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1

Hsu, Hui-Ching, Tzu-Yao Liao, Long-Sun Ro, Yu-Hsiang Juan, and Chuang-Chi Liaw. "Differences in Pain Intensity of Tumors Spread to the Anterior versus Anterolateral/Lateral Portions of the Vertebral Body Based on CT Scans." Pain Research and Management 2019 (May 13, 2019): 1–6. http://dx.doi.org/10.1155/2019/9387941.

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We investigated whether the intensity of cancer pain differs for malignant tumors that have spread to anterior or anterolateral/lateral portions of the vertebral body. We hypothesize that tumor spread to the anterolateral/lateral vertebral body elicits more serious pain due to increased irritation of the spinal nerve. The selection criteria were as follows: (1) advanced or metastatic solid tumor; (2) radicular pain without extremity weakness; (3) malignant lesions anteriorly, anterolaterally, or laterally located at the vertebral body either spread locoregionally or over a greater distance via
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2

Hitchon, Patrick W., James Torner, Kurt M. Eichholz, and Stephanie N. Beeler. "Comparison of anterolateral and posterior approaches in the management of thoracolumbar burst fractures." Journal of Neurosurgery: Spine 5, no. 2 (2006): 117–25. http://dx.doi.org/10.3171/spi.2006.5.2.117.

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Object The authors undertook a retrospective cohort study of patients with T11–L2 thoracolumbar burst fractures who underwent decompression and the placement of instrumentation via the anterolateral or posterior approach. Methods There were 63 thoracolumbar burst fractures in 45 male and 18 female patients. The instrumentation was placed posteriorly in 25 patients and anterolaterally in 38. The mean follow-up duration after discharge from the hospital was 1.8 years (range 6 months–8 years). The mean preoperative Frankel scores in the anterolateral and posterior groups were 3.7 ± 1.1 and 3.5 ±
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3

Force, Seth, and G. Alexander Patterson. "Anterolateral thoracotomy." Operative Techniques in Thoracic and Cardiovascular Surgery 8, no. 2 (2003): 104–9. http://dx.doi.org/10.1053/s1522-9042(03)00041-4.

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4

Force, Seth, and G. Alexander Patterson. "Anterolateral thoracotomy." Operative Techniques in Thoracic and Cardiovascular Surgery 8, no. 2 (2003): 104–9. http://dx.doi.org/10.1016/s1522-2942(03)70026-9.

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5

Musahl, Volker, Elmar Herbst, Jeremy M. Burnham, and Freddie H. Fu. "The Anterolateral Complex and Anterolateral Ligament of the Knee." Journal of the American Academy of Orthopaedic Surgeons 26, no. 8 (2018): 261–67. http://dx.doi.org/10.5435/jaaos-d-16-00758.

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6

Park, Jun-Gu, Seung-Beom Han, Chul-Soo Lee, Ok Hee Jeon, and Ki-Mo Jang. "Anatomy, Biomechanics, and Reconstruction of the Anterolateral Ligament of the Knee Joint." Medicina 58, no. 6 (2022): 786. http://dx.doi.org/10.3390/medicina58060786.

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Despite remarkable advances in the clinical outcomes after anterior cruciate ligament reconstructions (ACLRs), residual rotational instability of the knee joint remains a major concern. Since the anterolateral ligament (ALL) on the knee joint has been “rediscovered”, the role of anterolateral structures, including ALL and deep iliotibial band, as secondary stabilizers of anterolateral rotatory instability has gained interest. This interest has led to the resurgence of anterolateral procedures combined with ACLRs to restore rotational stability in patients with anterior cruciate ligament (ACL)
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7

Sabzevari, Soheil, Amir Ata Rahnemai-Azar, Marcio Albers, Monica Linde, Patrick Smolinski, and Freddie H. Fu. "Anatomic and Histological Investigation of the Anterolateral Capsular Complex in the Fetal Knee." American Journal of Sports Medicine 45, no. 6 (2017): 1383–87. http://dx.doi.org/10.1177/0363546517692534.

