| 2D fluoroscopy |
32
|
| 2D navigation |
133
|
| 2D/3D matching |
66,
316
|
| 2D/3D reconstruction |
296,
317
|
| 3CA |
279
|
| 3D |
180
|
| 3D analysis |
270
|
| 3D fluorscopy |
294
|
| 3D image-matching software |
196
|
| 3D orientation |
250
|
| 3D planning |
282
|
| 3D templating |
69
|
| 3D ultrasound |
312
|
| 3-year follow-up |
197
|
| 5-year follow-up |
6
|
| 7-year follow-up |
300
|
| Accuracy |
44,
105,
123,
190,
218,
219,
297,
311,
314,
333
|
| Acetabular component |
9,
302
|
| Acetabular osteotomy |
173
|
| Acetabular positioning |
303
|
| Acetabular tumors |
251
|
| Acetabulum |
37,
228
|
| ACL |
38,
49,
159,
175,
222,
235,
328
|
| Activity |
185
|
| Adjusted anteversion |
327
|
| Aging effect |
224
|
| Alignment |
9,
149,
152
|
| Alpha angle |
101
|
| Anatomical plasty |
2
|
| Anatomy reconstruction |
210,
293
|
| Ankylosing spondylitis |
120
|
| Anteversion |
98,
260,
327
|
| Articulation |
293
|
| Athena knee |
196
|
| Atlas-based segmentation |
30
|
| Augmented reality |
75
|
| Automatic distraction |
17
|
| Benign bone tumor |
96
|
| Biomechanics |
318
|
| Blood loss |
5
|
| Bone cutting |
94,
238
|
| Bone resection |
297
|
| Bone segmentation |
312
|
| Bone tumor |
47,
77,
197,
201,
201,
202,
283
|
| Bone-implant contact |
259
|
| CAD/CAM femoral stem |
254
|
| Cadaveric study |
145,
275
|
| Cell |
185
|
| Cementation |
149
|
| Center of rotation |
223,
318
|
| Clinical outcomes |
62,
158,
232
|
| Cohort study |
245
|
| Combined anteversion |
33,
237
|
| Component selection |
310
|
| Component size |
264
|
| Computer assisted design |
47
|
| Computer assisted diagnosis |
101
|
| Computer assisted finite element analysis |
268
|
| Computer simulation |
120,
233
|
| Cone-beam CT |
77
|
| Constraint-based modeling |
252
|
| Contact force |
66
|
| Continuous series |
245
|
| Coronal alignment |
76,
125
|
| Coronal deformity |
298
|
| Correction |
156
|
| Corrective osteotomy |
75
|
| Cost effective |
273,
287
|
| CT |
190
|
| CT templating |
259,
260
|
| CT-MRI fusion |
202
|
| Cup |
105
|
| Cup alignment |
307
|
| Cup orientation |
137
|
| Cup position |
65,
278,
329
|
| Curretage |
96
|
| Custom fit |
231
|
| Custom guide |
4
|
| Custom made cutting guides |
286
|
| Custom made femoral stem |
254
|
| Customized instrumentation |
39,
232,
297,
310
|
| Deformed femur |
71
|
| Deformity |
92,
203,
209
|
| Depth of field camera |
24
|
| Design of surgical devices |
293
|
| Developing countries |
287
|
| Digital X-rays |
24
|
| Direct navigation |
77
|
| Distal femoral deformity |
98
|
| Dynamic stability |
328
|
| Dysplastic hip |
65
|
| Efficiency |
322
|
| Elbow joint |
2
|
| Elderly patients |
27
|
| Electromagnetic |
62,
143,
319
|
| Errors from cement |
149
|
| External rotation |
21
|
| Extra-articular |
175,
203
|
| Femoral anteversion |
154
|
| Femoral component |
102,
233
|
| Femoral component rotation |
39,
95
|
| Femoral deformity |
186
|
