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The cubital tunnel: anatomical study of its distal part.

Different levels of ulnar nerve compression have been reported (the medial intermuscular septum, the posterior compartment of the arm, soft tissue or bony abnormalities of the cubital tunnel). In some rare cases, compression can lie in a 10-cm long tunnel, distal to Osborne's ligament, between the humeral head of the ulnar flexor muscle of wrist (FCU) and the medial epicondylar muscles. Only few publications mention this fact as a factor of residual or recurrent symptoms after common surgical procedures. However, a distal pathology of the cubital tunnel has proved to be the only factor of nerve entrapment in our clinical practice. Specific anatomical dissection of this area was carried out to find and classify the anatomical structures that may play a role in ulnar nerve distal compression. Twenty-four embalmed limbs from 13 cadavers were dissected. The purpose of this study was to find anatomical fibrous structures at an average of 10 cm from the medial epicondyle. Anatomical structures were classified into five types: no aponeurosis between the FCU and the medial epicondylar muscles (54.2% of cases), a fibrous band taut between the FCU and the fourth- and fifth-finger ulnar insertions of the flexor digitorum superficialis (FDS) (8.3%), a thin (20.8%) or thick (4.2%) partial aponeurosis between the FCU and the medial epicondylar muscles, and total aponeurosis (12.5%). Anatomical variations of the distal cubital tunnel were divided in five types, but their clinical significance remains unclear.

Cubital Tunnel Syndrome↗

Anatomical bases of superior gluteal nerve entrapment syndrome in the suprapiriformis foramen.

Observation of a 60 year-old-man with superior gluteal nerve (SGN) entrapment neuropathy in the suprapiriformis foramen encouraged us to explore, through anatomical dissection, the possible morphological etiologies of this condition. Ten SGNs in five embalmed cadavers were dissected via gluteal and pelvic access. The origin, course and distribution of the nervous trunk and its relations were studied. In most cases, the nerve fibers of the SGN arose from ventral branches of L4, L5 and S1 to constitute the nervous trunk in the pelvis, then reached the gluteal area and divided into two branches, cranial and caudal. By running through the suprapiriformis foramen with the cranial gluteal vascular pedicle, the nervous trunk was always up between the superior edge of the piriformis muscle and the greater sciatic notch; rarely some of the nerve fibers went through the muscle. Bone, muscular and vascular morphological factors liable to cause SGN entrapment syndrome, and the circumstances of discovery, were analyzed. The role of hypertrophy of the piriformis muscle, resulting in a narrow suprapiriformis foramen, was confirmed through surgery.

Aged↗

Three-dimensional imaging of the petrous bone for the middle fossa approach to the internal acoustic meatus: an experimental study.

The goal of this study was to highlight the feasibility of creating three-dimensional (3D) pictures of the petrous bone from a routine CT examination which can be used for a middle fossa approach to the internal acoustic meatus, in order to secure this operation. The surgical aim is to reach the roof of the internal acoustic meatus directly without injuring the adjacent functional structures of the petrous bone. Two heads of embalmed cadavers were scanned every millimeter with a slice thickness of 1 mm centered on the petrous bones. The horizontal reference was the Frankfurt line and the frontal and sagittal planes were perpendicular to this line. This method is similar to routine examinations for surgical patients. The pictures were first loaded on an optical disk, then into a computer (Silicon Graphics System). Amira software was used to create 3D pictures. The anatomy of the temporal bone could easily be identified, notably the surgical landmarks of the middle fossa approach. Three-dimensional computer-assisted imaging can reveal the anatomy of the petrous bone in a realistic view. The main anatomic structures for a middle fossa approach can be recognized easily. This realistic view may be very useful for surgeons, and 3D images deserve to be developed further.

Head↗

The superior epigastric artery does not pass through Larrey's space (trigonum sternocostale).