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Background: There is currently disagreement with regard to the presence of a distinct ligament in the anterolateral capsular complex of the knee and its role in the pivot-shift mechanism and rotatory laxity of the knee. Purpose: To investigate the anatomic and histological properties of the anterolateral capsular complex of the fetal knee to determine whether there exists a distinct ligamentous structure running from the lateral femoral epicondyle inserting into the anterolateral tibia. Study Design: Descriptive laboratory study. Methods: Twenty-one unpaired, fresh fetal lower limbs, gestation
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8

Herbst, Elmar, Marcio Albers, Jeremy M. Burnham, Freddie H. Fu, and Volker Musahl. "The Anterolateral Complex of the Knee." Orthopaedic Journal of Sports Medicine 5, no. 10 (2017): 232596711773080. http://dx.doi.org/10.1177/2325967117730805.

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Background: Significant controversy exists regarding the anterolateral structures of the knee. Purpose: To determine the layer-by-layer anatomic structure of the anterolateral complex of the knee. Study Design: Descriptive laboratory study. Methods: Twenty fresh-frozen cadaveric knees (age range, 38-56 years) underwent a layer-by-layer dissection to systematically expose and identify the various structures of the anterolateral complex. Quantitative measurements were performed, and each layer was documented with high-resolution digital imaging. Results: The anterolateral complex of the knee con
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9

SHIBAHARA, TAKAHIKO, HIROYASU NOMA, KENICHI HATADA, et al. "Anterolateral thigh flap." Bulletin of Tokyo Dental College 43, no. 3 (2002): 187–91. http://dx.doi.org/10.2209/tdcpublication.43.187.

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10

Srinivas, SahanaM, S. Sacchidanand, and Balaji Jagannathan. "Anterolateral leg alopecia." International Journal of Trichology 8, no. 1 (2016): 49. http://dx.doi.org/10.4103/0974-7753.179402.

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11

Emara, Tarek Abdelzaher, Mostafa Hasan Hassan, Abdelraoof Saeed Mohamad, Ahmad Mohamad Anany, and Ahmad Elsayed Ebrahem. "Anterolateral Advancement Pharyngoplasty." Otolaryngology–Head and Neck Surgery 155, no. 4 (2016): 702–7. http://dx.doi.org/10.1177/0194599816648127.

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12

Wood, Ryan, Jacquelyn Marsh, and Alan Getgood. "Anterolateral Complex Reconstruction." Techniques in Orthopaedics 33, no. 4 (2018): 239–45. http://dx.doi.org/10.1097/bto.0000000000000310.

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13

Getgood, Alan. "The Anterolateral Complex." Techniques in Orthopaedics 33, no. 4 (2018): 205. http://dx.doi.org/10.1097/bto.0000000000000343.

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14

Kennedy, Mitchell I., Steven Claes, Fernando Augusto Freitas Fuso, et al. "The Anterolateral Ligament." American Journal of Sports Medicine 43, no. 7 (2015): 1606–15. http://dx.doi.org/10.1177/0363546515578253.

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15

Amis, Andrew A. "Anterolateral knee biomechanics." Knee Surgery, Sports Traumatology, Arthroscopy 25, no. 4 (2017): 1015–23. http://dx.doi.org/10.1007/s00167-017-4494-x.

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16

Zordan, J., H. Rivarola Etcheto, C. Collazo Blanchod, et al. "Anterolateral Ligament Reconstruction." Orthopaedic Journal of Sports Medicine 5, no. 1_suppl (2017): 2325967117S0003. http://dx.doi.org/10.1177/2325967117s00039.

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Anterior cruciate ligament (ACL) reconstruction is a common procedure in daily practice with 75 to 97% excellent long-term results. But in certain cases, some patients perceive rotational instability, for this reason the revision rate can be 10 to 15%. Objectives: evaluate functional outcome in revisions of ACL reconstruction associated with ALL. Methods: Between July 2015 and February 2016 (11 knees) Eleven Revision ACL reconstruction were performed with ALL with double incision technique performed by the same surgical team. Inclusion criteria were: ACL reconstruction failures with a grade 2
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17

Cherubino, Mario, Martina Corno, and Luigi Valdatta. "Anterolateral Thigh Flap." Plastic and Reconstructive Surgery 139, no. 2 (2017): 575e—576e. http://dx.doi.org/10.1097/prs.0000000000002974.

