Kinematic evaluation of cruciate-retaining total knee replacement patients during level walking: A comparison with the displacement-controlled ISO standard.
J Biomech. 2009 Aug 1; Ngai V, Wimmer MADifferences between wear-scar features of simulator-tested and retrieved tibial total knee replacement (TKR) liners have been reported. This disagreement may result from differences between in vivo kinematic profiles and those defined by the International Organization for Standardization (ISO). The purpose of this study was to determine the knee kinematics of a TKR subject group during level walking and compare them with the motion profiles defined by the ISO standard for a displacement-controlled knee wear testing simulator. Twenty-nine patients with a posterior cruciate ligament-retaining TKR design were gait tested using the point cluster technique to obtain flexion-extension (FE) rotation, anterior-posterior (AP) translation and internal-external (IE) rotation knee motions during a complete cycle of level walking. Relative ranges of motion and timing of key points within the in vivo motion data were compared against the same ranges and same key points from the input profiles of the displacement-controlled wear testing standard ISO14243-3. The subjects exhibited a FE pattern similar to ISO, with an insignificant difference in range of FE rotation from midstance to terminal stance. However, the subjects had a significantly higher range of knee flexion from terminal stance into swing. The subjects also exhibited a phase delay for the entire gait cycle. For AP translation, the standard profile had statistically significant lower magnitudes than seen in vivo. Opposite pattern of AP motion was also apparent from midstance and swing. Similarly, ISO specified a smaller IE total range of rotation with a motion pattern in complete opposition to that seen in vivo. In conclusion, significant differences were found in both the magnitudes and pattern of in vivo motion compared with ISO.
[Augmentation of quality of wound healing of deep burn]
Zhonghua Shao Shang Za Zhi. 2009 Feb; 25(1): 3-5Huang XYThis article summarizes methods of repair of massive and deep wounds, elucidates how to improve wound healing quality and avoid scar deformity after deep burn. A part of denatured dermis (non-necrotic) in deep partial-thickness burn, "mixed degree" burn, even in full-thickness burn wounds before forming eschar can be preserved and covered with autologous skin, thereby to avoid secondary damage to the structure of subcutaneous tissue and the junction of dermis-adipose, thus to result in good functions, appearance, and survival rate. After skin grafting, wound healing quality and appearance are improved, joint function and elasticity of skin are enhanced, the degree of scar contracture is relieved due to preservation of normal adipose tissue after escharectomy. The study of composite artifical skin will be actively developed in the future. Tissue-engineering skin and stem cells can be successfully used in patients with deep burns for scarless healing with restoration of physiological functions in a short period.
Natural Orifice Surgery: the next step in minimal invasiveness towards no scar surgery.
Minerva Chir. 2009 Aug; 64(4): 355-64Forgione AThe possibility to operate into the abdominal cavity by means of flexible endoscopes introduced through natural orifices represents a major step forward in the continuous research for minimal invasive treatment attaining the unimaginable goal of no scar surgery. After several years of investigation in experimental settings, natural orifice surgery is becoming a valuable therapeutic option both as totally transluminal endoscopic approach or with the support of minimal transabdominal assistance. The promising operative results and the great interest determined among the patients always looking for effective treatment associated with less bodily trauma, postoperative pain and faster recovery, are pushing the development of dedicated technological solutions that will make natural orifice - no scar surgery more easy and reproducible to perform and applicable also to more advanced diseases. Natural orifice surgery has the potential to abolish the historical association of surgery to that of scar and pain representing a very appealing surgical option for the patients highly respectful of their body and psychological integrity.
Wound healing in the jugal mucosa of rats with a cold blade scalpel and an ultrasonic harmonic scalpel.
Braz J Otorhinolaryngol. 2009 May-Jun; 75(3): 362-6Masi EC, Rocha SL, Mocellin M, Faria JLUltrasound harmonic scalpel has been recently introduced in otorhinolaryngological procedures. AIM: to assess macro and microscopic evolution of the healing process of wounds created in the jugal mucosa of rats by the use of ultrasound scalpel. METHOD: we used 30 Wistar rats in which we made mucosal incisions on the right jugal mucosa with the ultrasound harmonic scalpel (USHS) and on the left side with the cold blade scalpel (CBS). Macroscopic and microscopic evaluations were carried out on the third, seventh and fourteenth days of postoperative. For the microscopic evaluation we used HE to asses the inflammatory process and the Sirius Red approach for collagens type I and III. Anti-CD 3 antibodies and anti-factor VIII assessed the concentration of T-lymphocytes and neovessels. RESULTS: the USHS caused greater cell damage with reepitelization delay. Microscopy showed more intense inflammatory reactions and a loss in collagen build up, delay in scar maturation and a greater vessel neoformation. CONCLUSION: USHS brings about a greater lesion in the incision area; delayed regeneration; promotes greater inflammatory process and angiogenic activity; delays in fibroplasia and scar tissue maturation on the rats' jugal mucosa when compared to cold blade scalpel.