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Biomedical subjects

D Pennig

Publications and source records attributed to D Pennig.

At least 37 records · Page 2Linked to original sources

[Minimally invasive management of metacarpal I fractures with a mini-fixateur].

Displaced perarticular fractures of the first metacarpal are mainly treated operatively due to the importance of the first ray for hand function. Open reduction and internal fixation as well as minimal-invasive techniques using minifixator systems may be employed. We use a minifixator, which allows pin-positioning even in small perarticular fragments eliminating the necessity of bridging joints. The anatomical basis, operative technique, and data of seven patients treated according to this method and results are presented. Range of motion according to the neutral-zero-method, tendon gliding, five-second-holding power, and force grip were equal compared to the uninjured contralateral side. The use of a minifixator to stabilize perarticular fractures of the first metacarpal includes the advantages of a minimal invasive procedure, respects the advantages of conservative fracture treatment, and permits secure fracture fixation after reduction.

Adult↗

[Radio-radial external fixation for correction of malunited distal radius fracture].

For correction of malunited distal radius fractures, the use of the external fixator in radio-radial application was assessed. The device has been used for one-stage correction with corticocancellous bone blocks as well as with hemicallotasis for correction of dorsal angulation. The technical application is described and the use of the external fixator defined. Fourteen patients were treated with radio-radial application, seven of those were corrected with callus distraction. The mechanical possibilities of the fixator allowed complete correction of the malunion.

Adolescent↗

[External stabilization of the metacarpal bones II to V. Anatomic-clinical study].

The four ulnar metacarpal bones are connected to each other at their proximal and distal ends by strong ligaments. The second and fifth metacarpal bones are the frame of the metacarpus. Surgically, this is of great importance. A fracture of these two bones often requires stabilization, whereas a fracture of the third and fourth metacarpal bones with intact ligaments seldom requires surgery except in cases of severe fragment dislocation. Using external fixation for these purposes it seems to be of utmost interest to define secure pintracks through the soft tissue. In an anatomical study using formalin fixed specimen it clearly could be demonstrated that the second and fifth metacarpal bones are best suited for external fixation. The second metacarpal bone should always be fixed from the radial side because the fixator pins can be inserted within a wide range of angles without the risk of violating the extensor tendons. Variations of tendons and ligaments are seldom located on the radial side of the second metacarpal bone and therefore, finger movement is unhindered after pin application. A similar consideration is true for the fifth metacarpal bone which should be fixed from the ulnar side. With respect to the extensor tendon which covers the entire dorsal surface of the fifth metacarpal bone, the angle of the pins should be 40 to 90 degrees from the dorsal side. For the third metacarpal bone, fixation from the radial side is preferable taking topographical and biomechanical considerations into account. The radial corridor to the fourth metacarpal bone is smaller than the ulnar corridor, but there is much less morphological variability of the extensor tendons than on the ulnar side where strong fibres often cross the fourth intermetacarpal space. Because in the proximal fourth of the metacarpal bones the tendons are located very close to each other, a small skin incision and preparation to the bone surface is advisable to exclude violation of the tendons when inserting fixator screws into the third and fourth metacarpal bones. Using formalin-alcohol fixed cadaver specimens for the research gives an idea of the anatomical situation in the dorsal metacarpus but cannot answer the question whether the tendons in the lax subcutaneous tissue of the living will automatically slip aside when the fixator pin approaches. This should be item to subsequent studies in fresh frozen specimens and follow-up studies in a larger amount of patients treated with external fixation.

External Fixators↗

[Changes in the form of the interosseous hood during extension and flexion of the metacarpophalangeal joint].

