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At least 19 recordsLinked to original sources

Continuous passive motion versus physical therapy in total knee arthroplasty.

To determine the justification of a continuous passive motion machine in the treatment of postoperative total knee arthroplasties, a comparative study of 50 consecutive patients with simultaneous bilateral total knee arthroplasties was undertaken. The patients served as their own controls because one randomly selected knee was placed in the machine while the remaining knee was treated with physical therapy only. There was no significant difference in the range of motion during the eight days of hospitalization or the follow-up visits at two weeks, two months, six months, and one year. There was a significant decrease in the swelling about the knee. The continuous passive motion treated knees appeared to be generally weaker as revealed by more extensor lags and flexor tightness at discharge from the hospital. Also, increased costs incurred from the need for additional equipment and increased staff time made the machine neither cost-effective nor beneficial.

Adult

Treatment of limited shoulder motion: a case study based on biomechanical considerations.

This article describes the management of a 57-year-old female patient following a fracture and dislocation of the right humeral head. The treatment of the patient involved the use of thermal agents, manual therapy, continuous passive motion, and splinting of the arm in an elevated position. We describe an approach to treatment of limited shoulder motion that is focused on identifying and applying tension to restricting structures rather than restoration of translatory gliding movements of the humeral head. Our treatment approach is based on recent data from biomechanical studies that challenge the concave-convex theory of arthrokinematic motion first described by MacConaill. We believe that tension in capsular tissues, rather than joint surface geometry, may control the translatory movements of the humeral head. The rationale for treatment involving low-load prolonged stress to tissues in the form of continuous passive motion and splinting is discussed as well as potential limitations of more brief forms of stress such as joint mobilization and manual stretching.

Biomechanical Phenomena

Continuous passive motion as an adjunct therapy for tenolysis.

A model was developed to evaluate continuous passive motion as an adjunct to tenolysis. The use of continuous passive motion after tenolysis was associated with a significant increase in tendon rupture and the terminal force necessary to flex the phalanx actively. Also, there was a decrease in the passive range of motion in the continuous passive motion group which appeared to be the result of increased granulation tissue which formed around tenolysed tendon.

Animals

Biosynthetic response of cartilage explants to dynamic compression.

The biosynthetic response of calf articular cartilage explants to dynamic compression was examined over a wide range of amplitudes, waveforms, and frequencies. Glycosaminoglycan synthesis was assessed by 35S-sulfate incorporation, and amino acid uptake and protein synthesis were assessed by 3H-proline incorporation. Two culture chambers were designed to allow uniaxial radially unconfined compression and mechanical testing of cartilage disks: one chamber was used inside a standard incubator; the other was used with a mechanical spectrometer and allowed load and displacement to be monitored during compression. Dynamic stiffness measurements of 3-mm diameter disks identified a characteristic frequency [0.001 Hz (cycles/sec)] that separated low- and high-frequency regimes in which different flow and deformation phenomena predominated; e.g., at 0.0001-0.0001 Hz, significant fluid was exuded from cartilage disks, whereas at 0.01-1 Hz, hydrostratic pressure increased within disks. At the higher frequencies, oscillatory strains of only approximately 1-5% stimulated 3H-proline and 35S-sulfate incorporation by approximately 20-40%. In contrast, at the lower frequencies (a) compressions of less than 5% had no effect, consistent with the dosimetry of biosynthetic inhibition by static compression (approximately 25% compression caused a approximately 20% inhibition of radiolabel incorporation), and (b) higher amplitudes (cycling between disk thicknesses of 1.25 and 0.88-1.00 mm) stimulated 3S-sulfate incorporation by approximately 20-40%, consistent with the kinetics of response to a single 2-h compression and release. None of the compression protocols was associated with detectable alterations in (e.g., compression-induced depletion of) total glycosaminoglycan content. This study provides a framework for identifying both the physical and biological mechanisms by which dynamic compression can modulate chondrocyte biosynthesis. In addition, the culture and compression methodology potentially allows in vitro evaluation of clinical strategies of continuous passive motion therapy to stimulate cartilage remodeling.

Animals

[Immobilization damage].