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18

Dodds, A. L., C. Halewood, C. M. Gupte, A. Williams, and A. A. Amis. "The anterolateral ligament." Bone & Joint Journal 96-B, no. 3 (2014): 325–31. http://dx.doi.org/10.1302/0301-620x.96b3.33033.

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19

Itiravivong, Pibul. "Anterolateral Harrington instrumentation." Chulalongkorn Medical Journal 29, no. 1 (1985): 95–102. http://dx.doi.org/10.58837/chula.cmj.29.1.10.

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20

Robinson, Philip, Lawrence M. White, David C. Salonen, Timothy R. Daniels, and Darell Ogilvie-Harris. "Anterolateral Ankle Impingement: MR Arthrographic Assessment of the Anterolateral Recess." Radiology 221, no. 1 (2001): 186–90. http://dx.doi.org/10.1148/radiol.2211001666.

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21

Song, Yoonah, Jae-Hyuk Yang, Won Rak Choi, and Jin Kyu Lee. "Magnetic Resonance Imaging-Based Prevalence of Anterolateral Ligament Abnormalities and Associated Injuries in Knees with Acute Anterior Cruciate Ligament Injury." Journal of Knee Surgery 32, no. 09 (2018): 866–71. http://dx.doi.org/10.1055/s-0038-1669449.

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AbstractThe purpose of this study was to determine and compare the prevalence of anterolateral ligament abnormality and associated injuries among patients with complete and partial anterior cruciate ligament tears. In addition, the prevalence of associated injuries with anterolateral ligament abnormality was further analyzed. Of the 158 patients diagnosed with acute anterior cruciate ligament tear, 82 patients were diagnosed with acute complete anterior cruciate ligament confirmed by magnetic resonance imaging (MRI) and arthroscopic procedures (Group C), and 74 patients were diagnosed with acu
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22

Guenther, Daniel, Amir A. Rahnemai-Azar, Kevin M. Bell, et al. "The Anterolateral Capsule of the Knee Behaves Like a Sheet of Fibrous Tissue." American Journal of Sports Medicine 45, no. 4 (2016): 849–55. http://dx.doi.org/10.1177/0363546516674477.

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Background: The function of the anterolateral capsule of the knee has not been clearly defined. However, the contribution of this region of the capsule to knee stability in comparison with other anterolateral structures can be determined by the relative force that each structure carries during loading of the knee. Purpose/Hypothesis: The purpose of this study was to determine the forces in the anterolateral structures of the intact and anterior cruciate ligament (ACL)–deficient knee in response to an anterior tibial load and internal tibial torque. It was hypothesized that the anterolateral ca
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23

Fahim, Daniel K., Sang Don Kim, Dosang Cho, Sangkook Lee, and Daniel H. Kim. "Avoiding abdominal flank bulge after anterolateral approaches to the thoracolumbar spine: cadaveric study and electrophysiological investigation." Journal of Neurosurgery: Spine 15, no. 5 (2011): 532–40. http://dx.doi.org/10.3171/2011.7.spine10887.

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Object The thoracolumbar junction is frequently accessed through an anterolateral approach with the incision and muscle dissection extending from the lower thoracic region to the lateral border of the rectus abdominis muscle. This approach is frequently associated with the subsequent development of an unsightly and uncomfortable relaxation of the ipsilateral abdominal wall, or flank bulge, caused by denervation injury to the intercostal nerves. However, the etiology of this complication is not widely recognized by spine surgeons. The object of this study was to better define the relevant anato
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24

Ahn, Jin Hwan, Ji Hoon Bae, Yong Seuk Lee, Kuiwon Choi, Tae Soo Bae, and Joon Ho Wang. "An Anatomical and Biomechanical Comparison of Anteromedial and Anterolateral Approaches for Tibial Tunnel of Posterior Cruciate Ligament Reconstruction: Evaluation of the Widening Effect of the Anterolateral Approach." American Journal of Sports Medicine 37, no. 9 (2009): 1777–83. http://dx.doi.org/10.1177/0363546509332508.