Finger flexion initiated at the distal and proximal interphalangeal joint level forces the extensor tendon to move distally. Therefore, the interosseous hood fixed to the extensor apparatus moves distally, too. The proximal part of the hood which is located at the level of the metacarpal head during extension of the finger slides distally along the basis of the proximal phalanx. Due to the much smaller cross-section of the phalanx compared to the metacarpal head, the palmar border of the interosseous hood is shifted palmarly. This produces a two-fold effect concerning the metacarpophalangeal joint. First, it leads to an increasing flexion moment of the intrinsic muscles during flexion of the metacarpophalangeal joint. Second, the same mechanism improves the ability of abduction and adduction in the metacarpophalangeal joint during extension of the finger. In this position, the proximal part of the interosseous hood covers the metacarpal head and the strong palmar bundles of the hood are pushed to the ulnar and radial sides resulting in a greater distance to the abduction/adduction axis of the MP-joint. The other effect concerns the proximal interphalangeal joint. The described transformation of the interosseous hood during flexion especially of its proximal part causes a curved deformation of the strong palmar border of the interosseous hood. The power of the intrinsic muscles inserting at the interosseous hood is passed along this smooth curve on its way to the dorsal side of the proximal interphalangeal joint thus allowing a continuous extension of the proximal interphalangeal joint in all flexion phases of the MP-joint. The typical transformation of the interosseous hood is regulated by the form of the underlying bone and ligament apparatus and can be understood as a passive mechanism effecting in a senseful change of muscle function as the active element during finger flexion and extension. These not yet described morphological data concerning the transformation of the interosseous hood during finger flexion and the functional interpretation complete the former described mechanism of flexion by Landsmeer (1955) and Landsmeer and Long (1965).

Biomechanical Phenomena↗

[Effect of implants in the metacarpal head and proximal phalanx on mobility of the metacarpophalangeal joint. An anatomic study].

Percutaneous application of Kirschner wires, fixator pins, or other implants near the metacarpophalangeal joint may lead to postoperative disability of movement with subsequent joint stiffness. To determine the best location for the application of implants into the metacarpal head and the basis of the proximal phalanx, 57 Kirschner wires were introduced into the metacarpal head and into the bases of the proximal phalanx and the resulting stiffness has been measured. Kirschner wires inserted at the level of the dorsal tubercle or proximal to the tubercle, do not lead to a noteworthy stiffness. Whenever possible, this tubercle should be taken as the distal border for inserting implants. If the position of the fracture line makes it necessary to implant wires into the metacarpal head itself, a more dorsal application is preferable. If a palmar placement cannot be avoided, the implantation should be done in neutral position of the metacarpophalangeal joint, because a transfixation of the tense collateral ligament in flexion leads to a maximum of postoperative stiffness. The application of wires into the basis of the proximal phalanx does not influence the range of movement of the metacarpophalangeal joint.

Biomechanical Phenomena↗

External fixation of the wrist.

External fixation for fractures of the distal radius has been used for almost 80 years. The main objective is to gain reduction and maintain the reduction throughout the treatment period. Several fixator concepts are available and selection is based on the complexity of the case to be treated as well as the surgeon's experience. Periarticular application of the fixator with immediate use of the wrist joint is recommended whenever possible. In intra-articular fractures transarticular application is advisable. External fixation in complex fractures has to be supplemented by bone grafting, fixation wires and stabilization of the radioulnar joint. Associated injuries in distal radius fractures need to be identified and treated. The possible complications of external fixation are discussed and means to prevent them are referred to. External fixation of the distal radius has found its place as an established method in treating certain types of this common fracture.

Colles' Fracture↗

[External fixation for support in soft tissue reconstruction in hand surgery].

A mini fixator system was used to assist the operative correction of soft-tissue flexion contractures. The external fixator served as a tool for gradual correction and to secure joint position after soft-tissue release. Following wound healing, certain fixator components were unlocked and joint mobilisation initiated. Correction involved a contraction of the first web-space as well as flexion contractures of the index, middle, ring, and small fingers. The fixators were removed after four to six weeks. Complications related to the fixator equipment were not observed. The spread from thumb to index finger tip was increased from 3.5 to 16.5 cm. The functional result in sustained grip strength reached a value of 82% compared to the uninjured opposite side.

