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Biomedical subjects

E Diao

Publications and source records attributed to E Diao.

At least 19 recordsLinked to original sources

Peripheral nerve lengthening by controlled isolated distraction: a new animal model.

We have developed a simple and effective animal model to study the distraction neurogenesis utilizing the sciatic nerve-lengthening technique in rats. The model allows macroscopic, physiological, and histological evaluation of the distraction site. Fourteen adult Harlan Sprague Dawley rats (300-350 g) were used in this study. A 10 mm segment of the right sciatic nerve of each animal in the nerve-lengthening group was resected. Gradual nerve lengthening was performed by advancing the proximal nerve stump at a rate of 1 mm/day. The proximal stump neuroma was then resected and a direct nerve anastomosis was performed. On the left side a standard autogenous nerve-grafting procedure was performed with a 10 mm segment of sciatic nerve used as an in situ nerve graft. Three months after the second surgery, the sciatic nerves were exposed and investigated by gross observation and EMG followed by histological processing and tissue analysis. Neomicrovascularization was observed surrounding the sciatic nerve anastomosis in all five specimens of the nerve-lengthening group as compared to the more white-colored scar tissue that was observed in the nerve-grafting group. The EMG results were similar for both groups. Histological studies of the lengthened nerves showed axon morphology equivalent to the grafted nerves. This study demonstrated a clear evidence of the successful nerve regeneration within a segmental nerve gap by nerve lengthening.

Animals↗

Trapezio-metacarpal arthritis. Trapezium excision and ligament reconstruction not including the LRTI arthroplasty.

For trapeziometacarpal arthritis, trapezium excision and ligament reconstruction that is distinct from the ligament reconstruction tendon interposition (LRTI) arthroplasty has a distinct role. Emphasis is placed on the use of the abductor pollicis longus for tendon interposition and "suspensionplasty" for the arthritic thumb carpal metacarpal joint. The advantages of the abductor pollicis longus techniques as originally advocated by Thompson, and modified by Diao, are reviewed. The surgical technique for this procedure, clinical results and biomechanical cadaver analysis comparing abductor pollicis longus suspensionplasty done with two techniques, as they compare to the LRTI procedure, are included. The abductor pollicis longus suspensionplasty is an excellent treatment choice both for index procedures for carpometacarpal (CMC) thumb arthritis, and for salvage of the failed thumb CMC arthroplasty.

Arthritis↗

Adhesions from flexor tendon surgery: an animal study comparing surgical techniques.

Intraoperative and postoperative hemorrhage has long been considered a cause of tendon adhesion and, thus, scarring and poor surgical results. To prevent such problems bipolar coagulators are commonly used during surgery to help achieve hemostasis. Surgical lasers also have been reported to help limit bleeding and scar formation. Very little is known regarding the relationship between hemorrhage and/or direct tendon tissue effects and tendon adhesions with the use of these modalities. We compared 3 different surgical techniques (meticulous sharp scalpel dissection, scalpel dissection plus bipolar coagulation, and CO(2) laser dissection) and used chicken flexor tendons to biomechanically and histologically assess the amount of adhesion formation after each procedure. Our findings show that bipolar coagulation and CO(2) laser application are both associated with significantly increased adhesion formation in tendon surgery compared with sharp dissection alone and that the meticulous, conventional sharp dissection technique is the best method to control adhesion formation. These conclusions have relevance to clinical tendon surgery.

Animals↗

Techniques for primary nerve repair.

This article reviews the anatomy of the peripheral nerve, the pathophysiology of nerve injury, and Wallerian degeneration. It reviews the factors for deciding on immediate or delayed primary nerve repair and discusses the concept of longitudinal excursion of peripheral nerves about joints and the techniques for achieving an appropriate tension-free repair. The techniques of primary nerve repair, epineurial repair, and group fascicular repair are reviewed along with techniques for matching fascicles intraoperatively.

Animals↗

In vivo finger flexor tendon force while tapping on a keyswitch.

Force may be a risk factor for musculoskeletal disorders of the upper extremity associated with typing and keying. However, the internal finger flexor tendon forces and their relationship to fingertip forces during rapid tapping on a keyswitch have not yet been measured in vivo. During the open carpal tunnel release surgery of five human subjects, a tendon-force transducer was inserted on the flexor digitorum superficialis of the long finger. During surgery, subjects tapped with the long finger on a computer keyswitch, instrumented with a keycap load cell. The average tendon maximum forces during a keystroke ranged from 8.3 to 16.6 N (mean = 12.9 N, SD = 3.3 N) for the subjects, four to seven times larger than the maximum forces observed at the fingertip. Tendon forces estimated from an isometric tendon-force model were only one to two times larger than tip force, significantly less than the observed tendon forces (p = 0.001). The force histories of the tendon during a keystroke were not proportional to fingertip force. First, the tendon-force histories did not contain the high-frequency fingertip force components observed as the tip impacts with the end of key travel. Instead, tendon tension during a keystroke continued to increase throughout the impact. Second, following the maximum keycap force, tendon tension during a keystroke decreased more slowly than fingertip force, remaining elevated approximately twice as long as the fingertip force. The prolonged elevation of tendon forces may be the result of residual eccentric muscle contraction or passive muscle forces, or both, which are additive to increasing extensor activity during the release phase of the keystroke.