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Background An anterolateral approach to the tibial tunnel of posterior cruciate ligament reconstruction is used to reduce the sharpness of the graft-tunnel angle, the so-called killer turn effect. However, with the anterolateral approach, the tunnel might be widened into an ovoid shape because of the small angle between the tunnel and the anterolateral cortex. Hypothesis The fixation strength of the posterior cruciate ligament graft in the tibial tunnel will be weaker in the anterolateral approach compared with the anteromedial approach. Study Design Controlled laboratory study. Methods Twenty
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25

Kurashige, Toshinori. "Accessory anterolateral talar facet impingement with tibialis spastic varus foot." SAGE Open Medical Case Reports 5 (January 1, 2017): 2050313X1774521. http://dx.doi.org/10.1177/2050313x17745210.

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In recent years, some authors have reported accessory anterolateral talar facet impingement with flatfoot including peroneal spastic flatfoot. Conversely, to our knowledge, no case report has been published about accessory anterolateral talar facet impingement with tibialis spastic varus foot. We report the first case in a 22-year-old man with intellectual disability, bilateral cleft hands and type 1 diabetes mellitus. Since spraining his left ankle over a year earlier, he experienced left sinus tarsi pain while standing and walking. Physical examination revealed that his left foot was in the
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26

Paraschiv, Radu, George Dinache, Mark E. Pogarasteanu, and Sorin Lazarescu. "Anatomical study of the anterolateral ligament in Romanian population." Romanian Journal of Military Medicine 124, no. 1 (2021): 89–92. http://dx.doi.org/10.55453/rjmm.2021.124.1.13.

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"Abstract: The purpose of this paper was to evaluate the existence of the anterolateral ligament of the knee in the Romanian population. Multiple studies have investigated the anterolateral structures of the knee, but there is some inconsistency regarding the existence of the anterolateral ligament. Materials and methods: A cadaver dissection study was performed on 10 knees (5 left and 5 right), 3 males and 2 females Results: The anterolateral ligament was observed in all 10 knees. The mean length was 32±6mm, the width was 5.1±2 mm, and the thickness at the articular line was 1.1±5 mm. Conclus
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27

Lepri, Andrea Cozzi, Marco Villano, Fabrizio Matassi, Christian Carulli, Massimo Innocenti, and Roberto Civinini. "“Anterolateral” approach to the hip: a systematic review of the correct definition of terms." HIP International 30, no. 2_suppl (2020): 13–19. http://dx.doi.org/10.1177/1120700020966800.

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Purpose: The Watson-Jones interval plane between tensor fascia lata (TFL) and the gluteus medius (GM) has come back into fashion in the past few years - Röttinger described the anterolateral minimal invasive approach (ALMI) for use in total hip replacement, in which the standard Watson-Jones interval was used, but with a completely intermuscular plane. However, the term anterolateral is often still utilised to describe intramuscular approaches in which the GM was violated, thus creating a potential misunderstanding in the literature. Accordingly, we have designed a study to answer the followin
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28

Giebel, Gregor M., Sufian S. Ahmad, Ulrich Stöckle, and Christian Konrads. "Anterolateral Extraarticular Stabilisation of the Knee: Modified Lemaire Procedure." Zeitschrift für Orthopädie und Unfallchirurgie 160, no. 02 (2022): 226–27. http://dx.doi.org/10.1055/a-1749-6615.

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SummaryThe anterolateral aspect of the knee is prone to laxity or symptomatic instability, if the anterior cruciate ligament (ACL) is torn. It is necessary to address this issue in patients with general joint hyperlaxity, overextension of the knee, massive anterolateral instability, or re-tear of the ACL with chronic instability. In these cases, and in addition to a preoperative bony workup and revision ACL reconstruction, anterolateral stabilisation should be considered to avoid persistent anterolateral rotation instability and failure of the ACL reconstruction.To stabilise the anterolateral
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29

Bin, Zhang, Luo Song, Wu Binghua, Qiu Ping, and Dai Min. "A New Anterolateral Approach for Type C Fractures of the Distal Femur." International Surgery 99, no. 6 (2014): 875–79. http://dx.doi.org/10.9738/intsurg-d-14-00062.1.

