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At least 19 recordsLinked to original sources

Comparison of suture-in and suture-out postkeratoplasty astigmatism with single running suture or combined running and interrupted sutures.

PURPOSE: To evaluate postkeratoplasty astigmatism between two suture techniques 2 to 4 years postoperatively in a group of patients previously studied 9 months postoperatively. METHODS: Thirty-two patients who underwent penetrating keratoplasty were randomly assigned to one of two groups. Group 1 (16 patients) had a 24-bite single running 10-0 nylon suture with postoperative suture tension adjustment; group 2 (16 patients) had combined 16-bite running and eight interrupted 10-0 nylon sutures with selective postoperative removal of interrupted sutures. During long-term follow-up, the running suture was removed in 19 patients (59%). RESULTS: Postoperative astigmatism was slightly lower in patients with the single running suture technique when sutures were in place and was slightly greater after the sutures were removed compared with the combined running and interrupted suture technique (sutures in: single running suture +/- SD, 2.6 +/- 1.2 diopters [five patients, 31%]; combined running and interrupted sutures, 3.8 +/- 1.1 diopters [eight patients, 50%]; sutures out: single running suture, 3.3 +/- 1.3 diopters [11 patients, 69%]; combined running and interrupted sutures, 2.8 +/- 1.5 diopters [eight patients, 50%]). These differences were not statistically significant (sutures in, P < .13; sutures out, P < .46). Averages of follow-up were group 1,48.3 +/- 10.6 months and group 2, 46.3 +/- 13.0 months. Follow-up ranged from 23 to 60 months. CONCLUSIONS: Postoperative astigmatism 4 years after penetrating keratoplasty is similar for these two suturing techniques, with or without residual sutures. A single running suture results in more rapid visual rehabilitation and less early astigmatism compared with the combined interrupted and running suture technique.

Adult↗

Physical and functional comparison of Coated VICRYL* Plus Antibacterial Suture (coated polyglactin 910 suture with triclosan) with Coated VICRYL* Suture (coated polyglactin 910 suture).

BACKGROUND: The goal of this study was to compare the physical and functional properties of coated polyglactin 910 suture with and without triclosan by human assessment and instrument-based measurements. METHODS: Surgeons specializing in general, orthopedic, plastic, or gynecologic surgery evaluated the suture materials in an in vivo porcine model with regard to (1) ease of passage through tissue, (2) first-throw knot holding, (3) knot tie-down smoothness, (4) knot security, (5) surgical handling, and (6) overall evaluation. Breaking strength retention was determined at 14, 21, 28, and 35 days post-implantation in rats using a tensile strength measurement device. The absorption rate was determined in rats by histopathology at 7, 28, 56, 63, 70, and 77 days post-implantation. The tactile smoothness and tie-down behavior of both wet and dry sutures were evaluated by product characterization technicians. RESULTS: The scores for surgeons' evaluation of suture material were favorable and similar for both sutures. Surgeons could not reliably make a distinction in handling between the two sutures. Breaking strength retention was the same for both sutures, ranging from 79% on day 14 to 5% on day 35. Both sutures were essentially absorbed at 70 days post-implantation. Product characterization assessment of the two sutures found them to be indistinguishable. CONCLUSION: The addition of triclosan to coated polyglactin 910 sutures did not affect physical handling properties or performance characteristics based on the testing and evaluations performed.

Animals↗

Biomechanical evaluation of suture pullout from canine arytenoid cartilages: effects of hole diameter, suture configuration, suture size, and distraction rate.

