LEADER 10754nam 2200481 450 001 9910586578603321 005 20230106191151.0 010 $a3-030-43240-8 035 $a(MiAaPQ)EBC7068764 035 $a(Au-PeEL)EBL7068764 035 $a(CKB)24342141800041 035 $a(PPN)264194942 035 $a(EXLCZ)9924342141800041 100 $a20230106d2022 uy 0 101 0 $aeng 135 $aurcnu|||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aHip arthroscopy and hip joint preservation surgery /$fShane J. Nho [and four others], editors 205 $aSecond edition. 210 1$aCham, Switzerland :$cSpringer,$d[2022] 210 4$d©2022 215 $a1 online resource (1874 pages) 311 08$aPrint version: Nho, Shane J. Hip Arthroscopy and Hip Joint Preservation Surgery Cham : Springer International Publishing AG,c2022 9783030432393 320 $aIncludes bibliographical references and index. 327 $aIntro -- Contents -- About the Editors -- Section Editors -- Contributors -- Part I: Hip Basic Science -- 1 Hip Anatomy -- Introduction -- Bony Anatomy and Alignment -- Capsular and Ligamentous Anatomy -- Muscular Anatomy -- Blood Supply and Innervation -- Summary -- References -- 2 Clinical Biomechanics of the Hip Joint -- Introduction -- Hip Kinematics and Muscle Function -- Hip Patho-Morphology and Patho-Mechanics -- Biomechanical Implications of FAI Syndrome -- Biomechanical Implications of Acetabular Hip Dysplasia -- Summary -- Cross-References -- References -- 3 Plain Radiographic Evaluation of the Hip -- Introduction -- Technical Principles of Radiographic Imaging -- Conical Projection -- Film-Tube Distance -- Patient-Film Distance -- Centering and Direction of the X-Ray Beam -- Pelvic Orientation -- Fluoroscopy -- Radiographic Projections of the Hip -- Anteroposterior (AP) Pelvis View -- Low-Centered Pelvis View -- Anteroposterior (AP) Hip View -- Axial Cross-Table View -- Dunn-Rippstein View and Modified Dunn View -- Lauenstein and Frog-Leg Lateral View -- False Profile of Lequesne and de Sèze -- True Lateral Pelvis View -- Functional Views -- Radiographic Parameters -- Acetabular Depth -- Acetabular Coverage -- Acetabular Orientation -- Head-Neck Sphericity -- Joint Congruency -- Additional Findings -- Computer-Assisted Evaluation of Plain Pelvis Radiographs -- Summary -- Cross-References -- References -- 4 Computer Tomography Scan of the Hip and Pelvis -- Introduction -- Scanning Protocol -- Radiation Exposure -- Pathological Entities -- Femoroacetabular Impingement (FAI) -- Subspine Impingement -- Acetabular Dysplasia -- Pediatric Disorders (DDH, Perthes, SCFE)/Malalignment Syndromes -- Traumatic Hip Instability/Acetabular and Avulsion Fracture -- Total Hip Arthroplasty -- Summary -- Cross-References -- References. 327 $a5 Magnetic Resonance Imaging of the Hip -- Introduction -- MRI Basic Science -- Signal and Sequences -- Contrast -- Quantitative MRI -- dGEMRIC -- T2 Mapping -- Image Acquisition -- Imaging Artifact -- Intra-articular Structures -- Labrum -- Articular Cartilage -- Ligamentum Teres -- Synovium -- Joint Capsule -- Extra-articular Structures -- Hip Abductors -- Trochanteric Bursa -- Ischiofemoral Impingement -- Iliopsoas Tendon and Bursa -- Hamstrings -- Bone -- Normal Bone -- Avascular Necrosis -- Subchondral Fractures -- Athletic Pubalgia -- Hip Pathomorphology -- Cam Lesion -- Pincer Lesion -- Summary -- Cross-References -- References -- 6 Ultrasound of the Hip -- Introduction -- Technique -- Hip Joint -- Muscles and Tendons -- Fluid Collections -- Injections -- Dynamic Examination -- Hardware -- Summary -- References -- 7 Physical Examination of the Hip and Pelvis -- Introduction -- The Layers Approach to Hip Evaluation -- History -- The Physical Examination of the Hip -- Standing Examination -- Seated Examination -- Supine Examination -- Lateral Examination -- Prone Examination -- Posterior Hip Pain -- Snapping Hip Tests -- Summary of Femoroacetabular Congruence and Hip Instability -- Summary -- Cross-References -- References -- 8 Selective and Image-Guided Injections Around the Hip and Pelvis -- Introduction -- Greater Trochanteric Bursitis/Greater Trochanteric Pain Syndrome -- Greater Trochanteric Bursa Injection Technique -- Gluteus Medius Tendon Injection Technique -- Aftercare -- Gluteal Bursitis -- Gluteal Bursa Injection Technique -- Aftercare -- Iliopsoas Bursitis -- Iliopsoas Bursa Injection -- Aftercare -- Potential Complications -- Adductor Tendonitis -- Adductor Tendon Injection Technique -- Aftercare -- Hamstring Tendon Injuries -- Hamstring Injection Technique -- Aftercare -- Intra-articular Hip Conditions. 