Prolonged immobilization can threaten the surgical result. The reduction of the muscle diameter is reported to be between 10 and 60% after four weeks of immobilization depending on the different muscle groups. Particularly the oxidative type-1 fibers, the "slow twitch fibers" are concerned. However, the sequelae of immobilization of muscle are reversible, which is in contrast to the detrimental effects immobilization has on the bone. Inactivity osteoporosis is occurring in three stages with bone loss as much as five to twenty times that of other calcipenic disorders. The physiological coupling of bone resorption and bone remodeling is lost. Immobilization leads to arthrosis changing the cartilage matrix composition quantitatively and qualitatively as well as cartilage morphology histologically and electron-microscopically. The result of immobilization is shortening of all fibrous tissues. The loss of the ligament-specific orientation of fibrils leads to significant reduction in tensile strength. The sequelae of immobilization emphasize the importance of early functional therapy. Continuous passive motion speeds up wound healing, and the tissue-structure is improved.

Animals

Anterior capsulotomy and continuous passive motion in the treatment of post-traumatic flexion contracture of the elbow. A prospective study.

Thirty-three patients who had a post-traumatic flexion contracture of the elbow were managed consecutively with anterior capsulotomy without tenotomy of the biceps tendon or myotomy of the brachialis muscle. The first fifteen patients (Group I) did not receive continuous passive motion postoperatively. Preoperative active extension for Group I was to an average of 48 degrees short of full extension, which improved to 19 degrees at a mean follow-up time of forty-five months. Subsequently, eighteen patients (Group II) received continuous passive motion postoperatively for a mean of six weeks. Preoperative active extension for Group II was to an average of 55 degrees short of full extension, which improved to 23 degrees at a mean duration of follow-up of thirty-five months. The mean preoperative arc of motion for Group I was 69 degrees, which improved to 94 degrees postoperatively. The mean preoperative arc of motion for Group II was 48 degrees, which improved to 95 degrees postoperatively. Five patients in Group I and six patients in Group II had severe preoperative heterotopic ossification. There was no correlation, however, between preoperative heterotopic ossification and the amount that extension of the elbow improved postoperatively. There was no postoperative increase in heterotopic ossification. Four patients in Group I and six patients in Group II had severe post-traumatic osteoarthrosis preoperatively. Anterior capsulotomy is an effective treatment of post-traumatic flexion contracture of the elbow. Although the postoperative use of continuous passive motion did not significantly improve mean active extension, it did improve active flexion and the total arc of motion.

Adolescent

Shoulder rheumatoid arthritis associated with chondromatosis, treated by arthroscopy.

We present a case of rheumatoid arthritis that affected the right shoulder and was associated with chondromatosis and multiple loose body formation. The arthritis was treated arthroscopically with satisfactory results after a follow-up period of 15 months. In our case, arthroscopic debridement and partial synovectomy not only relieved the pain but also improved the range of motion the night after surgery. The multiple loose bodies irritating the synovium and causing effusion, crepitus, and locking were also removed. One may need to change portals of the scope and suction cannula to remove loose bodies in different joint spaces. The subacromial space must be searched for loose bodies. Thorough cleaning, lavage, and synovectomy are important parts of this surgery. The continuous passive motion (CPM) machine in the immediate postoperative period was helpful.

Arthritis, Rheumatoid

[Fracture induced constriction treated by Continuous Passive Motion (CPM)].

Aspects of the history of treatment of painful joints are commented upon. It is pointed out, that the medical and dental professions have for more than 125 years been aware, that immobilization of joints may have harmful effects. Still, research on therapeutic motion of painful joints dates back only 25 years. A case is reported of fracture associated constriction, possibly due to secondary involvement of the temporalis muscle and especially its tendineous insertion on the muscular process of the mandible. When the patient was treated with the CPM apparatus Mobilimb J1 the interincisal distance increased from 13 mm to 46 mm. According to literature CPM has so far been used only as adjunctive physical therapy after surgical intervention. On the basis of data in the literature the author is studying the effect of CPM on reduced mobility of the jaws as primary treatment without surgery.

Contracture

Continuous passive motion after total knee arthroplasty. Analysis of cost and benefits.

The authors report the results of a prospective study examining the benefits of daily continuous passive motion combined with physical therapy, compared with physical therapy alone, in 103 consecutive osteoarthritic patients undergoing primary total knee arthroplasty. The first 51 patients received continuous passive motion initiated in the recovery room and the next 52 patients did not receive continuous passive motion. Both groups underwent an identical physical therapy protocol starting on the first postoperative day. At discharge, there was a significant increase in active flexion in the continuous passive motion group. There were no significant differences regarding pain, wound healing, knee swelling, wound drainage, pulmonary embolism, or length of hospital stay between the 2 groups. At 2 years, there were no clinical differences in the motion or knee scores. Knee manipulation was done for < 50 degrees flexion after the tenth postoperative day. There were 5 manipulations in the noncontinuous passive motion group and none in the continuous passive motion group. The entire costs associated with the 5 manipulations was $48,274 or $937 per patient not receiving continuous passive motion. The average daily inpatient rental of the machine was $60 per day. Continuous passive motion is efficacious in increasing short-term flexion and decreasing the need for knee manipulation without increasing costs.