The passage of the superior epigastric artery (SEA), the terminal branch of the internal thoracic artery (ITA), through the inferior orifice of the thorax differs in different reports. According to some, it passes through Larrey's space (trigonum sternocostale), therefore through a diaphragmatic orifice, but according to others it passes in front of the diaphragm and the transverse abdominal muscle. The aim of this study was to determine the position of the SEA in its thoracoabdominal segment. We carried out a series of 14 dissections (10 on embalmed cadavers and 4 on unembalmed cadavers), and a study of images from the Visible Human Project. Dissections always led to the same conclusions. After having dissected the trigonum sternocostale, we observed that no vascular element was present in the space, which was obstructed downwards by the parietal peritoneum and limited forwards by the aponeurosis of the transverse abdominal muscle. Inferior digitations of transversus thoracis were joined with the transversus abdominis. The SEA passed in front of the plane formed by these two muscles while the sternal and costal parts of the diaphragm were behind this plane. Whatever the level of the section of the Visible Human Project, there was always a musculoaponeurotic plane between Larrey's space and the superior epigastric artery and both veins. Larrey's space, or trigonum sternocostale, was limited medially by the lateral border of the sternal part of the diaphragm, laterally by the medial border of the costal part of the diaphragm, and anteriorly by the musculoaponeurotic plane formed by the transversus thoracis above and the transversus abdominis, below without a clear boundary between those muscles. The SEA, the terminal branch of the ITA, passed in front of this musculoaponeurotic plane.

Diaphragm↗

Classical and nerve-sparing radical hysterectomy: an evaluation of the risk of injury to the autonomous pelvic nerves.

Radical hysterectomy represents the treatment of choice for FIGO stage IA2-IIA cervical cancer. It is associated with several serious complications such as urinary and anorectal dysfunction due to surgical trauma to the autonomous nervous system. In order to determine those surgical steps involving the risk of nerve injury during both classical and nerve-sparing radical hysterectomy, we investigated the relationships between pelvic fascial, vascular and nervous structures in a large series of embalmed and fresh female cadavers. We showed that the extent of potential denervation after classical radical hysterectomy is directly correlated with the radicality of the operation. The surgical steps that carry a high risk of nerve injury are the resection of the uterosacral and vesicouterine ligaments and of the paracervix. A nerve-sparing approach to radical hysterectomy for cervical cancer is feasible if specific resection limits, such as the deep uterine vein, are carefully identified and respected. However, a nerve-sparing surgical effort should be balanced with the oncological priorities of removal of disease and all its potential routes of local spread.

Aged↗

The influence of ankle positioning on the radiography of the distal tibial tubercles.

Three embalmed human lower legs, with the anterior and posterior tubercles of the distal tibia marked with needles, were radiographed in four positions of rotation to describe the projection and the configuration of the distal tibial tubercles and the tibiofibular syndesmosis, since the distal tibial tubercles are often described incorrectly in the literature. The anterior and posterior tubercles have distinct features that can be recognized in different positions of rotation. The anterior tubercle has an angular shape with its maximum dimension approximately 1 cm above the joint line. The posterior tubercle is a rounded structure in continuity with the posterior lip of the tibia, projecting caudally from the anterior tubercle superimposed on the talus. It was shown that the tibiofibular clear space (TFCS) and the tibiofibular overlap (TFO) differ considerably with rotation and that neither the TFCS nor the TFO depicts a constant syndesmotic interval. Both change considerably with varying rotational projections. To achieve uniformity it is recommended that the TFCS be measured as the distance between the medial border of the fibula and the floor of the incisura, and the TFO as the distance between medial border of the fibula and the anterior tubercle, both on the anteroposterior radiograph.

Ankle Joint↗

"Mesorectum": the surgical value of an anatomical approach.

The quality of total extirpation of the "mesorectum" nowadays determines the prognosis of rectal cancer but the planes of surgical dissection which have been proposed and the anatomical restrictions of this "mesorectum" are sometimes contradictory. The aim of this study was to clarify the relationships of the "mesorectum" with the fascias and nerves of the pelvic cavity to harmonize the plane of dissection in its total extirpation. Four pelvises (2 male, 2 female) harvested from embalmed cadavers were studied by dissection and anatomico-imaging correlation. Two pelvises (1 male, 1 female) were injected with copolymer via the internal iliac and inferior mesenteric arteries. They were then frozen and sectioned sagittally into two hemi-pelvises for the dissection. The two other pelvises were initially studied in 5 mm cuts with CT scanning and magnetic resonance scanning in the sagittal and "transverse oblique" planes. They were then frozen and then cut sagittally into two hemi-pelvises. Each hemi-pelvis was then cut into anatomical sections with an electric saw similar to the radiological cuts: sagittal cuts on the right hemi-pelvis, and "transverse oblique" cuts on the left hemi-pelvis. It was noted that the "mesorectum" was carpeted behind and laterally by a postero-lateral fibrous envelope belonging to the pelvic visceral fascia and in front by a recto-genital membrane of variable nature corresponding to the "Denonvilliers fascia". The postero-lateral fibrous envelope splits into two leaves (anterior and posterior) in front of the sacral concavity and constitutes, lateral to the rectum, the armature of the pelvic plexus. These two leaves delineated the avascular retro-rectal space. The results of the correlations were deceptive. Their use was limited by dilatation of the rectum, which flattened the perirectal fat onto the pelvic walls on all the sections. Nonetheless, the description of the "mesorectum" and the demonstration of its enveloping fascias by dissection allowed the development of a dissection plane for its total extirpation.