327 $aIntra-articular Hip Injection Technique -- Aftercare -- Sacroiliac Joint Dysfunction -- SI Injection Technique -- Aftercare -- Osteitis Pubis -- Pubic Symphysis Injection Technique -- Aftercare -- Piriformis Syndrome -- Piriformis Injection Technique -- Lateral Cutaneous Femoral Nerve Syndrome -- Lateral Cutaneous Femoral Nerve Injection Technique -- Summary -- Cross-References -- References -- 9 Hip Osteoarthritis: Definition and Etiology -- Introduction -- The Genetics of Hip Osteoarthritis -- Acetabular Dysplasia -- Biomechanics of Dysplasia -- Natural History of Dysplasia -- Femoroacetabular Impingement (FAI) -- Biomechanics of FAI -- Natural History of FAI -- Summary and Conclusions -- Cross-References -- References -- 10 Athletic Populations of Interest in Hip Arthroscopy and Hip Preservation Surgery -- Introduction -- General Classifications of Hip Pain in Athletes -- Femoroacetabular Impingement -- The Role of Hip Arthroscopy and Hip Preservation Surgery -- The Contact Athlete -- The Pivoting Athlete -- The Overhead Athlete -- The Endurance Athlete -- The Hypermobile Athlete -- Special Considerations -- In-Season Management -- General Treatment Guidelines -- Summary -- Cross-References -- References -- 11 Rehabilitation of Non-operative Hip Conditions -- Introduction -- Modifiable Versus Non-modifiable Factors as Contributors to Hip Disorders -- Extra-Articular Hip Disorders -- Overuse and Overload Tendon Injuries -- Anterior Hip Overuse Injuries -- Gluteal Tendinopathy -- Internal and External Snapping Hip Syndromes -- Hamstring Injuries -- Acute Hamstring Tears -- Chronic Proximal Hamstring Tendinopathy -- Athletic Pubalgia and Osteitis Pubis -- Adductor Muscle Strains -- Intra-Articular Pathologies -- Chondral Injury and Osteoarthritis -- Femoroacetabular Impingement (FAI) Syndrome and Acetabular Dysplasia -- Labral Tear -- Summary. 327 $aCross-References -- References -- 12 Outcome Assessment of Non-Arthroplasty Hip Disease -- Introduction -- Outcome Assessment: Who, Why, Where, When, and What? -- Who Should Measure Outcomes? -- Why Should We Measure Patient Outcomes? -- Where Should Patient-Reported Outcomes Be Measured? -- When Should Patient-Reported Outcomes Be Measured? -- What Outcomes Should Be Measured? -- Patient-Reported Outcomes for Hip Joint Conditions -- Copenhagen Hip and Groin Outcome Score (HAGOS) -- International Hip Outcome Tool (iHOT) -- Comparing the HAGOS and iHOT -- Cross Cultural Adaptation and Translation into Different Languages -- Summary -- References -- Part II: Operative Basics for Hip Arthroscopy and Open Hip Preservation Surgery -- 13 Operative Indications for Hip Arthroscopy and Open Hip Preservation Surgery -- Introduction -- Indications -- Intra-articular (Central Compartment) Pathology -- Femoroacetabular Impingement (FAI) -- Labral Pathology -- Chondral Lesions -- Ligamentum Teres Injuries -- Septic Arthritis -- Loose Bodies/Synovial Chondromatosis -- Synovial Diseases -- Adhesive Capsulitis -- Capsular Laxity and Instability -- Staged Interventions -- Total Hip Replacement -- Periarticular (Peripheral Compartment) Pathology -- Greater Trochanteric Pain Syndrome -- Snapping Hip Syndromes -- Proximal Hamstring Repair -- Sciatic Nerve Entrapment -- Extra-articular FAI -- Contraindications -- Absolute -- Relative -- Summary -- References -- 14 Hip Arthroscopy: Supine Approach to Patient Positioning, Setup, and Traction -- Introduction -- Preoperative Planning/Anesthesia/Setup -- Positioning -- Traction -- Application of Traction -- Tractionless Hip Arthroscopy -- Distraction Options -- Summary -- Cross-References -- References -- 15 Hip Arthroscopy: Supine Approach to Patient Positioning, Setup with Post-less -- Introduction. 327 $aPhysiologic Changes During Hip Arthroscopy with Perineal Post Compared with Post-Free Surgery -- Intraoperative Advantages of the Post-Free Technique -- Post-free Surgical Technique -- Summary -- Cross-References -- References -- 16 Hip Arthroscopy: Lateral Approach to Patient Positioning, Setup, and Traction -- Introduction and Brief History -- Preoperative Planning/Anesthesia/Setup -- Positioning -- Distraction -- OR Setup -- Leg Position -- Instruments -- Pump -- Tower -- Procedure -- Arthroscopic Anatomy -- Summary -- Cross-References -- References -- 17 Hip Arthroscopy: Portal Placement -- Introduction -- Anatomy -- Patient Setup -- Portal Overview -- Anterolateral Portal -- Placement -- Utility -- Risks -- Anterior