OBJECTIVE: To evaluate the mechanical properties of canine arytenoid cartilage-suture constructs. STUDY DESIGN: Experimental study. SAMPLE POPULATION: Eighty canine cadaveric larynges. METHODS: Arytenoid cartilage-suture constructs were loaded to failure on a materials testing machine. The effect of hole size, suture configuration, suture size, and rate of distraction on load at failure, displacement at failure, energy to failure, and construct stiffness were evaluated. Polypropylene sutures were used exclusively. Specific variables evaluated were: (1) hole size-SH needle, 22, 20, and 18 ga hypodermic needles; (2) suture configurations-single dorsal and ventral articular sutures, double sutures, horizontal mattress, locking loop, and single non-articular sutures; (3) suture size-1, 0, 2-0, and 3-0; and (4) distraction rate-0.83 and 36.66 mm/s. RESULTS: Hole size had no effect on any biomechanical variable. Double suture and horizontal mattress configurations had the highest median load and energy at failure. Single dorsal suture configurations that did not include the arcuate crest had the lowest median load at failure. Larger suture sizes tended to result in stiffer constructs. Cartilage-suture constructs behaved in a viscoelastic manner where load at failure, energy at failure, and stiffness increased when distraction rate was increased, whereas displacement at failure did not. Most constructs failed by suture pullout regardless of distraction rate, although 50% of horizontal mattress configurations failed by avulsion of the muscular process. CONCLUSION: Suture and hole sizes appear to have few effects on the biomechanical performance of arytenoid-suture constructs. Double-suture and horizontal mattress suture patterns had the best overall mechanical properties for arytenoid lateralization. Single-suture techniques, which do not incorporate the arcuate crest, were biomechanically inferior. CLINICAL RELEVANCE: Cumbersome large-diameter sutures offer no advantage over smaller sutures when performing arytenoid lateralization. The cross-sectional geometry of the muscular process should be taken into account when placing sutures in the arytenoid cartilages. Single-suture techniques that do not incorporate the arcuate crest should be avoided.

Animals↗

Separation of sutured tendon ends when different suture techniques and different suture materials are used. An experimental study in rabbits.

Calcaneal tendons in rabbits were divided and then sutured with varying suture techniques and suture materials. The separation of the tendon ends after suturing was registered with an X-ray technique--the tendon ends being identified by thin steel wires. Independently of the suture techniques and the suture materials a biphasic separation of the tendon ends was registered. The first separation took place during the first 4-5 days while the second separation began after 20-24 days. A small initial separation seems to indicate that the tendon suture used is adequate. The initial separation can therefore be used to evaluate a suturing technique and how the result is influenced by the suture material used. In the present study we could show that steel wire was ideal for a Bunnell suture. Prolene and Ethiflex cannot be recommended. A suture technique with a single short loop gave good results with all suture materials. Dexon ligatures placed around the tendon ends according to Schink in order to prevent the strands of the suture from cutting the tissue, did not reduce the initial separation. When a complex suture technique, like a Bunnell suture, is used the physical properties of the suture material influence the result. With a simple suture technique, a single short loop, good results can be achieved with every suture material.

Animals↗

Polyglactin sutures versus nylon sutures for scleral flap suturing in trabeculectomy.

BACKGROUND AND OBJECTIVES: To note the effect on filtration function of using polyglactin sutures for scleral flap suturing in trabeculectomy. PATIENTS AND METHODS: Polyglactin sutures were compared with nylon sutures to secure the scleral flap of trabeculectomy in 30 consecutive eyes. Parameters studied were intraocular pressure, central anterior chamber depth, and bleb score in this randomized prospective study. RESULTS: Observations regarding intraocular pressure, central anterior chamber depth and bleb score in the early postoperative period were comparable in the 2 groups. The results at 12 months follow-up reveal a lower mean IOP (P < 0.05) and a higher mean bleb score (P < 0.05) in the group with polyglactin sutures. Success rate (defined as IOP < 21 mm Hg) at 12 months was 100% with use of polyglactin sutures compared to 80% with nylon sutures. CONCLUSIONS: Polyglactin sutures can be used as an alternative to nylon sutures for scleral flap suturing in trabeculectomy, with the possible additional benefit of better long-term filtration function.

Anterior Chamber↗

Closure of the rectus sheath with a continuous looped suture and the skin with staples in dogs: speed, safety, and costs compared to closure of the rectus sheath with interrupted sutures and the skin with a continuous subdermal suture.