Aged↗

The middle collateral artery: anatomic basis for the "extreme" lateral arm flap.

The vascularization of the posterolateral area of the arm is supplied by the terminal branches of the deep brachial artery [middle collateral artery (MCA) and posterior radial collateral artery]. Their anatomy has been a field of confusion for a long time. An extended lateral arm flap, named the "extreme" lateral arm flap, supplied by these branches and dissected as a retrograde island flap has been proposed as an alternative for large compound defects of the distal forearm. We carried out an extensive anatomic study of the "extreme" lateral arm flap on 69 upper limbs: 54 fresh injected with colored latex, 10 embalmed and 5 radiographed after Micropaque injection. Two origin levels of the MCA were found: a proximal one (37%) above the radial groove, and a distal one (63%) at the level of the groove. The deep brachial artery always bifurcated after the origin of the MCA into a posterior radial collateral artery (PRCA) and anterior radial collateral artery (ARCA). Indeed in our dissections, after the origin of the MCA from the deep brachial artery, there was always a common trunk named the radial collateral artery (RCA) which bifurcated into the ARCA and PRCA. In all dissected arms we always found the MCA anastomosed in a transverse pattern with the inferior ulnar collateral artery (IUCA), contributing to the anastomotic circle of the elbow. This circle represents the unique vascularization source of the reverse "extreme" lateral arm flap.

Aged↗

Anatomical considerations regarding the "bare spot" of the glenoid cavity.

The "bare spot" of the glenoid cavity has recently been described as a constant reference point to quantify the amount of bone loss from the inferior portion of the glenoid cavity. In shoulder surgery this spot should help the surgeon to determine the width of the inferior portion of the glenoid cavity arthroscopically. The aim of this study was to determine the localization of the bare spot within the glenoid cavity and to prove its usefulness in shoulder surgery by means of a macroscopic study using embalmed glenohumeral joints ( n=20; 12 left, 8 right). Each glenoid cavity was photographed and transferred to a commercial AutoCAD software program. The bare spot was marked and the mean distances between the center of the bare spot and the inferior ( a), anterior ( b(1)) and posterior ( b(2)) inner margins of the glenoid labrum as well as its relationship ( c) to the mid-point of a virtual circle formed by the inferior portion of the glenoid cavity were measured (mean values : a=9.70, b(1)=10.88, b(2)=13.71, c=3.2 mm). In most cases, the bare spot showed a significantly excentric position within the inferior part of the glenoid cavity ( p<0.05). Due to the great variability in the shape of the glenoid cavity, an inferior circle according to previous descriptions could only be observed in half the specimens. From the results of our study the bare spot seems to be an unreliable landmark for the determination of the center of the inferior portion of the glenoid cavity, although it has a constant appearance and is probably expressed as the result of cartilaginous distribution due to dynamic shoulder activity.

Humans↗

Does the motor branch of the long head of the triceps brachii arise from the radial nerve? An anatomic and electromyographic study.