| Femoral fractures |
285
|
| Femoral osteotomy |
273
|
| Femoroacetabular impingement |
101,
311
|
| Fenestration |
189
|
| Finite element analysis |
92,
184
|
| Fixed bearing |
143,
319
|
| Flat panel detector |
316
|
| Flexion contracture |
156
|
| Flexion gap |
255
|
| Floating platform mobile-bearing |
64
|
| Fluroscopy |
118,
285
|
| Fracture fixation |
37
|
| Fracture reduction |
93,
285
|
| Frontal knee alignment |
289
|
| Frozen shoulder |
313
|
| Full lower extremity alignement |
44
|
| Functional outcome |
124,
158,
197
|
| Gap balance |
29,
183,
330
|
| Gap change |
94
|
| Gap technique |
23
|
| Geometry |
172
|
| Giant cell tumor of bone |
212
|
| Glenoid fracture |
32
|
| GPU |
210
|
| Guides |
279
|
| Hardware |
20
|
| Heat |
185
|
| High flexion TKA |
143,
319
|
| High tibial osteotmy |
18,
59,
67,
118,
123,
281
|
| Hip |
101,
228,
307,
309,
311
|
| Hip resurfacing |
250,
262
|
| Hipsextant |
228,
307,
308,
309
|
| Hyperflexion |
128
|
| Iliosacral screw |
133,
316
|
| Ilizarov method |
17
|
| Image fusion |
96
|
| Image processing |
210
|
| Image-less |
59,
65,
71,
190,
237,
278,
281,
302,
317
|
| Implant |
148
|
| Individual bone restoration |
47
|
| Individual prosthesis |
47
|
| Influence of joint suture |
211
|
| Intraarticular hardware |
294
|
| Intramedullary alignment rod |
282
|
| Intraoperative imaging |
289
|
| Inverse dynamics analysis |
184
|
| In-vivo joint contact force |
184
|
| Iso-C fluoroscopy |
27
|
| Joint gap kinematics |
247
|
| Joint line |
88,
156
|
| Joint preservation |
201
|
| Kinematic alignment |
62
|
| Kinematics |
304
|
| Knee |
19,
20,
29,
247,
296,
300
|
| Knee flexion angle |
48
|
| Knee kinematics |
275
|
| Laxity |
49,
79,
269
|
| Leg length discrepancies |
288
|
| Ligament imbalance |
258
|
| Limb lengthening |
17
|
| Limb reconstruction |
295
|
| Limb salvage surgery |
201
|
| Local phase |
312
|
| MAKO |
155
|
| Malposition |
228
|
| Malrotation |
285
|
| Manual rasping |
147
|
| McKibben actuators |
93
|
| Measurement |
44,
48
|
| Mechanical aligment guide |
52
|
| Mechanical axis |
264,
289,
298
|
| Medial soft tissue release |
304
|
| Meta analysis |
131
|
| Metal plate |
92
|
| Metaphyseal engaging implants |
259,
260
|
| Microsoft KINECT |
24
|
| Midflexio |
128
|
| Minimally invasive |
145,
230
|
| MIS-PLIF |
27
|
| Mobile bearing |
143,
319
|
| Monitor |
189
|
| Motion |
189
|
| Motion capture |
223
|
| MRI |
39,
202,
298
|
| Multi radius |
269
|
| Musculoskeletal modeling |
30,
93
|
| NexGen |
167
|
| Non-invasive |
152
|
| Non-rigid registration |
30
|
| Non-united lateral condyle of humerus |
180
|
| Notching of anterior femoral cortex |
10
|
| O-arm |
220,
221
|
| Offset |
288
|
| Oncological result |
197
|
| Operation table |
221
|
| Osteoarthritis |
2
|
| Osteonecrosis |
181
|
| Osteosarcoma |
314
|
| Osteotomy |
181
|
| Outcomes |
148,
235
|
| Outlier |
95
|
| Parameter optimization |
312
|