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Abstract To provide an anatomic basis for treating type C distal femoral fractures by a new anterolateral approach. Twenty surgical procedures were performed in 10 adult cadaveric specimens using a new anterolateral approach followed by dissection of all lower limbs. The main anterolateral muscles and ligaments were observed. Vessels and nerves related to the new anterolateral approach were also evaluated. Full exposure of the distal femur was achieved. The iliotibial band was protected, and damage to the quadriceps femoris was reduced. The distance between the common peroneal nerve and the ne
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30

Kostrub, Oleksandr, Viktor Kotiuk, Roman Luchko, Roman Blonsky, and Dmytro Smirnov. "Ultrasonography of the Anterolateral Ligament of the Knee Joint. The State of the Art and the Perspectives." Research Institute of Traumatology and Orthopedics 1, no. 56 (2021): 38–42. http://dx.doi.org/10.52889/1684-9280-2021-1-56-38-42.

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The anterolateral ligament of the knee is an important stabilizer of the knee in relation to internal rotation of the lower leg. Ultrasonographic examination of the anterolateral ligament of the knee joint is a simple and affordable method for its study, it allows to evaluate the femoral and tibial portions, has prospects for improving and improving the understanding of its function. The indication for its implementation is suspicion or confirmed damage to the anterior cruciate ligament. Ultrasonographic studies of the anterolateral ligament are not only important from the perspective of diagn
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31

Biolatto, Paula, Miguel Carabajal Mattar, Florencia Turazza, and Julio Javier Masquijo. "Incurvación anterolateral congénita de la tibia asociada con polidactilia. Reporte de un caso y revisión bibliográfica." Revista de la Asociación Argentina de Ortopedia y Traumatología 85, no. 4 (2020): 418–26. http://dx.doi.org/10.15417/issn.1852-7434.2020.85.4.1080.

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La incurvación anterolateral congénita de la tibia asociada con polidactilia (congenital anterolateral tibial bowing associated with polydactyly) es una deformidad extremadamente rara. Solo se han documentado 21 casos en la bibliografía inglesa. Aunque existe una estrecha relación entre la incurvación anterolateral de la tibia, la seudoartrosis congénita de la tibia y la neurofibromatosis tipo 1, la incurvación anterolateral congénita de la tibia asociada con polidactilia es una entidad específica con un pronóstico más favorable. Comunicamos otro caso y también revisamos los casos de este cuad
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32

Kwapisz, Adam, Scott Mollison, Jerzy Cholewiński, Peter MacDonald, Marek Synder, and Katarzyna Herman. "Lateral Extra-articular Tenodesis with Iliotibial Band Strip – a Solution for Anterolateral Instability?" Ortopedia Traumatologia Rehabilitacja 21, no. 6 (2019): 397–406. http://dx.doi.org/10.5604/01.3001.0013.7397.

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It is widely acknowledged that anterior cruciate ligament (ACL) injury is the cause of anterolateral insta­bility, but in some cases not only the ACL ruptures, but also anterolateral structures (ALS), including the antero­lateral ligament. Their insufficiency may be the cause of residual instability after ACL reconstruction, which significantly increases the risk of graft rupture. In the past, anterolateral instability caused by ACL injury was treat­ed with extra-articular reconstructions, including lateral extra-articular tenodesis. Nowadays those techni­ques are used simultaneously in cases
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33

Inderhaug, Eivind, Joanna M. Stephen, Andy Williams, and Andrew A. Amis. "Biomechanical Comparison of Anterolateral Procedures Combined With Anterior Cruciate Ligament Reconstruction." American Journal of Sports Medicine 45, no. 2 (2016): 347–54. http://dx.doi.org/10.1177/0363546516681555.

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Background: Anterolateral soft tissue structures of the knee have a role in controlling anterolateral rotational laxity, and they may be damaged at the time of anterior cruciate ligament (ACL) ruptures. Purpose: To compare the kinematic effects of anterolateral operative procedures in combination with intra-articular ACL reconstruction for combined ACL plus anterolateral–injured knees. Study Design: Controlled laboratory study. Methods: Twelve cadaveric knees were tested in a 6 degrees of freedom rig using an optical tracking system to record the kinematics through 0° to 90° of knee flexion wi
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34

Bettencourt Nunes, Luccas Franco, José Alexandre Mendonça, Glória Maria de Souza Tedrus, Carlos Augusto Mattos, Pedro Augusto Jaqueto, and David Hidaldo Aguilar. "Evaluation of the anterolateral ligament of the knee with high resolution ultrasound." MOJ Orthopedics & Rheumatology 15, no. 6 (2023): 199–202. http://dx.doi.org/10.15406/mojor.2023.15.00645.