Anatomy textbooks say that the motor branch of the long head of the triceps brachii (LHT) arises from the radial nerve. Some clinical observations of traumatic injuries of the axillary nerve with associated paralysis of the LHT have suggested that the motor branch of the LHT may arise from the axillary nerve. This anatomic study was performed, using both cadaver anatomical dissections and a surgical study, to determine the exact origin of the motor branch of the LHT. From the adult cadaver specimens (group I), 20 posterior cords were dissected from 10 subjects (eight embalmed, two fresh) using 3.5x magnification. The axillary nerve was followed from its onset to the posteromedial part of the surgical neck of the humerus and the radial nerve. We looked for the origin of the proximal branch of the LHT by a meticulous double anterior and posterior dissection. From the surgical group (group II), 15 posterior cords were dissected from 15 patients suffering from a C5-C6 injured paralysis, without paralysis of the LHT. During the surgical procedure, we looked for the origins of the motor branch of the LHT with a nerve stimulator. In group I, the motor branch of the LHT arose in 13 cases from the axillary nerve near its origin, in five cases from the terminal division of the posterior cord itself, and in two cases from the posterior cord 10 mm before its terminal division into the radial and axillary nerves. In no case did we find the motor branch of the LHT arising from the radial nerve. In eight cases, we found some accessory branches that arose near the principal branch. In group II, the motor branch of the LHT arose in 11 cases from the axillary nerve near its origin and in four cases from the terminal division of the posterior cord itself. The motor branch of the LHT never originated from the radial nerve. In four cases, we found some accessory branches that arose near the principal branch of the LHT. These results reveal that the motor branch of the LHT seems to originate most often from the axillary nerve. This contribution could be relevant for surgical treatment of traumatic nerve injuries.

Adult↗

A new method to approach exact hemoperitoneum volume in a splenic trauma model using ultrasonography.

In the trauma setting, the Focused Assessment for the Sonographic examination of the Trauma patient (FAST) accurately detects hemoperitoneum. Currently, only an approximate evaluation of the volume of free intraperitoneal fluid (FIPF) can be done by imaging modalities such as ultrasound (US). The aim of this study was to correlate the thickness of FIPF measured by US in different sites of the peritoneal cavity with the total volume of an experimental post-traumatic hemoperitoneum. An intra-abdominal collection with ongoing bleeding was simulated in eight cadavers with no previous abdominal surgery. Between 200 and 2000 ml of saline solution was instilled into the left hypochondrium of eight non-embalmed cadavers. During the instillation, FIPF thickness was measured every 200 ml by US in six different declivous sites of the peritoneal cavity. The volume of FIPF instilled could be mathematically correlated with fluid thickness in all the sites through the linear equation Y=aX+b, where Y is the volume of FIPF in milliliters, a is 33 (variability coefficient), X is the FIPF thickness in millimeters and b is 470 ml (minimum volume detectable by US). The best correlation between thickness and volume was obtained in the hepatorenal pouch (Morrison pouch). Evaluation of the impact of intraperitoneal hemorrhage on the hemodynamic state of spleen trauma patients is of paramount importance for the surgeon, who has to decide whether to perform a laparotomy for hemostasis or not, specially when intra- and extra-abdominal injuries conjointly exist. After clinical validation, this new method to calculate the exact volume of FIPF could be used in current clinical practice of abdominal trauma to assist in the decision-making regarding non-operative treatment of spleen trauma.

Aged↗

Anatomical consequences of "open-book" pelvic ring disruption: a cadaver experimental study.

UNLABELLED: "Open-book" pelvic fractures associate a diastasis and/or a fracture of the pubic rami with a posterior pelvic disruption of the sacro-iliac joint. These uni or bilateral lesions are potentially lethal mainly due to associated injuries and massive pelvic hemorrhage. The most frequently injured arteries are parietal branch of the commune, internal or external arteries because of their proximity to the bone, the sacro-iliac joint and the inferior ligaments of the pelvis. The pelvic bone dislocation and the increase of pelvic volume facilitate blood effusion. The aim of this study was to determine, on a cadaver fracture model, the direct anatomical consequences of "open-book" pelvic fracture on the ilio-lumbar pedicle and the pelvic cavity volume. MATERIALS AND METHODS: Bilateral open-book pelvic ring injuries were created in ten non-embalmed cadaver specimens by directly disrupting the pubic symphysis, the right and the left sacro-iliac joints. Pelvic volume was determined after total pelvic exenteration. Consequences of this fracture on vascular parietal network, nervous pelvic trunk and pelvic cavity volume were studied. RESULTS: The mean volume of the pelvic cavity after complete visceral exenteration was 872.5 cm(3) (extremes 580-756 cm(3)). The average increase of pelvic volume was 20.8% after 5 cm of pubic diastasis. In all cases, because of a transversal disposition of the ilio-lumbar pedicle with regard to the sacro-iliac joint, reproduction of the open-book fracture caused a venous dilaceration of the ilio-lumbar vein in 12 cases after 5 cm of pubic diastasis (12/20=60%). No arterial dilaceration was observed on the ilio-lumbar artery, but this artery was put in tension. CONCLUSION: Open-book fractures create an increase of pelvic volume that facilitates blood diffusion from parietal pelvic vascular network. Ilio-lumbar pedicle seems to be very vulnerable in this type of fracture because of its relations to the sacro-iliac joint and its transversal disposition with regard to this joint.

