Search PubMed⌕ Search

Biomedical subjects

H Göransson

Publications and source records attributed to H Göransson.

12 recordsLinked to original sources

Material and knot properties of braided polyester (Ticron) and bioabsorbable poly-L/D-lactide (PLDLA) 96/4 sutures.

The purpose of the present study was to investigate in vitro the biomechanical material and knot properties and histomorphometrical knot properties of 3-0 braided polyester suture (Ticron) and bioabsorbable poly-L/D-lactide (PLDLA) 96/4 suture. In Ticron five throws are needed to form a secure knot, and the 1 = 1 = 1 = 1 = 1 and the 2 = 1 = 1 = 1 configurations are recommended. For PLDLA several granny and square knots formed a secure knot, but the 1 = 1 and 1 = 1 = 1 knots were the best. These PLDLA knots had lower yield force and strain at yield point, but higher stiffness than the recommended Ticron knots. The ultimate force values did not differ, but PLDLA knots had significantly higher strain at ultimate point. In the histomorphometrical analysis of the recommended knots, the PLDLA knots had a significantly smaller knot surface area than the Ticron knots. According to these results, PLDLA suture proved to be suitable for flexor tendon repair.

Absorbable Implants↗

A comparative analysis of the biomechanical behaviour of five flexor tendon core sutures.

Five core suture techniques were compared by static tensile testing in vitro. Fifty porcine tendons were used. The core sutures were performed with 3-0 or 4-0 braided polyester suture (Ticron) and the over-and-over running peripheral sutures with 6-0 monofilament polypropylene (Prolene). The core sutures were: (1) Pennington modified Kessler (3-0), (2) Double Pennington modified Kessler (3-0), (3) 4-strand Savage (3-0), (4) 4-strand Savage (4-0), and (5) 6-strand Savage (4-0). Repairs were compared as paired in regard to one variable: the number of core suture strands, the suture calibre, or the suture configuration. Biomechanical differences between the repair groups started during the linear region, with the yield force and stiffness increasing along with the number of core suture strands. All three variables influenced the strain at the yield point. Thus, the strength of the intact repair can be improved by modifying the core suture. In all repairs gap formation started near the yield point after failure of the peripheral suture. The yield force represents the strength of the intact repair composite and should be considered the strength of the tendon repair.

Animals↗

Effects of dynamic ischaemic training on human skeletal muscle dimensions.

The effect of training under conditions of local leg ischaemia on muscle area and fibre dimensions was studied in nine males. Leg ischaemia was induced by enclosing the legs in a pressure chamber and sealing the opening with a rubber membrane at the level of the crotch. Air pressure over the legs was 50 mmHg. The subjects performed 16 sessions (45 min) of one-legged supine strenuous ischaemic training during 4 weeks. Exercise intensity was maintained as high as possible during the whole session. The contralateral leg served as a control leg and remained passive during exercise. Before and after the training period, muscle fibre dimensions were determined from biopsy samples taken from the m. vastus lateralis, and leg muscle dimensions were assessed by magnetic resonance imaging (MRI). In the trained leg, mean fibre area increased by 12% (P < 0.05). The MRI-assessed cross-sectional area of the vastus group increased by 4% (P = 0.01). In the control leg, mean fibre area and the cross-sectional area of the vastus group were unchanged, while those of the adductor muscle group decreased by 4% (P < 0.05). It is concluded that a short period of strenuous ischaemic endurance training increases the cross-sectional area of the ischaemically trained muscle group, as measured both by MRI and from muscle biopsy samples. In contrast, the adductor muscles in the contralateral thigh showed a decreased cross-sectional area (as assessed by MRI), possibly due to the effects of the strenuous contralateral training, by mechanisms that have yet to be identified.

Adult↗

Bone marrow induced osteogenesis in hydroxyapatite and calcium carbonate implants.

In this experimental study, blocks of natural coral (calcium carbonate) and its structurally similar derivate in the form of hydroxyapatite (calcium phosphate) were implanted in rat latissimus dorsi muscle with autogenous bone marrow to compare their bone-forming capability. A block without marrow placed in the opposite latissimus muscle served as a control. The animals were killed at 3, 6 and 12 weeks and, in the hydroxyapatite group, also at 24 weeks. The sections were analysed histologically and histomorphometrically. Bone was found only in implants containing bone marrow. Bone formation was significantly (p < 0.05) higher in coral than in hydroxyapatite implants at 3 weeks (10.8% versus 4.8%) and at 12 weeks (13.7% versus 6.3%, bone/total original block area). At 12 weeks all the coral implants had lost their original structure, and the cross-sectional area of the block had diminished to 40% of the original area.