In dogs requiring a midline celiotomy, closure of the rectus sheath with a continuous polyglyconate looped suture and closure of the skin with stainless steel staples (group 1, 20 dogs) were compared with closure of the rectus sheath with interrupted polyglyconate sutures and closure of the skin with a continuous subdermal polyglactin suture (group 2, 20 dogs) with respect to speed, safety, and costs. The subcutis was closed with a continuous polyglactin suture in all dogs. The use of a looped suture saved 3.4 minutes and the use of staples saved 5.6 minutes. Total mean time saved for all layers was 7.7 minutes (38%). Wound healing was not significantly different between group 1 and group 2. There was one case of dehiscence of the rectus sheath in group 2 and two cases of wound infection in group 1. It was concluded that closing the rectus sheath with a continuous looped suture and the skin with staples is equally safe and significantly faster than closing the rectus sheath with simple interrupted sutures and the skin with a continuous subdermal suture. Additional costs were balanced by the reduction in surgery time.

Abdomen↗

Suture formation, premature sutural fusion, and suture default zones in Apert syndrome.

On the basis of our studies, we postulate that suture formation in Apert syndrome is related to the relative maturity of abutting calvarial bones. The fused coronal suture, a consistent manifestation at birth, develops first because the ossification centers of the frontal and parietal bones are in intimate contact early during intrauterine life. Calvarial immaturity and the megalencephalic brain characteristic of the Apert syndrome appear to work in concert to produce a widely patent midline calvarial defect extending from the glabella to the posterior fontanelle. Because sagittal growth in the coronal sutures cannot take place, the megalencephalic brain grows upward and laterally, and bulges forward through the midline defect. The defect fills in by coalescence of bony islands without proper suture formation because the gap to be bridged is so great that the time window for developing sutural interdigitations may have closed. Other sutures, such as the lambdoid, squamosal, and sphenotemporal, develop with normal interdigitations because abutting bone margins are in close enough proximity to permit suture formation.

Acrocephalosyndactylia↗

Technique of arthroscopic rotator cuff repair using implantable 4-mm Revo suture anchors, suture Shuttle Relays, and no. 2 nonabsorbable mattress sutures.

This article reviews an arthroscopic technique used to repair small- and medium-sized rotator cuff tears using a retrievable screw-in suture anchor and permanent braided sutures. The cuff is shaved, the bone is prepared arthroscopically, and a subacromial decompression is performed. After implanting the anchors, the sutures are passed through the cuff using Shuttle Relay suture passers and a suture punch. To complete the repair, the sutures are tied using a knot-pusher.

Arthroscopes↗

[Tendon sutures with a new monofilament synthetic absorbable suture material (PDS-suture of 6-0 strength). Results of animal experiments].

The absorbable synthetic suture (PDS suture 6-0 with spatula needle) was examined by experiments on the tendon of the M. flexor digitorum pedis communis of the hare. A total of 34 tendon sutures was prepared histologically and evaluated. The new suture material is distinguished by greatly extended absorption time, low foreign body reaction and an improved tensile strength. With this suture, the conditions in which absorbable suture material can be used are increased. This is particularly true of so-called bradytrophic tissue.

Animals↗

Does the choice of suture material affect the incidence of wound infection? A comparison of dexon (polyglycolic acid) sutures with other commonly used sutures in an accident and emergency department.

One hundred and four patients with superficial lacerations were sutured with either Dexon (polyglycolic acid), silk, polyethylene or nylon sutures. The incidence of postoperative tissue reaction and wound infection was compared. There were few complications and these occurred with almost the same frequency in each suture group, although there were slightly more cases of infection in the patients who were sutured with silk. Dexon was seen to possess certain advantages in that it caused as little tissue reaction as the other sutures but did not have to be removed subsequently. This could clearly be of benefit to the patients and hospital staff alike.

Adolescent↗

The Southmead perineal suture study. A randomized comparison of suture materials and suturing techniques for repair of perineal trauma.