Aged↗

Cervical venous organization in the transverse foramen.

The most widely accepted description of venous anatomy in the transverse foramen involves the presence of one or two veins running along and parallel to the external side of the vertebral artery. For most surgeons, the vertebral artery is surrounded by a rete of veins which is continous with the wide sinusoids which surround the thecal sac (internal vertebral venous plexus). The goal of this study was to ascertain the exact structure of the venous system in the transverse canal by micro dissection and histology. Six spinal segments (C1 to C7) removed from cadavers embalmed using 5% diluted formalin or not and studied with or without injection of colored latex after bilateral catheterization of the internal jugular vein, vertebral vein, common carotid artery, and vertebral artery. An anatomical study was performed by optical microscopy. After fixation and decalcification, tissue specimens were stained using hematoxylin-eosin-safran (HES) and immunocytochemical markers including CD43, CD31, and desmine (specific for vascular endothelium). Findings showed that venous blood in the transverse canal flows through a space formed by the periosteum. There was no evidence of a vein inside the transverse canal. The periosteum spans the space between the transverse processes and gives off fibrous leaflets to the artery thus forming a compartmentalized space lined with vascular endothelium around the artery. The venous system in the transverse canal presents itself as a sinus similar to the intracranial sinus structure.

Adult↗

Anatomical evaluation and clinical importance of the tibiofibular syndesmosis ligaments.

The aim of this study was to describe the detailed anatomical arrangement of ligaments of the tibiofibular syndesmosis and to highlight the clinical aspects of fracture dislocations. This study was performed on 42 legs of adult human embalmed cadavers. Tibiofibular syndesmosis ligaments attachments and their mutual relationships were described and their dimensions were measured. The anterior tibiofibular ligament is usually composed of three parts. This ligament runs obliquely at laterodistaly direction making 35 degrees angle with horizontal plane and posteriorly 65 degrees angle with sagittal plane. The posterior tibiofibular ligament runs almost horizontally 20 degrees angle with horizontal plane. The mean thicknesses of tibial and fibular attachments are 6.38+/-1.91 mm and 9.67+/-1.74 mm, respectively. The inferior transverse ligament originates from just below the posterior tibiofibular ligament, which has variations on the shape and dimensions due to its attachment points. The average length is 36.60+/-9.51 mm. The network between the fibular notch and the distal fibula has been filled with the interosseous tibiofibular ligament whose fibers follow the laterodistal and anterior direction from the tibia to the fibula. It lies proximally 30-40 mm from the mortise. At the inferior view of the tibiofibular syndesmosis a pyramidal shaped cartilaginous facet was observed which was attached to the fibula. The length of this cartilage was variable. Some of synovial plicas from the ankle joints synovial membrane were observed at this view. We conclude that the results of this study may be useful to both orthopedic surgeons and radiologists for anatomic evaluation of the tibiofibular syndesmosis area.

Aged↗

Anatomic research on the perioral muscles, functional matrix of the maxillary and mandibular bones.

The aim of this research was to study, on the basis of anatomic specimen, the insertion of and the existing correlation between the orbicularis oris, the perioral and the buccinator muscles. Dissections were performed on 40 embalmed caucasian specimens. The skin and the subcutaneous stratum were removed from the perioral zone starting from the base of the nose and the zygomatic arch down to the hyoid bone. The orbicularis oris and the facial muscles were isolated in the successive planes. In the more superficial layer, the following muscles were displayed: the orbicularis oris around the oral opening, the mentalis in the lower part, the transversus menti, the depressor anguli oris and the depressor labii inferioris, the risorius, and the zygomaticus major and minor positioned on the area of the labial commissure. The buccinator muscle was situated under this superficial stratum. In 85% of the specimens we found a fourth inferior band of the buccinator muscle that runs continuously from one side to the other of the mandible. This bundle always ran cranially to the foramen mentale. The findings have been compared with magnetic resonance images obtained from ten patients. One of the main findings was that the majority of these muscles were so densely interrelated that they could be considered parts of two functional units. A deep unit is composed of the buccinator muscle and the inner ring of the orbicularis oris and a superficial unit is built up by the depressor anguli oris, the zygomaticus, the risorius and the outer ring of the orbicularis oris. MR imaging confirmed these findings.