Portal -- Placement -- Utility -- Risks -- Mid-Anterior Portal -- Posterolateral Portal -- Placement -- Utility -- Risks -- Accessory Portals -- Proximal and Distal Anterolateral Portals -- Peritrochanteric Space Portals -- Anterior Portal -- Distal Posterior Portal -- Summary -- References -- 18 Hip Arthroscopy: Central Compartment Access -- Introduction -- General Considerations -- Patient Setup -- Portal Placement -- Anterolateral Portal -- Risks -- Anterior Portal -- Risks -- Midanterior Portal (MAP) -- Risks -- Posterolateral Portal -- Risks -- Challenges to Central Compartment Access -- Revision Cases -- Combined Procedures -- Hip Arthroscopy and Periacetabular Osteotomy -- Hip Arthroscopy and Femoral Derotational Osteotomy -- Capsulotomy -- Summary -- Cross-References -- References -- 19 Hip Arthroscopy: Peripheral Compartment Access -- Introduction -- Methods -- Summary -- Cross-References -- References -- 20 Hip Arthroscopy: Peritrochanteric Space Access -- Introduction -- Anatomy of the Peritrochanteric Compartment -- Endoscopic Techniques -- Summary -- Cross-References -- References. 327 $a21 Rehabilitation of Post-Operative Hip. 606 $aHip joint$xSurgery 615 0$aHip joint$xSurgery. 676 $a617.581059 702 $aNho$b Shane J. 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910586578603321 996 $aHip Arthroscopy and Hip Joint Preservation Surgery$91736066 997 $aUNINA LEADER 03830nam 22008773a 450 001 9910346692003321 005 20250203235435.0 010 $a9783039210893 010 $a3039210890 024 8 $a10.3390/books978-3-03921-089-3 035 $a(CKB)4920000000094749 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/49502 035 $a(ScCtBLL)39766143-e2a9-4a39-aa91-704489782609 035 $a(OCoLC)1126098957 035 $a(oapen)doab49502 035 $a(oapen)49502 035 $a(EXLCZ)994920000000094749 100 $a20250203i20192019 uu 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aHollow core optical fibers$fWalter Belardi 210 $cMDPI - Multidisciplinary Digital Publishing Institute$d2019 210 1$aBasel, Switzerland :$cMDPI,$d2019. 215 $a1 electronic resource (182 p.) 311 08$a9783039210886 311 08$a3039210882 330 $aThe possibility of guiding light in air has fascinated optical scientists and engineers since the dawn of optical fiber technology. In the last few years, hollow core optical fibers have been attracting the attention of an expanding worldwide research community, furthering the design, fabrication and device implementation of specialty optical fibers. Hollow core optical fibers are entering almost any specific application field of optics from medicine to security; from telecommunication to industrial processing; from instrumentation to biology. In parallel to the increased number of applications, major advances are still being made on the optimization of hollow core fiber designs and on the study of its underlying guiding properties, as well as in the use of different materials and fabrication techniques, which, in turn, are providing even more ways of exploitation of this technology and new technical challenges. This Special Issue of Fibers rides the wave of this increasing interest in the field of hollow core optical fibers by providing an overview of the recent progress in this field as well as an updated and indicative sample of current research activities worldwide. 606 $aHistory of engineering and technology$2bicssc 610 $afiber filters 610 $aaddictive manufacturing 610 $amicrostructured optical fiber splicing 610 $ahollow core fibers 610 $aTHz 610 $ahollow core fiber 610 $anegative curvature fibers 610 $abeam delivery 610 $afiber loss 610 $aCO2 lasers 610 $afiber design and fabrication 610 $aoptical fiber 610 $aultrafast lasers 610 $achalcogenide glass 610 $awaveguide 610 $amultiphoton fluorescence spectroscopy 610 $agas photonics 610 $afabrication 610 $ahollow-core antiresonant fiber 610 $aphotonic crystal fibers 610 $aanti-resonant fibers 610 $ahollow-core photonic crystal fiber 610 $amicrostructured optical fibers 610 $acarbon dioxide laser 610 $afiber optics 610 $amicrostructured fibers 610 $ahollow optical fiber 610 $aendoscopic laser applications 610 $aterahertz 610 $aoptical fiber sensors 610 $amid-IR 610 $aanti-resonant 610 $ahollow-core fibers 610 $amodal fiber properties 610 $a3D printing 610 $aRaman lasers 610 $anumerical modeling 615 7$aHistory of engineering and technology 700 $aBelardi$b Walter$0131289 801 0$bScCtBLL 801 1$bScCtBLL 906 $aBOOK 912 $a9910346692003321 996 $aHollow core optical fibers$93020272 997 $aUNINA