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Objectives: To determine whether high-resolution ultrasound is an exam that contributes to the identification and assessment of the integrity of the anterolateral ligament of the knee in patients with anterior cruciate ligament injury. Methods: 41 patients, 16 to 55 years old, with primary lesion of the anterior cruciate ligament were evaluated. Demographic data were collected, and a Pivot Shift test was performed. An ultrasound examination was performed, with a high- resolution probe, on both patients' knees, initially, seeking the visualization of the anterolateral ligament in all its extens
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35

Diaz, Simon, Daniele Starnoni, Mahmoud Messerer, and Roy Thomas Daniel. "Thoracic Intramedullary (Anterolateral) Cavernoma." World Neurosurgery 138 (June 2020): 59–60. http://dx.doi.org/10.1016/j.wneu.2020.02.086.

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36

Serrat Serradell, R. "ECG: IAM anterolateral extenso." FMC - Formación Médica Continuada en Atención Primaria 9, no. 5 (2002): 351. http://dx.doi.org/10.1016/s1134-2072(02)75600-4.

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37

Lubowitz, James H., Matthew T. Provencher, Jefferson C. Brand, and Michael J. Rossi. "The Knee Anterolateral Ligament." Arthroscopy: The Journal of Arthroscopic & Related Surgery 30, no. 11 (2014): 1385–88. http://dx.doi.org/10.1016/j.arthro.2014.08.007.

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38

Kennedy, Mitchell Iung, Steven Claes, Fernando Fuso, et al. "The Anterolateral Ligament (ALL)." Orthopaedic Journal of Sports Medicine 3, no. 7_suppl2 (2015): 2325967115S0012. http://dx.doi.org/10.1177/2325967115s00126.

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39

Pribaz, Julian J., Dennis P. Orgill, Mark D. Epstein, Christian E. Sampson, and Charles A. Hergrueter. "Anterolateral Thigh Free Flap." Annals of Plastic Surgery 34, no. 6 (1995): 585–92. http://dx.doi.org/10.1097/00000637-199506000-00004.

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40

Lee, Jae-Hoon, and Il-Hoen Choi. "Anterolateral Thigh Island Flap." Journal of the Korean Fracture Society 21, no. 3 (2008): 207. http://dx.doi.org/10.12671/jkfs.2008.21.3.207.

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41

Chen, Hsin-Han, Meng-Shi Lin, Erh-Kang Chou, et al. "Anterolateral Thigh Perforator Flap." Annals of Plastic Surgery 63, no. 2 (2009): 153–55. http://dx.doi.org/10.1097/sap.0b013e3181893888.

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42

Friji, M. T., Manav P. Suri, Vinay Kant Shankhdhar, Quazi G. Ahmad, and Prabha S. Yadav. "Pedicled Anterolateral Thigh Flap." Annals of Plastic Surgery 64, no. 4 (2010): 458–61. http://dx.doi.org/10.1097/sap.0b013e3181b4bc70.

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43

Agostini, Tommaso, Davide Lazzeri, and Giuseppe Spinelli. "Anterolateral Thigh Flap Thinning." Annals of Plastic Surgery 72, no. 2 (2014): 246–52. http://dx.doi.org/10.1097/sap.0b013e31825b3d3a.

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44

Torii, Shuhei, Yasunori Namiki, and Yuji Hayashi. "Anterolateral leg island flap." British Journal of Plastic Surgery 40, no. 3 (1987): 236–40. http://dx.doi.org/10.1016/0007-1226(87)90116-0.

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45

Lueg, Edgar A. "The Anterolateral Thigh Flap." Archives of Otolaryngology–Head & Neck Surgery 130, no. 7 (2004): 813. http://dx.doi.org/10.1001/archotol.130.7.813.

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46

Acosta, Frank L., Jenni M. Buckley, Zheng Xu, Jeffrey C. Lotz, and Christopher P. Ames. "Biomechanical comparison of three fixation techniques for unstable thoracolumbar burst fractures." Journal of Neurosurgery: Spine 8, no. 4 (2008): 341–46. http://dx.doi.org/10.3171/spi/2008/8/4/341.