Cadaver↗

The arterial supply of the temporalis muscle.

Owing to the diverse applications of the temporalis muscle in reconstructive surgery, the study of its arterial supply is becoming an issue of great importance nowadays. The material of the present study consisted of 44 specimens, four obtained from two stillbirths and 40 dissected from 20 embalmed cadavers after injecting the external carotid artery with lead oxide solution. Direct branches from the second part of the maxillary artery and the middle temporal artery proved to be constantly furnishing the muscle from its superficial and deep surfaces. The muscular branch of the middle temporal artery supplied the middle and posterior thirds of the superficial surface and the posterior third of the medial surface of the muscle. The superficial temporal artery participated in supplying the muscle from its lateral surface, while the anterior and posterior deep temporal arteries lay deep to the anterior and the middle thirds of the muscle, respectively. The temporal branches of the middle meningeal artery anastomosed with the deep temporal arteries, thereby contributing to the supply of the temporalis muscle. An arterial pedicle arising from the third part of the maxillary artery constituted an additional supply in 9.1% of the specimens, providing an additional arterial pedicle for temporalis-muscle-flap elevation.

Adult↗

Anatomy of lateral ankle ligaments and their relationship to bony landmarks.

This study was designed to determine and describe precise anatomy of the lateral ankle ligaments and their relationship to adjacent osseous structures. This study was performed on 42 legs of 22 adult human embalmed cadavers. The lateral ankle ligaments were carefully dissected using a 2.5x surgical loupe. Mean values for the length, width and angle of the individual lateral ankle ligaments were measured. The precise location of insertion points and course of each ligament was observed and noted with ankle placed in neutral position. The anterior talofibular and calcaneofibular ligaments were coated with radio-opaque material. Radiographs were then taken in the anteroposterior, mortise and lateral projections. The anterior talofibular ligament (ATFL) was a flat, quadrilateral ligament and it made mean angle of 25 degrees (range 5 degrees -45 degrees ) with horizontal plane, and a mean angle of 47 degrees (range 45 degrees -56 degrees ) with sagittal plane. The posterior talofibular ligament was oriented in a nearly horizontal plane. Calcaneofibular ligament (CFL) was a flat oval ligament. It made a mean angle of 40 degrees (range 30 degrees -58 degrees ) with horizontal plane, and mean angle of 51 degrees (range 32 degrees -60 degrees ) with sagittal plane. The angle between CFL and ATFL was approximately 132 degrees (range 118 degrees -145 degrees ). These data provides important information for diagnosing injury and reconstructing lateral ankle ligaments.

Aged↗

Anatomical basis of arthroscopic capsulotomy for elbow stiffness.

Stiffness is a frequent condition in elbow pathologies, both traumatic and non-traumatic, and usually requires an operative treatment including an anterior capsulotomy. Elbow arthroscopy is certainly an alternative to surgery, but the technique of arthroscopic capsulotomy remains controversial. Our aim was to study the anterior elbow capsule anatomy to recommend an efficient and safe arthroscopic capsulotomy. We dissected ten cadaveric elbows and analyzed the insertions of the anterior capsule, their variations and the relationships with the surrounding neurovascular structures (radial and median nerve, brachial artery). The influence of elbow flexion was studied on fresh elbows with radioscopic evaluation. The distances between the anterior capsule and the neurovascular structures were measured at four reference levels. The insertions of the anterior capsule were also studied on the embalmed elbows. The radial nerve is always the closest structure to the capsule, but in this study it was always protected by the brachialis muscle. The distance between the anterior capsule and the neurovascular structures is consistently higher on the proximal side, regardless of which structure is considered. The 90 degrees flexion position allows the best capsular distension and offers optimal security with regard to neurovascular structures. All arthroscopic surgeons are concerned about potential neurovascular complications (varying from 0 to 14% in the literature). Previous anatomical studies examined the relationships between the arthroscopic portals and the neurovascular structures. This study developed a precise description of the relationship between the anterior capsule and the surrounding neurovascular structures, which let us recommend technical parameters to conduct a safe arthroscopic capsulotomy.

Arthroscopy↗