA development. Surgical intervention shows promise in terms of restoring normal motion during walking, but continued abnormal motion is still present during more strenuous activities of daily living. The underlying cause of these altered motions could have implications for better understanding the pathomechanics of this condition and for developing more effective treatments. This dissertation provides baseline data to support the use of motion capture as an objective tool for assessing FAI surgical outcome and to support future studies aimed at further characterizing the injury mechanism for FAI.


Computer Assisted Minimally Invasive Surgery

Computer Assisted Minimally Invasive Surgery
Author:
Publisher:
Total Pages: 0
Release: 2001
Genre:
ISBN:

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The Operating Room of the Future will deliver the optimal surgical environment through the integration of people, equipment, space and process. The Computer Assisted Minimally Invasive Surgery (CAMIS) project has completed the development and deployment of a number of components critical to the achievement of The Operating Room of the Future concept. The first component is a Digital Micro Encoscope (DME). This device provides endoscopic visualization of orthopaedic joint spaces. Coupled with its integrated video processing components, the DME enables a medical diagnosis of possible orthopaedic abnormalities through an incision size less than 2mm. The second component of the CAMIS project is a Patient Resource Database (PRD). This system constitutes a surgical data collection system coupled with a search mechanism which integrates other hospital data repositories into a unified interface. The system is referred to as the Electronic Surgical Record (ESR) and functions like an Operating Room "aeronautical black box" recording critical aspects of the ensuing procedure. The third component of the CAMIS project is a Personal Surgical Display (PSD). This component provides the user with an augmented reality display of patient data during the performance of a surgical procedure. The design of the system enables a see through capability which allows the physician to reference their patient with respect to any data that is shown.


The Unhappy Total Knee Replacement

The Unhappy Total Knee Replacement
Author: Michael T. Hirschmann
Publisher: Springer
Total Pages: 800
Release: 2015-09-15
Genre: Medical
ISBN: 3319080997

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This book addresses the need for improved diagnostic and treatment guidelines for patients in whom total knee arthroplasty (TKA) has had an unsatisfactory outcome. It opens by discussing the basics of TKA and the various causes of failure and pain. Diagnostic aspects are considered in detail, with attention to advances in clinical investigation, laboratory analysis and in particular, imaging techniques. In addition, helpful state of the art diagnostic algorithms are presented. Specific pathology-related treatment options, including conservative approaches and salvage and revision TKA strategies, are then explained, with identification of pitfalls and key points. A series of illustrative cases cover clinical scenarios frequently encountered in daily clinical practice. The evidence-based, clinically focused guidance provided in this book, written by internationally renowned experts, will assist surgeons in achieving the most effective management of these challenging cases.


Diagnosis and Management of Femoroacetabular Impingement

Diagnosis and Management of Femoroacetabular Impingement
Author: Olufemi R. Ayeni
Publisher: Springer
Total Pages: 279
Release: 2016-09-15
Genre: Medical
ISBN: 3319320009

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This book is unique in combining an exclusive focus on femoroacetabular impingement (FAI) with an evidence-based approach and the involvement of a diverse group of global experts. It is designed to meet the worldwide need for a summary of current evidence that will readily assist the physician in establishing the most accurate diagnosis and providing the best available treatment. The coverage is wide ranging, encompassing clinical examination, differential diagnosis, imaging, indications for surgery, contemporary arthroscopic and open management, treatment of labial tears, cartilage injury management, non-operative management, rehabilitation, treatment of complications, and revision surgery. Trainees, physicians, surgeons, and allied health care professionals who treat young adults with hip pain will find the book to be an excellent source of information on what procedures are most helpful and how they should be implemented.