Commonly used suture materials and techniques for perineal repair following vaginal delivery were compared in a randomized controlled trial involving 1574 women. Three comparisons were made using a modified factorial design. In the comparison of teflon-coated polyglycolic acid (Dexon plus) with chromic catgut for repair of the vagina and deep perineal tissues there was no clear difference other than less short-term analgesia being required in association with polyglycolic acid. Outcome was also similar after skin repair with either polyglycolic acid or chromic catgut or silk, although silk repair required more packets of material and was associated with delay in resuming sexual intercourse; polyglycolic acid was more likely to need removal than chromic catgut but it appeared to reduce the need for resuturing. There was no clear difference between continuous subcuticular and interrupted transcutaneous sutures for repair of perineal skin.

Adult↗

[Experimental comparative study of microsurgical nerve sutures. II. Water-proof sutures and suture by simple approximation of the stumps].

After having demonstrated in a previous paper the advantages of an early surgical repair of injured nerves over a delayed suture, the author, following the same methods--electrophysiological and histological controls--comes to the conclusion that the so-called water-proof suture technique compared with a simple bringing up together of both stumps of the nerve, gives by far higher degrees of regeneration.

Animals↗

[Comparative experimental study of microsurgical nerve suture. I. Immediate suture and delayed suture].

Impressed by multiplicity of theories and conceptions concerning nerve surgery and by the difficulty to draw grouded conclusions from the different and contradictory work available from the litterature on the subject, the author makes a revision of the biology of the nerve, to be used as a point of departure for investigation. Based on the fact that protheosynthesis capacity of the nerve cell is known to be at its top value during the first week after the lesion of the nerve, the author endeavours to compare immediate suture with delayed suture. This comparative study is based both on electrophysiological and histological data and show clearly enough the real advantage of trying nerve reconstruction as early as possible, to avoid progression of devitalisation and invasion by fibrosis of both stumps. The surgical procedures are made with the help of the operating microscope and the same technique is used in both groups.

Animals↗

Studies in cranial suture biology: in vitro cranial suture fusion.

The biology underlying craniosynostosis remains unknown. Previous studies have shown that the underlying dura mater, not the suture itself, signals a suture to fuse. The purpose of this study was to develop an in vitro model for cranial-suture fusion that would still allow for suture-dura interaction, but without the influence of tensional forces transmitted from the cranial base. This was accomplished by demonstrating that the posterior frontal mouse cranial suture, known to be the only cranial suture that fuses in vivo, fuses when plated with its dura in an organ-culture system. In such an organ-culture system, the sutures are free from both the influence of dural forces transmitted from the cranial base and from hormonal influences only available in a perfused system. For the cranial-suture fusion in vitro model study, the sagittal sutures (controls that remain patent in vivo) and posterior frontal sutures (that fuse in vivo) with the underlying dura were excised from 24-day-old euthanized mice, cut into 5 x 4 x 2-mm specimens, and cultured in a chemically defined, serum-free media. One hundred sutures were harvested at the day of sacrifice, then every 2 days thereafter until 30 days in culture, stained with H & E, and analyzed. A subsequent cranial-suture without dura in vitro study was performed in a similar fashion to the first study, but only the calvariae with the posterior frontal or sagittal sutures (without the underlying dura) were cultured. Results from the cranial-suture fusion in vitro model study showed that all sagittal sutures placed in organ culture with the underlying dura remained patent. More importantly, the posterior frontal sutures with the underlying dura, which were plated-down as patent at 24 days of age, demonstrated fusion after various growth periods in organ culture. In vitro posterior frontal mouse-suture fusion occurred in an anterior-to-posterior direction but in a delayed fashion, 4 to 7 days later than in vivo posterior frontal mouse-suture fusion. In contrast, the subsequent cranial-suture without dura in vitro study showed patency of all sutures, including the posterior frontal suture. These data from in vitro experiments indicate that: (1) mouse calvariae, sutures, and the underlying dura survive and grow in organ-culture systems for 30 days; (2) the local dura, free from external influences transmitted from the cranial base and hormones from distant sites, influences the cells of its overlying suture to cause fusion; and (3) without dura influence, all in vitro cranial sutures remained patent. By first identifying the factors involved in dural-suture signaling and then regulating these factors and their receptors, the biologic basis of suture fusion and craniosynostosis may be unraveled and used in the future to manipulate pathologic (premature) suture fusion.