Animals↗

Filling the bone defect with osteogenic material. An experimental study.

In this experimental study with bone defects, we focussed on the one hand on external and internal osteogenic callus formation after filling the defect and on the other on the osteochondrogenic differentiation capacity of 4-day-old fibrous-like callus grafts and 12-day-old woven bone grafts in an osteogenic environment. A standard cortical bone defect of the femur was created in 95 young rats. The defect was filled with a cortical bone graft and 4- and 12-day-old callus grafts. The grafts were transplanted as such or in Nucleopore chambers. Follow-up was done at 1, 2, 3 and 6 weeks. The osteochondrogenic tissue formed was studied histologically and histomorphometrically. The results suggest that the filling of the bone defect had no influence on the primary external and internal osteogenic callus formation at 1 and 2 weeks. At 3 and 6 weeks in the chamber groups the persisting internal bridging woven bone was converted into more compact lamellar bone whereas periosteal callus remained at the edges of the defect. In the other groups at 3 and 6 weeks the normal shape of the cortex was reconstituting. Four-day-old fibrous-like callus formed bone in the Nucleopore chamber, indicating that fibrous-like callus tissue at 4 days contains osteogenic cells. Twelve-day-old callus consisting of woven bone was partially differentiated to cartilage, showing that woven bone contains cells capable of chondrogenic differentiation.

Animals↗

Regeneration of defects in articular cartilage with callus and cortical bone grafts. An experimental study.

Cartilage regeneration was studied in an experiment in rats. A standardised full-thickness articular cartilage defect was created and autogenous 12-day-old callus or cortical bone graft was transplanted into it, or the defect was left empty. The follow up periods were three, six, 12, and 24 weeks, and each subgroup consisted of five animals. A total of 60 animals were operated on. From six weeks onwards hyaline-like cartilaginous tissue had started to develop at the edges of the defect in all three groups. In the middle section of the hole, however, the picture was different; at 24 weeks none of the specimens in the defect group, two of the five in the callus graft group, and all five in the bone graft group had developed full-thickness, hyaline-like cartilaginous regeneration. The hyaline-like cartilaginous tissue in the medical segment was hypocellular when analysed by histomorphometry. On scanning electron microscopy the surface of the reparative tissue looked fibrillated in all specimens from the three groups.

Animals↗

Callus formation after re-injury to experimental bone defect.

Osteochondrogenic callus formation after delayed re-injury at different time intervals was evaluated. Twenty young rats were operated, and a standard bone defect reaching the medulla was sawn into the left hind leg. The rats were divided into two groups and the defect was re-created after 4 or 12 days. The rats were killed 7 or 14 days after the second operation. The developing new bone was revealed with a triple fluorochrome labelling system. The areas of bone and cartilage were measured histomorphometrically. The results suggested that an external factor, re-trauma, could increase both external and internal primary osteogenic callus formation. The optimum time to potentiate bone formation in the defects was found to be earlier than identified in previous fracture studies. After a 4-day delay the external callus was significantly larger than after the 12-day delay. Cartilage formation was not enhanced despite the sudden increase in osteogenic callus formation.

Animals↗

Suprascapular nerve entrapment.

Fifty-four patients with suprascapular nerve entrapment were evaluated on an average of 5.6 years (range, 2-9 years) after surgical release. There were 32 males and 22 females. Supposed causative factor was exertion at work or vacation in 36 cases. Sixteen patients had an atrophy of the supraspinatus and 26 of the infraspinatus muscle. Conduction time to the supraspinatus muscle was 4.5 ms (range, 2.2-14.4 ms), and to the infraspinatus, 8.6 ms (range, 2.5-43.6 ms). The mean time from the onset of the symptoms to surgery was 2.8 years (range, three months to 14 years). The mean age at operation was 38.4 years (range, ten to 61 years). Two patients were operated on bilaterally within two and four years. All but two patients were operated on at the suprascapular notch. A new cranial approach is advocated. The most dramatic effect of the operation was prompt disappearance of the pain in 24 cases and marked diminishing in 15 cases (72%). At the follow-up evaluation, a moderate atrophy of the supraspinatus muscle was found only in one patient but that of the infraspinatus in 11 patients. There were ten poor long-term results, some of them presumably operated on after wrong diagnoses and some at a wrong region.

