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Biomedical subjects

J S Gaul

Publications and source records attributed to J S Gaul.

17 recordsLinked to original sources

Articular fractures of the proximal interphalangeal joint with missing elements: repair with partial toe joint osteochondral autografts.

Five cases of traumatic destruction of a condyle of the proximal interphalangeal joint repaired with a free autogenous graft of a corresponding toe condyle are presented. Precise fitting is essential: 1 patient required a second graft when the initial undersized graft was absorbed. Four of the 5 cases regained laterally stable bicondylar joints and functional fingers. Range of motion varied inversely to the magnitude of the injury and the surgery. Active range of motion at the proximal interphalangeal joint was 80 degrees in 2 digits, 45 degrees in 1, and 10 degrees in 1 complex case; 1 case was considered a failure.

Adolescent↗

Fracture-dislocation of the middle phalanx at the proximal interphalangeal joint: repair with a simple intradigital traction-fixation device.

Fracture-dislocation of the middle phalanx at the proximal interphalangeal joint is a difficult problem. Open reduction and internal fixation, the panacea for so many unstable fractures, has not been the solution to this injury. During the past three decades, a number of papers have combined old methods with newer concepts, including intradigital traction, "ligamentotaxis," and the beneficial effects of early motion on articular cartilage remodeling. This report describes a simple device, using these new concepts and constructed with available materials, which can be placed on the finger in the office or emergency department, thus avoiding open surgery. Results are compared with other intradigital techniques for treatment of this injury.

Adult↗

Microvascular replantation in a seven-month-old girl: a case report.

Replantation of an amputated digit in a child demands special techniques for success. Our experiences with replantation in this age group have shown that although these patients have a lower viability rate after digital replantation, those digits that do survive develop excellent function. In this case report of a 7-month-old with an amputated thumb, the indications, techniques, and prognosis of replantation in children are discussed.

Female↗

A palmar-hinged flap for reconstruction of traumatic thumb defects.

Destructive terminal palmar wounds of the thumb should be reconstructed if possible with like tissue; palmar glabrous skin served by the thumb's own median nerve branches. Such tissue is usually available, and no free flap or adjacent flap can serve as well. Seventeen thumbs of seventeen patients have been repaired with this method. The average follow-up was over 3 years. Sixteen of the 17 thumbs regained excellent sensibility and excellent pinch power based on current standard methods of evaluation; all patients returned to the same or similar occupations they had performed before the injury.

Adolescent↗

Electrical fascicle identification as an adjunct to nerve repair.

In view of the tragic consequences of median nerve and/or ulnar nerve paralysis and the biologic problems inherent in nerve healing, it seems logical that the surgeon should make a serious effort to control those problems that lie within his or her power: to identify and align those principal sensory and motor pathways in the severed nerve ends. I find that this is feasible. For over 15 years, I have used the electrical fascicle identification method, repairing 49 major upper extremity nerves. (A single radial nerve case was lost to follow-up.) As with any new technique, problems have been identified: incomplete information and confusing information, both of which require careful interpretation and some knowledge of internal nerve topography. Other problems have included the occasional patient who awakens on the operating table, confused and apprehensive, requiring some patience by surgeon and anesthetist. Perhaps this latter group should be done under Bier block intravenous anesthesia, if they can be identified beforehand. I believe that the electrical fascicle identification technique is sufficiently useful that I do not like to repair a major nerve without it. When distal stump motor identification is not feasible because of time delay or other reason, then anatomic dissection is used to locate the motor fascicle (and also digital nerve sensory fascicles, if necessary). My results have been significantly better than in the era of standard epineurial nerve repair. The median nerve is not only the most important nerve in the upper extremity, but also the most elusive in which to restore intrinsic motor recovery. Yet, today, I am able to restore opponens-abductor motor function in more than 90 per cent of median nerve lacerations repaired using electrical fascicle identification. Ulnar nerve loss, with its profound motor weakness, is almost as devastating. The modest number of ulnar nerves repaired by electrical fascicle identification in this present study (20 cases) suggests that low-level injuries recover more rapidly (1 to 2 years) than did the standard epineurial sutures and also that two relatively high-level injuries near the elbow have shown surprisingly good intrinsic motor recovery--something that epineurial suture did not accomplish.

Adolescent↗

Intrinsic motor recovery--a long-term study of ulnar nerve repair.

This retrospective study was made in the middle 1970s when 41 patients with ulnar nerve laceration were examined 1 to 6 years after repair by epineurial suture. The original nerve gaps ranged from 1 to 5 cm. Intrinsic motor recovery was measured by clinical muscle testing, and strength assessment by using the Jamar dynamometer and the Osco pinch gauge. Results were expressed as a percentage of normal power. Young patients with high lesions showed variable results, often fairly good. Adults with high lesions never recovered acceptable function. Young patients with low lesions showed excellent results by 2 years. Adults with low sutures usually showed no recovery for 2 years but, on recall examination, were found to have recovered very good intrinsic motor power 2 1/2 to 6 years after repair. There was no clear correlation between the end result and either the delay in repair (up to 6 months) or in the measured nerve gap (maximum 5 cm). The results from the use of different suture materials was not studied except to note no obvious complications resulting from the materials used.

Adolescent↗

The little finger superficialis--clinical investigation of its anatomic and functional shortcomings.

Based on clinical experience in the treatment of isolated injury to the little finger profundus tendon, we hypothesized that the little finger superficialis is functionally deficient in a significant portion of the population. Five hundred twenty-six normal hands were examined using the standard superficialis test and a subset of two hundred four normal hands were again examined using a modified superficialis test. We found that 33.8% of the little finger superficialis tendons in the normal population could not achieve normal range of flexion at the proximal interphalangeal joint (PIP) when submitted to the standard superficialis test. When the ring finger was allowed to flex along with the little finger, many of the previously deficient appearing fingers achieved near normal PIP joint flexion; however, 15.7% of the population still showed significant superficialis deficiency in the little finger. This portion of the population risks complete loss of flexion at both interphalangeal joints in the event of isolated profundus disruption in the little finger.

Adolescent↗

Management of acute hand injuries.

A systematic evaluation of the hand, looking for functional or structural damage to each of its six tissue components, is the first step in managing the acute hand problem. We review the diagnostic and therapeutic decisions that are necessary to start treatment, and especially to avoid the pitfalls and oversights that may lead to complications and continuing disability.

Amputation, Traumatic↗