Animals↗

Studies in cranial suture biology: up-regulation of transforming growth factor-beta1 and basic fibroblast growth factor mRNA correlates with posterior frontal cranial suture fusion in the rat.

The mechanisms involved in normal cranial suture development and fusion as well as in the pathophysiology of craniosyostosis are not well understood. The purpose of this study was to investigate the expression of several cytokines--transforming growth factor-beta-1 (TGF-beta1), basic fibroblast growth factor (bFGF), and interleukin-6 (IL-6)--during cranial suture fusion. TGF-beta exists in three mammalian isoforms that are abundant in bone and stimulate calvarial bone formation when delivered locally. Other bone growth factors including basic fibroblast growth factor and the interleukins regulate bone growth and are mitogenic for bone marrow cells and osteoblasts. The involvement of growth factors in the pathophysiology of craniosynostosis is supported by recent genetics data linking fibroblast growth factor receptor mutations to syndromal craniosynostoses. In this experimental study, in situ hybridization was used to localize and quantify the gene expression of TGF-beta1, bFGF, and IL-6 during cranial suture fusion. In the Sprague-Dawley rat, the posterior frontal cranial suture normally undergoes fusion between 12 and 22 days of age, whereas all other cranial sutures remain patent. All in situ analyses of fusing posterior frontal sutures were compared with the patent, control, sagittal sutures. Posterior frontal and sagittal sutures, together with underlying dura, were harvested from rats at 8, 12, 16, and 35 days of postnatal life to analyze posterior frontal suture activity before, during, and after fusion. In situ hybridization was performed on frozen sections of these specimens using DNA probes specific for TGF-beta1, bFGF, and IL-6 mRNA. A negative control probe to IL-6 in the sense orientation was also used to validate the procedure. Cells expressing cytokine-specific mRNA were quantified (in cells positive per 10(-1) mm2) and analyzed using the unpaired Student's t test. Areas encompassing the fibrous suture and the surrounding bone plates were analyzed for cellular mRNA activity. IL-6 mRNA expression showed a minimal rise in the posterior frontal suture at days 12 and 16, with an average count of 10 and 6 cells per 10(-1) mm2, respectively. The sagittal suture remained negative for IL-6 mRNA at all time points. TGF-beta1 and bFGF analyses were most interesting, showing marked increases specifically in the posterior frontal suture during the time of active suture fusion. On postnatal day 8, a 1.5-fold increase in posterior frontal suture TGF-beta1 mRNA was found compared with sagittal sutures (p = 0.1890, unpaired Student's t test). This difference was increased 26-fold on day 12 in posterior frontal suture TGF-beta1 expression (p = 0.0005). By day 35, posterior frontal suture TGF-beta1 mRNA had nearly returned to prefusion levels, whereas TGF-beta1 mRNA levels in the sagittal suture remained low. A similar upregulation of bFGF mRNA, peaking at day 12, was observed in posterior frontal but not sagittal sutures (p = 0.0003). Furthermore, both TGF-beta1 and bFGF mRNA samples with intact dura showed an intense dural mRNA expression in the time preceding and during active posterior frontal suture fusion but not in sagittal tissues. Our data demonstrate that TGF-beta1 and bFGF mRNA are up-regulated in cranial suture fusion, possibly signaling in a paracrine fashion from dura to suture. TGF-beta1 and bFGF gene expression were dramatically increased both in and surrounding the actively fusing suture and followed the direction of fusion from endocranial to epicranial. These experimental data on bone growth factors support the recent human genetics data linking growth factor/fibroblast growth factor receptor deletions to syndromal craniosynostoses. The ultimate aim of these studies is to understand the underlying mechanisms regulating suture growth, development, and fusion so surgeons may one day manipulate the biology of premature cranial suture fusion.

Animals↗

Studies in cranial suture biology: regional dura mater determines overlying suture biology.