Adolescent↗

Histology and histomorphometry of bone regeneration after experimental injuries.

Reparative callus formation upon tubular bone was studied after surgical injuries of different degrees. Thirty-seven young rats were divided into three groups. In the periosteum group the bone was scraped, in the fissure group we made a slit reaching the medulla, and in the defect group a standard defect was sawn. Rats were killed at 6, 12 and 18 days. The formed callus was studied histologically and histomorphometrically. The results suggest than even the primary osteochondrogenic callus formation is dependent on the mode of injury. At six days the three groups differed both qualitatively and quantitatively in regard to callus formation. At 12 and 18 days the total area of woven bone was proportional to the degree of trauma according to the linear regression line Y = 0.883 x X + 0.226 (r = 0.876, P less than 0.001). In the fissure and defect groups reparative bone filled the hole proportionally to the same extent. Periosteal and endosteal woven bone formed round the bone. Medullary bone formation was limited mainly to the area immediately adjacent to the trauma, the result being a cylinder-shaped callus. Cartilage formation was most abundant at six days and was related to the amount of woven bone in the external callus (r = 0.854, P less than 0.001) and to the trauma area (r = 0.707, P less than 0.05).

Animals↗

Radiological detection of bone and bone marrow metastases.

Bone scintigraphy is the primary method for the diagnosis of skeletal metastases. This investigation is sensitive, but the interpretation must be performed in the knowledge that it is also nonspecific. Despite this, a correct diagnosis can usually be achieved. The first-hand supplementary investigation, after a doubtful scintigraphic finding, is radiography. In most cases this is sufficient for a diagnosis. When a scintigraphic abnormality cannot be adequately explained, usually because of a negative radiographic examination, a more sensitive modality must be used. Computerized tomography offers increased sensitivity and specificity, and is primarily used for this purpose. In this way contrast resolution is increased and problems caused by obscuring tissue and complicated anatomy are reduced. Since bone metastases migrate via the active bone marrow an alternative supplementary investigation is bone marrow scintigraphy. Its usefulness is restricted by disturbing activity, from the liver and the spleen, which obscures a significant part of the active marrow, and by the fact that a lesion must be of a certain size to become apparent. Magnetic resonance imaging yields excellent images of the extension of a tumor in soft tissue. Owing to high costs and restricted availability it is still mainly used for preoperative location of metastases.

Bone Marrow↗

Traumatic amputations and the need for a replantation service in Finland.

The authors review a series of 290 upper extremity amputee patients injured between 1974-79 from a 400,000 population area of one central hospital. Among these amputation injuries were 55 cases which were considered "serious", i.e. effecting seriously the function of the hand. Calculations were extrapolated to obtain reliable numbers for the need of a replantation service in Finland within a population of 5 million. According to the available data 90-160 patients annually would need a replantation service for their amputation injuries inthe country. Some conclusions were also drawn about the results obtained with or without replantation surgery among the "seriously injured" group. The results obtained with the replantation service were clearly superior to the results achieved without replantation.

Adolescent↗

Compressive strength of calcium carbonate and hydroxyapatite implants after bone-marrow-induced osteogenesis.

Natural coral and structurally similar porous hydroxyapatite (HA) have been used as bone substitutes. They are not osteoinductive but bone formation can be induced by marrow cells, even in extraosseal sites. In our previous study we induced bone formation in porous coral and HA after having implanted the materials in intramuscular pockets in rat. New bone formed only in HA or coral implants soaked with marrow cells; fibrous tissue ingrowth alone was observed in the controls (without marrow). In the present study we examined the effect of tissue ingrowth on the mechanical properties of coral and HA implants obtained in a similar process to that used before. At 12 weeks the compressive strength of HA was higher in the marrow group than in the controls; it was also higher than that of the wet unimplanted material. The HA blocks did not show resorption. Coral resorbed quickly and lost its compressive strength, which was originally higher than in HA. At three weeks the marrow group was stronger than the control specimens. After six weeks only the marrow group, but not the controls, could be tested. Bone ingrowth seemed to maintain the strength of the coral implant even if it was dissolving. The mechanical strength of both materials was comparable to that of cancellous bone.

Animals↗