| Partial wrist fusion |
279
|
| Passive/active operation |
182
|
| Patient dedicated instrumentation |
34
|
| Patient specific |
104,
217,
273,
295
|
| Patient specific instrument |
181,
232,
310
|
| Patient specific template |
256,
286
|
| Pediatric supra-condylar humerus fractures |
268
|
| Pelvic inclination |
112
|
| Pelvic tilt |
327,
329
|
| Percutaneous screw fixation |
32
|
| Peripheral stepping angiography |
44
|
| Personalized instrumentation |
262
|
| Pin hole |
224
|
| Pinless |
133,
236
|
| Pivot shift |
175
|
| Planning |
172,
222,
230,
252
|
| Popliteal tendon |
21
|
| Popliteofibular ligament |
21
|
| Post-navigation TKA |
265
|
| Postoperatively adjustable tibial plate |
258
|
| Post-traumatic arthritis |
20
|
| Precision |
218
|
| Predictability |
219
|
| Preoperative measurement |
120
|
| Preoperative planning |
266
|
| Preoperative simulation of TKA |
270
|
| Prospective randomized trial |
6
|
| Proximal humerus fracture |
294
|
| PSI |
213
|
| Racehorse trainer |
240
|
| Range of motion |
266
|
| Reconstruction |
222,
283
|
| Registration |
137,
173
|
| Replacement |
19
|
| Re-registration |
76
|
| Restoration of offset |
260
|
| Revision |
88
|
| Revision, THA |
192
|
| Revision, TKA |
50,
218
|
| Robodoc |
63,
183
|
| Robot |
17,
85,
145,
182,
182,
217,
222,
230,
238,
261,
284,
295,
300,
311,
314,
322,
333
|
| Robot, milling |
147
|
| Robot, rehabilitation |
313
|
| Robot, THA |
185,
189
|
| Robotic arm |
155
|
| Rotational alignment |
102,
233
|
| Rotational axis |
180
|
| Sacroiliac screw |
133,
316
|
| Sagittal alignment |
122,
124,
126
|
| Sagittal position |
255
|
| Scoliosis |
220
|
| Secure bone corridor |
37
|
| Sequential release |
304
|
| Short metaphyseal fitting stem |
147
|
| Shoulder arthroplasty |
69
|
| Simulation |
172
|
| Single-radius |
269
|
| SLAC-wrist |
279
|
| Smartphone |
48
|
| Soft tissue balance |
23,
66,
211
|
| Spatial normalization |
30
|
| Spine |
112
|
| Sports |
328
|
| Statistical shape modeling |
210,
266,
293,
296,
308
|
| Stem |
105,
154
|
| Stress |
92
|
| Stress fracture |
224
|
| Surgical expertise modeling |
266
|
| Surgical margin |
251
|
| Survival |
148
|
| Template |
219
|
| THA |
9,
33,
52,
65,
105,
137,
147,
154,
190,
208,
226,
237,
240,
245,
252,
254,
256,
278,
288,
308,
309,
317,
318,
327,
329,
333
|
| Tibial slope |
18
|
| TKA |
4,
4,
5,
6,
10,
20,
23,
39,
51,
63,
64,
66,
71,
76,
78,
79,
84,
88,
94,
98,
102,
104,
122,
124,
125,
126,
128,
131,
145,
148,
149,
152,
158,
164,
167,
169,
172,
176,
176,
178,
178,
183,
184,
186,
193,
193,
196,
203,
209,
211,
213,
230,
231,
232,
233,
236,
247,
252,
255,
258,
261,
264,
265,
269,
284,
297,
298,
304,
310,
330
|
| Tomofix |
118
|
| UKA |
19,
85,
155,
217,
217,
295,
322
|
| Validation |
256
|
| Varus |
18,
209
|
| Varus stress radiograph |
183
|
| Virtual planning |
50
|
| Weight bearing simulation |
281
|
| X-ray image stitching |
289
|
| X-ray radiograph |
296,
317
|