The influence of dura mater on adjacent cranial sutures is significant. By better understanding the mechanisms of normal suture fusion and the role of the dura mater, it may be possible to delineate the events responsible for the premature suture fusion seen in craniosynostosis. In the Sprague-Dawley rat, the posterior frontal suture normally fuses between 12 and 20 days of postnatal life and has proved to be an excellent model to describe normal suture fusion. The purpose of this study was to document the critical role that the dura mater-suture complex may play on cranial suture biology. Forty Sprague-Dawley rats at 8 days of age were divided into two groups of 20 animals each. The control group (group A) had surgical disruption of the dura mater-calvarial interface. This was accomplished by elevating a strip of cranium inclusive of the posterior frontal and sagittal sutures and replacement of the cranial strip back to its anatomic position, all with the dura mater left intact. The experimental group (group B) had the same calvarial elevation (strip craniectomy), but the sutural anatomy/alignment was rotated 180 degrees. This rotation placed the posterior frontal suture into the sagittal suture's anatomic position and the sagittal suture into the posterior frontal suture's anatomic position. All of these procedures were accomplished by leaving the underlying dura mater intact. Animals were killed at 20, 30, 40, and 50 days (12, 22, 32, and 42 days postoperatively), and tissue sections were examined with hematoxylin and eosin staining. Group A (control) showed normal but delayed suture activity. The posterior frontal suture fused, and the sagittal suture remained patent. Fusion was delayed, not beginning before 20 days (12 days postoperative) and showing complete fusion between 30 and 40 days. Group B (180-degree calvarial rotation) demonstrated that the suture in the posterior frontal anatomic position (actual sagittal suture) fused between 20 and 40 days, whereas the suture in the sagittal anatomic position (actual posterior-frontal suture) remained patent throughout the study. This study demonstrates that the location of the dura mater-suture complex is important in determining either suture patency or closure in this model. Normal closure of the suture overlying the posterior frontal dura mater demonstrates that the dura mater itself, or forces derived in specific cranial locations, determines the overlying suture biology.

Animals↗

The effect of suture anchor design and orientation on suture abrasion: An in vitro study.

PURPOSE: To evaluate the effects of suture anchor design and orientation on suture abrasion in a cyclic model. TYPE OF STUDY: In vitro. METHODS: Biomechanical studies have shown suture breakage to be a predominant mode of failure in a suture anchor repair construct. It is possible that suture abrasion during knot tying or in vivo cyclic loading may contribute to early failure. This study specifically investigates suture abrasion caused by 17 commonly used suture anchors and demonstrates the effects of suture anchor angulation and rotation on suture abrasion. To eliminate target tissue as a source of failure, all anchors were implanted into a solid block of sawbones material and tested with No. 2 Ethibond Excel sutures (Ethicon, Somerville, NJ). The testing model focused on 3 variables: suture anchor type, suture pull angle (SA) and angle of anchor rotation (RA). Abrasion testing was then performed on a servohydraulic materials testing system by continually cycling the suture back and forth through each anchor with an excursion of 4 cm at a rate of 0.5 Hz under a load of 10 N until suture failure occurred. RESULTS: Sutures performed significantly better when cycled in line with the anchor at 0 degrees SA with 0 degrees RA than they did at 45 degrees SA with 0 degrees RA or 45 degrees SA with 90 degrees RA. We found no significant difference between anchors tested at 45 degrees SA with 0 degrees RA and 45 degrees SA with 90 degrees RA. For tests performed using metallic suture anchors, all constructs failed by fraying of the suture. Constructs using biopolymer anchors and nonabsorbable polymeric anchors experienced a mixture of suture and anchor eyelet failures. CONCLUSIONS: In addition to the statistically significant detrimental effects of suture anchor angulation and rotation on suture abrasion, suture anchor eyelet design may also influence suture abrasion. Surgeons should be aware of the effects of anchor angulation, suture position in the eyelet, and design and composition of the eyelet to maximize the durability of the construct.

Biopolymers↗