Adult↗

Comparative results of resection of the distal ulna in rheumatoid arthritis and post-traumatic conditions.

The purpose of this study was to determine whether the results of resection of the distal ulna differed depending upon the underlying aetiology of the condition. Patients with rheumatoid arthritis were compared with patients with post-traumatic wrist complaints. Fifty resections in 40 patients (eight male, 32 female) were assessed with respect to pain, range of motion, and grip strength. Of the 23 rheumatoid wrists, 86% were pain-free following surgery; however, only 36% of the patients in the trauma group reported pain relief postoperatively. Pain relief in post-traumatic patients was more predictable when distal radioulnar joint arthrosis was identified as the sole cause of wrist pain.

Adolescent↗

Analytic model to predict the strength of tendon repairs.

We developed an analytic model to predict suture load-sharing immediately after flexor tendon repair in the hand. Tendon repair was mathematically modeled as two nonlinear springs in parallel, representing separate core and peripheral sutures that were in series with a third nonlinear spring representing the tendon. To serve as a basis for, and validation of, our analytic model, fresh human flexor digitorum profundus tendons were harvested and mechanically tested either intact or after surgical repair in a variety of ways: core suture alone, superficial peripheral suture alone, deep peripheral suture alone, core suture plus superficial peripheral suture, and core suture plus deep peripheral suture. The stiffness and strength of the composite repairs predicted with use of the analytic model were comparable with those determined experimentally. Furthermore, the model predicted inequities in suture load-sharing, with 64% of the applied load carried by the peripheral suture when it was placed superficially, as compared with 77% when the peripheral suture was placed deep. Our results demonstrate a disparity in load-sharing within composite suture systems, the rectification of which may lead to significant improvement in the repair strength. To this end, we expect that our analytic model will serve as a basis for the design of more efficient, and consequently stronger, suture techniques.

Aged↗

Distal radius fractures: mechanisms of injury and strength prediction by bone mineral assessment.

The strength of the radius depends on the mechanical properties of cancellous and cortical bone. By assessing both compartments quantitatively with bone densitometry, we tried to identify the specificity of each in predicting the load at which the distal radius will fracture. Twenty human cadaver forearms were scanned for bone mineral and geometric properties with quantitative computed tomography and dual x-ray absorptiometry. In both a neutral loading situation and one in which the wrist was extended 45 degrees, the load distribution was determined with pressure-sensitive films, and a fracture simulating a fall on the hand was produced with a material testing machine. Fractures that occur with the wrist in extension were produced by a central impact of the scaphoid onto the radiocarpal joint, and those that occur under neutral loading conditions were produced by a more commonly distributed loading pattern. The load at fracture was most specifically predicted (r2=0.74) by bone mineral and geometric measures of the cortex at the shaft of the radius. Bone mineral density measures of trabecular (r2=0.64) and total (r2=0.66) bone were less successful in predicting the fracture load. After adjustment for bone size, the geometric and density measures revealed similar specificity. Cortical bone, therefore, contributes significantly to the strength of the distal radius and may play an important role in the prediction of osteoporotic wrist fractures.

Absorptiometry, Photon↗

Tensions of the flexor digitorum superficialis are higher than a current model predicts.

Existing isometric force models can be used to predict tension in the finger flexor tendon, however, they assume a specific distribution of forces across the tendons of the fingers. These assumptions have not been validated or explored by experimental methods. To determine if the force distributions repeatably follow one pattern the in vivo tension of the flexor digitorum superficialis (FDS) tendon of the long finger was measured in nine patients undergoing open carpal tunnel release surgery. Following the release, a tendon force transducer (Dennerlein et al. 1997 J. Biomechanics 30(4), 395-397) was mounted onto the FDS of the long finger. Tension in the tendon, contact force at the fingertip, and finger posture were recorded while the patient gradually increased the force applied by the fingertip from 0 to 10 N and then monotonically reduced it to 0 N. The average ratio of the tendon tension to the fingertip contact force ranged from 1.7 to 5.8 (mean = 3.3, s.d. = 1.4) for the nine subjects. These ratios are larger than ratios predicted by current isometric tendon force models (mean = 1.2, s. d. = 0.4). Subjects who used a pulp pinch posture (hyper-extended distal interphalangeal joint (DIP)) showed a significantly (p = 0.02) larger ratio (mean = 4.4, s.d. = 1.5) than the five subjects who flexed the DIP joint in a tip pinch posture (mean = 2.4, s.d. = 0.6). A new DIP constraint model, which selects different force distribution based on DIP joint posture, predicts force ratios that correlate well with the measured ratios (r2 = 0.85).