Adult↗

[Use of a fixation pin for fragment stabilization in hand surgery].

To simplify fixation after reattachment of small bony fragments in hand surgery, a system of fixation pins was developed. Fixation pins consist of a threaded portion of variable length and a cutting tip. The shaft diameter is greater than the thread diameter. This helps to avoid redislocation of small bony fragments. The fixation pins can be used in an open or closed technique. Clinical application includes the reattachment of avulsed fragments, intraarticular fractures of the phalanges and distal radius. The clinical results indicate that the fixation pins may be added to the armamentarium used in hand surgery for reattachment of small bony fragments and intraarticular fractures.

Bone Screws↗

Traumatic dislocation of the hip in young children.

Traumatic dislocation of the hip joint is an uncommon injury in children. The present report on this traumatic emergency is based on the authors' own observations of three cases and a review of the literature. The main problem is the possible development of avascular necrosis of the femoral head. The crucial therapeutic intervention to avoid this serious complication seems to be immediate, usually closed, reduction under general anaesthesia. A management protocol is presented.

Accidental Falls↗

[Injury of the pelvic ring and abdominal trauma].

Fractures and disruptions of the pelvic ring are usually found in multiply injured patients and exacerbate the life-threatening character of the concomitant injuries. The main prognostic factors are haemorrhagic complications, abdominal trauma and associated injuries of the urogenital tract. All patients admitted to the Department of Surgery of the University of Münster between July 1985 to December 1989 were analysed with particular reference to pelvic ring instability and the accompanying pelvic and abdominal lesions. Of 27 patients with unstable displaced lesions of the pelvic ring, 9 were female (33.3%) and 18 male (66.7%); the average age was 35.1 years. Multiple trauma was present in 25 patients (92.6%). Associated pelvic or abdominal injuries were found in 15 cases (55.6%) [multiple entries]. In 9 patients (33.3%) there were lesions of the urogenital tract. Injuries to pelvic blood vessels were diagnosed in 3 patients (11.1%). In 2 patients (7.4%) there were lesions of the perineum. A ruptured spleen was found in 4 patients (14.8%), lesions of the liver in 3 patients (11.1%), lacerations of the mesentery in 2 patients (7.4%). Bleeding into the mesentery, lacerations of serosa of the sigmoid colon and contusion of the pancreas were each seen in 1 case (3.7%). In 12 patients (44.4%) laparotomy was performed: The mortality in this series was 22.2% (6 patients). The authors propose a procedure for immediate diagnosis of these associated pelvic and abdominal injuries. The key factor for a favourable outcome is the differentiation between intraabdominal and retroperitoneal bleeding. A treatment algorithm is described. The value of laparotomy, interventional radiology and primary anterior stabilization of the pelvic ring with an external frame is discussed.

Abdominal Injuries↗

[Heterotopic ossifications from the trauma surgery viewpoint].

A heterotopic ossification is a non-neoplastic bone formation located in the soft tissues (so-called myositis ossificans). Important aspects of this condition, which is not uncommon after trauma or surgical procedures, are discussed from the trauma surgeon's viewpoint. The results of treatment of heterotopic ossifications are frequently unsatisfactory. Therefore, the importance of preventive measures is emphasized.

Fracture Fixation, Internal↗

A target device for placement of implants in the thoracolumbar pedicles.

Posterior spinal instrumentation with the placement of intrapedicular implants has become an important technique. We have designed a hand-held target device to facilitate the open or percutaneous location and penetration of the thoracolumbar pedicles. A cylindrical pin guide incorporates two metal rings and can be moved under image intensifier control until the rings are superimposed to show correct alignment. The radiation dosage for the surgeon is minimal; the device allowed accurate placement of 106 consecutive pedicle screws.

Equipment Design↗