Aged

Passive exercise system: effect on muscle activity, strength, and lean body mass.

There is little information concerning the effects of passive exercise training in healthy humans. This prompted an investigation to evaluate muscle activity and the associated changes in strength and lean body mass resulting from a passive exercise program. Twenty-eight healthy volunteers, aged 26 to 44 years, participated in this six-week study. Lean body mass changes were evaluated by tetrapolar bioelectric impedance measurements, strength changes by isokinetic strength evaluation, and muscle activity by surface EMG techniques. Reproducible muscle activity was recorded in all three muscles studied during two of three preselected exercises. This involuntary muscle activity was attributed to fusimotor and postural reflexes. No significant change (p greater than .05), however, occurred in muscle strength or lean body mass at the end of the six weeks. Lack of these physiologic changes in light of the documented muscle activity is attributed to insufficient training effect.

Adult

Continuous passive motion following partial ankle joint arthroplasty.

Retrospective preliminary report of 19 cases undergoing partial ankle joint arthroplasties with open surgical procedures were rehabilitated with continuous passive motion (CPM). Preoperative and post-operative ankle range of motion and subjective findings (pain, physical signs, activity, quality of motion) were evaluated. Results indicated significant increases to ankle joint range of motion with the use of continuous passive motion, decreased pain, increased activity, decreased edema, and improved quality of motion in the majority of patients undergoing ankle joint arthroplasty with continuous passive motion.

Adult

Continuous passive motion versus immobilization. The effect on posttraumatic joint stiffness.

Management of intraarticular fractures is often complicated by joint stiffness long after bony healing has occurred. The following experiments provide biomechanical evidence for the effectiveness of CPM in maintaining joint function in stabilized articular injuries. The ankles of ten adolescent New Zealand white rabbits were penetrated by Steinmann pins to create an intraarticular injury. One limb of each animal was immobilized, and the contralateral limb was placed in a continuous passive motion (CPM) machine for three weeks. Joint stiffness of each ankle was quantified with an arthrograph before injury and after three weeks of treatment. Hindlimb volumes were recorded before injury and monitored at weekly intervals using a water-displacement method. Joint stiffness increased 2.6 times the preinjury levels in limbs that were immobilized for three weeks. There was no statistically significant increase in joint stiffness in ankles treated with CPM compared to preinjury values. The posttraumatic difference between the CPM-treated and immobilized limbs was highly significant; limb swelling was not affected by CPM.

Animals

ACL reconstruction: in vivo measurement of patellar tendon graft elongation.

The implantation of a free autogenous patellar tendon graft is the surgical technique that currently offers the best results in anterior cruciate ligament reconstruction. However, numerous aspects regarding both technique and postoperative rehabilitation can still be improved. The aim of this study was to measure the elongation of the patellar tendon in vivo in the operating room after reconstructive surgery, subjecting the knee to normal strain such as passive mobilization or anterior displacement of the tibia. Three volunteers were studied. Our results were different from those reported in a previous study conducted in vivo on a normal anterior cruciate ligament (ACL). In spite of the isometric position of the tendon, passive mobilization provoked a progressive increase in the elongation of the graft within each cycle of flexion-extension and between one cycle and the next. This also occurred during the Lachman test. These findings suggest that the graft undergoes a process of tensile adjustment when it is first put under strain. Continued elongation once this process appears stabilized raises doubts as to the reliability of isometric measuring devices.

Adult

Continuous passive motion as an alternative treatment for iatrogenic hallux limitus.

The use and effect of continuous passive motion (CPM) was evaluated for 10 patients suffering from iatrogenic hallux limitus. All patients had previous hallux valgus corrective surgery. After their initial evaluation, patients were instructed to begin CPM therapy at home for a minimum of 4 hr. a day and were instructed to increase range of motion (ROM) as tolerated. CPM was used for 4 weeks. ROM was measured on day 0, 28, 48, 90. There were significant increases in mean extension (p < 0.025) and mean flexion (p < 0.05). All patients reported a decrease in pain and stiffness of the first metatarsophalangeal joint. Seven of the 10 patients treated with CPM had increases in ROM. Three patients, all of whom had first metatarsal elevatus, required an additional surgical procedure. Patients suffering from iatrogenic hallux limitus with no associated first metatarsal elevatus can utilize CPM as a viable alternative to return to functional ROM.

Contracture