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Object Increased structural stability is considered sufficient justification for higher-risk surgical procedures, such as circumferential fixation after severe spinal destabilization. However, there is little biomechanical evidence to support such claims, particularly after traumatic lumbar burst fracture. The authors sought out to compare the biomechanical performance of the following 3 fixation strategies for spinal reconstruction after decompression for an unstable thoracolumbar burst fracture: 1) short-segment anterolateral fixation; 2) circumferential fixation; and 3) extended anterolater
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47

Paús, Vicente, Ariel Graieb, and Federico Torrengo. "Lemaire extraarticular plasty in anterolateral knee instability." Orthopaedic Journal of Sports Medicine 5, no. 1_suppl (2017): 2325967117S0000. http://dx.doi.org/10.1177/2325967117s00002.

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Anterolateral instability of the knee results from injury to the lateral capsular complex and the anterior cruciate ligament (ACL), and it should not be considered an isolated injury. Over the past years these structures have received renewed interest. The anterolateral ligament (ALL) recently described extends from the lateral side of the lateral femoral condyle to the antero-lateral edge of the tibia, and it is supposed to play a major role in anterolateral stability. ACL extra-articular tenodesis, initially developed as a single procedure, is now complementary to intra-articular plasty. Our
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Wang, Shun-Ping, Kun-Jhih Lin, Cheng-En Hsu, Chao-Ping Chen, Cheng-Min Shih, and Kang-Ping Lin. "Biomechanical Comparison of a Novel Implant and Commercial Fixation Devices for AO/OTA 43-C1 Type Distal Tibial Fracture." Applied Sciences 11, no. 10 (2021): 4395. http://dx.doi.org/10.3390/app11104395.

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This study compares the novel Asia Distal Lateral Tibial Locking Plate mechanical stability to that of the current anterolateral and medial tibial plates based on finite element analysis. Four-part fracture fragment model of the distal tibia was reconstructed using CAD software. A load was applied to simulate the swing phase of gait. The implant stress and the construct stiffness were compared. The results of the anterolateral plate and the medial plate were similar and the displacement values were determined lower than those in the medial plate. In the simulated distal tibia fracture, the Apl
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Mouraria, Guilherme Grisi, Américo Zoppi Filho, Fernando Kenji Kikuta, Lucas Moratelli, Márcio Alves Cruz, and Maurício Etchebehere. "ANTEROLATERAL APPROACHES FOR PROXIMAL HUMERAL OSTEOSYNTHESIS: A SYSTEMATIC REVIEW." Acta Ortopédica Brasileira 27, no. 3 (2019): 178–82. http://dx.doi.org/10.1590/1413-785220192703215572.

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ABSTRACT Objective: Anterolateral approaches for proximal humerus osteosynthesis have great advantages because they allow direct exposure of the lateral aspect of the humerus without the muscular retraction seen in the deltopectoral approach. However, much resistance is found among surgeons due to the potential risk of iatrogenic injury to the axillary nerve. To identify the incidence of axillary nerve iatrogenic lesions and evaluate the functional results of proximal humerus osteosynthesis with locking plates using anterolateral approaches. Methods: The literature review followed the PRISMA p
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Thon, Stephen G., Michael J. O’Brien, Lane Rush, Peter Gold, and Felix Henry Savoie III. "Proximal anterolateral portals in elbow arthroscopy are safer for use relative to the radial nerve: a systematic review." Journal of ISAKOS: Joint Disorders & Orthopaedic Sports Medicine 3, no. 6 (2018): 352–56. http://dx.doi.org/10.1136/jisakos-2018-000205.

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ImportanceProper portal placement is imperative for a successful outcome in elbow arthroscopy. Discrepancies in the location of the placement of the anterolateral portal, with variable safety margins in regard to the radial nerve, exist in the current cadaveric literature.ObjectiveTo systematically review and compare the placement of the anterolateral portal in elbow arthroscopy with regard to the radial nerve.Evidence reviewA systematic review was performed according to Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines utilising the PubMed, Embase, Medline and Coch
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