Adult↗

Partial lacerations of human digital flexor tendons: a biomechanical analysis.

The biomechanical properties of human flexor tendons with partial lacerations have not been previously studied. To determine the loss of tensile strength with varying degrees of partial laceration, tensile tests were performed on 2 matched groups of human cadaver flexor tendons: One group had 50% while the other had 75% transverse volar lacerations of the anteroposterior diameter. The mean failure load of the 50%-lacerated tendons was 93% higher than that of the 75%-lacerated tendons. The forces tolerated by the lacerated tendons before failure were also compared to those measured in vivo during physiologic loading. The breaking loads of both 50%- and 75%-lacerated tendons far exceeded the in vivo forces measured in human flexor tendons during unresisted active finger movement (up to 34 N). Further, the breaking loads of 50% lacerations was higher than the in vivo forces during resisted active finger movement (up to 117 N). This study demonstrates that the threshold load levels to rupture of 50% and 75% lacerations are higher than physiologic load levels measured during active motion, suggesting that partial flexor tendon lacerations of up to 75% can withstand in vivo forces associated with active unresisted mobilization of the digital flexor tendon.

Biomechanical Phenomena↗

Comparison of transthecal and subcutaneous single-injection digital block techniques in cadaver hands.

A controlled, randomized single-blinded study was performed on the thumbs and little fingers of 20 cadaver hands. The digits were randomly divided into 2 groups. In the transthecal group, 2 mL of 0.5% methylene blue was injected into the tendon sheath at the A1 pulley. In the subcutaneous group, the same amount of dye was injected into the subcutaneous tissue superficial to the A1 pulley. The injections were performed by 2 investigators. They exchanged specimens and performed dissections on the injected digits without knowledge of which technique had been used. The distributions of dye along the digit and the color intensity of the dye on the digital nerves were studied. There was no significant difference (p > .05) between results for the 2 techniques. It was expected that both techniques would result in similar anesthetic distribution in the clinical setting. In the transthecal group, intra-articular staining of the metacarpophalangeal joint was noted in 3 little fingers and 1 thumb. This complication did not occur in the subcutaneous group. This difference was significant (p < .05).

Cadaver↗

Comparison of transthecal and subcutaneous single-injection digital block techniques.

A randomized double-blinded study was performed on 20 normal volunteers to evaluate 2 different techniques of single-injection digital anesthesia. Single-injection transthecal digital block technique was used to anesthetize 1 index finger and single-injection subcutaneous technique to block the other index finger. Pain and light touch were evaluated and sensory nerve-conduction studies were performed on both index fingers. These data were obtained prior to the nerve blocks and then at 10-minute intervals until recovery from the anesthesia. The method of anesthesia was found to have no effect on the distribution, onset, and duration of anesthesia. Median and radial nerve sensory nerve action potential amplitude reductions following digital anesthesia were also not influenced by the technique of anesthesia. Single-injection subcutaneous block was found to be easier to administer and to produce less pain during and 24 hours after injection than did the single-injection transthecal technique.

Adult↗

Tissue expansion for staged reimplantation of infected total knee arthroplasty.

Resection arthroplasty of a chronically infected total knee arthroplasty resulted in thin and contracted anterior skin. Expansion of skin using Silastic reservoirs (McGhan Medical, Santa Barbara, CA) facilitated wound closure and rehabilitation following staged total knee reimplantation. Prophylactic expansion of skin around the knee avoided salvage soft tissue procedures such as local and distant tissue flaps.

Aged↗

Metacarpal fixation.

This article discusses and categorizes common metacarpal fractures and their treatments, including various techniques of obtaining skeletal fixation. It reviews metacarpal shaft fracture; intra-articular metacarpal head fractures; and metacarpal neck and base fractures including carpal-metacarpal dislocations, and Rolando's and Bennett's fractures of the base of thumb metacarpal. Also discussed are the effects of shortening of lengthening the digital skeleton and bioabsorbable implants, a potential treatment modality currently under development.

Biomechanical Phenomena↗

Pressure changes in Guyon's canal after carpal tunnel release.

We measured pressure changes in Guyon's canal and the carpal tunnel before and after endoscopic (11 cases) and open (10) carpal tunnel release. We found that release of the flexor retinaculum by endoscopic and open techniques measurably decreased pressure in both the carpal tunnel and Guyon's canal. This study provides an explanation for relief of ulnar tunnel syndrome symptoms following carpal tunnel release and may indicate that carpal tunnel release alone may be sufficient to provide symptomatic relief for most patients with carpal and ulnar tunnel syndromes.

Carpal Tunnel Syndrome↗