Personalized Hip and Knee Joint Replacement

Personalized Hip and Knee Joint Replacement
Author: Charles Rivière
Publisher: Springer Nature
Total Pages: 346
Release: 2020-06-30
Genre: Medical
ISBN: 3030242439

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This open access book describes and illustrates the surgical techniques, implants, and technologies used for the purpose of personalized implantation of hip and knee components. This new and flourishing treatment philosophy offers important benefits over conventional systematic techniques, including component positioning appropriate to individual anatomy, improved surgical reproducibility and prosthetic performance, and a reduction in complications. The techniques described in the book aim to reproduce patients’ native anatomy and physiological joint laxity, thereby improving the prosthetic hip/knee kinematics and functional outcomes in the quest of the forgotten joint. They include kinematically aligned total knee/total hip arthroplasty, partial knee replacement, and hip resurfacing. The relevance of available and emerging technological tools for these personalized approaches is also explained, with coverage of, for example, robotics, computer-assisted surgery, and augmented reality. Contributions from surgeons who are considered world leaders in diverse fields of this novel surgical philosophy make this open access book will invaluable to a wide readership, from trainees at all levels to consultants practicing lower limb surgery


Minimally Invasive Surgery of the Foot and Ankle

Minimally Invasive Surgery of the Foot and Ankle
Author: Nicola Maffulli
Publisher: Springer Science & Business Media
Total Pages: 458
Release: 2010-12-25
Genre: Medical
ISBN: 1849964173

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Minimally Invasive Surgery of the Foot and Ankle represents a novel approach to treatment of orthopedic problems in the foot and ankle. The gradual change of philosophy in the management of foot and ankle surgery means that patients require a less invasive approach to surgery and a consequent improvement in recovery time. Describing the techniques and, importantly, the indications for minimally invasive procedures for the management of foot and ankle ailments, this book will explain the management of various conditions and how they can be approached using minimally invasive techniques. However, rather than only concentrating on minimally invasive surgery of the foot and ankle, the authors will be examining the options open to surgeons operating in this area – both open surgical and arthroscopic – and explaining the benefits of each. Extensive radiographs, diagrams, and intra-operative pictures will illustrate the procedures described.


A Sensorized Instrument for Minimally Invasive Surgery for the Measurement of Forces During Training and Surgery

A Sensorized Instrument for Minimally Invasive Surgery for the Measurement of Forces During Training and Surgery
Author: Ana Luisa Trejos
Publisher:
Total Pages: 386
Release: 2012
Genre:
ISBN:

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The reduced access conditions present in Minimally Invasive Surgery (MIS) affect the feel of interaction forces between the instruments and the tissue being treated. This loss of haptic information compromises the safety of the procedure and must be overcome through training. Haptics in MIS is the subject of extensive research, focused on establishing force feedback mechanisms and developing appropriate sensors. This latter task is complicated by the need to place the sensors as close as possible to the instrument tip, as the measurement of forces outside of the patient's body does not represent the true tool-tissue interaction. Many force sensors have been proposed, but none are yet available for surgery. The objectives of this thesis were to develop a set of instruments capable of measuring tool-tissue force information in MIS, and to evaluate the usefulness of force information during surgery and for training and skills assessment. To address these objectives, a set of laparoscopic instruments was developed that can measure instrument position and tool-tissue interaction forces in multiple degrees of freedom. Different design iterations and the work performed towards the development of a sterilizable instrument are presented. Several experiments were performed using these instruments to establish the usefulness of force information in surgery and training. The results showed that the combination of force and position information can be used in the development of realistic tissue models or haptic interfaces specifically designed for MIS. This information is also valuable in order to create tactile maps to assist in the identification of areas of different stiffness. The real-time measurement of forces allows visual force feedback to be presented to the surgeon. When applied to training scenarios, the results show that experience level correlates better with force-based metrics than those currently used in training simulators. The proposed metrics can be automatically computed, are completely objective, and measure important aspects of performance. The primary contribution of this thesis is the design and development of highly versatile instruments capable of measuring force and position during surgery. A second contribution establishes the importance and usefulness of force data during skills assessment, training and surgery.