The Experts below are selected from a list of 44712 Experts worldwide ranked by ideXlab platform
Clive P. Duncan - One of the best experts on this subject based on the ideXlab platform.
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SILENT TRUNNION CORROSION: WHAT SURGEONS NEED TO KNOW IN 2016
2018Co-Authors: Clive P. DuncanAbstract:It is now well recognised that adverse local tissue reaction (so called pseudotumor or ALTR) may follow the use of metal-on-metal arthroplasty, the source of the metal being the Primary Bearing sur...
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SILENT TRUNNION CORROSION: WHAT SURGEONS NEED TO KNOW IN 2016
Journal of Bone and Joint Surgery-british Volume, 2017Co-Authors: Clive P. DuncanAbstract:It is now well recognised that adverse local tissue reaction (so called pseudotumor or ALTR) may follow the use of metal-on-metal arthroplasty, the source of the metal being the Primary Bearing surface (the articulation itself) or a modular junction within the construct, such as the trunnion. This is more likely seen if a large femoral head has been used. We are aware of this risk and have implemented surveillance systems worldwide to facilitate its early diagnosis and prompt management. Less well known, and silent in its initial development, is adverse local reaction following metal-on-polyethylene hip replacement. Initially the problem is unknown to the patient and the surgeon. Typically there follows unexplained pain (due to synovitis), loss of motion, sometimes the development of a mass, followed by increasing dysfunction as the inflammatory, destructive process invades the surrounding soft tissues. Radiographic features are late to follow (focal osteolysis), unless cross-sectional imaging is considered (ultrasound and/or metal suppressed MRI) early in the process. Serum metal ions are an important adjunct in its diagnosis, and it is now acknowledged that the previously used level of 7 ppb is much higher than that required to recognise the entity. Typically there is a reverse of the usual CrCo ratio, and a recent study has suggested that a raised serum Co alone is adequate to assist in the diagnosis Four important lessons have been learned at our center in recent years and will be demonstrated in this case-based presentation designed for surgeons in practice. It is hoped that the cases and supportive literature will prove useful in advancing the early diagnosis of this troublesome and often silent condition.
Joshua J Jacobs - One of the best experts on this subject based on the ideXlab platform.
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Accumulation in liver and spleen of metal particles generated at nonBearing surfaces in hip arthroplasty.
The Journal of arthroplasty, 2004Co-Authors: Robert M Urban, Michael J Tomlinson, Deborah J Hall, Joshua J JacobsAbstract:Systemic migration of metal particles generated at nonBearing surfaces rather than the intended Primary Bearing was studied in postmortem specimens from 30 patients with total hip arthroplasty. Using light and electron microscopy with x-ray microanalysis, submicrometer metal particles were identified within macrophages in the liver and/or the spleen in 11 of 15 patients with a revised arthroplasty and in 2 of 15 patients with Primary hip arthroplasty. The macrophages formed focal aggregates in the organs without apparent toxicity. Fretting at ancillary fixation devices, loose components, and modular connections can generate a substantial volume of debris. These particles are in addition to those generated at the Bearing surfaces, further increasing both the local and systemic particulate burdens. While all components can be associated with the distant spread of particles and metal ions, it is the environment of revision arthroplasty that provides the greatest potential for the generation and systemic dissemination of wear debris. The long-term effects of accumulated wear particles in the liver and spleen are unknown.
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dissemination of wear particles to the liver spleen and abdominal lymph nodes of patients with hip or knee replacement
Journal of Bone and Joint Surgery American Volume, 2000Co-Authors: Robert M Urban, Michael J Tomlinson, Joshua J Jacobs, John Gavrilovic, Jonathan Black, Michel PeochAbstract:Background: The importance of particles generated by wear and corrosion of joint replacement prostheses has been understood primarily in the context of the local effects of particle-induced periprosthetic osteolysis and aseptic loosening. We studied dissemination of wear particles in patients with total hip and knee replacement to determine the prevalence of and the histopathological response to prosthetic wear debris in the liver, spleen, and abdominal para-aortic lymph nodes. Methods: Postmortem specimens from twenty-nine patients and biopsy specimens from two living patients with a failed replacement were analyzed. Specimens of tissue obtained from the cadavera of fifteen patients who had not had a joint replacement served as controls. The concentration of particles and the associated tissue response were characterized with the use of light microscopy of stained histological sections. Metallic particles were identified by electron microprobe analysis. Polyethylene particles were studied with the use of oil-red-O stain and polarized light microscopy. The composition of polyethylene particles was confirmed in selected cases by Fourier transform infrared spectroscopy and hot-stage thermal analysis. Twenty-one of the patients studied post mortem had had a Primary total joint replacement. Eleven of them had had a hip prosthesis for a mean of sixty-nine months (range, forty-three to 171 months), and ten had had a knee replacement for a mean of eighty-four months (range, thirty-one to 179 months). The other eight patients studied post mortem had had a hip replacement in which one or more components had loosened and had been revised. The mean time between the initial arthroplasty and the time of death was 174 months (range, forty-seven to 292 months), and the mean time between the last revision procedure and the time of death was seventy-one months (range, one to 130 months). Results: Metallic wear particles in the liver or spleen were more prevalent in patients who had had a failed hip arthroplasty (seven of eight) than in patients who had had a Primary hip (two of eleven) or knee replacement (two of ten). The principal source of wear particles in the majority of these patients involved secondary nonBearing surfaces rather than wear between the two Primary Bearing surfaces as intended. In one living patient, dissemination of titanium alloy particles from a hip prosthesis with mechanical failure was associated with a visceral granulomatous reaction and hepatosplenomegaly, which required operative and medical treatment. Metallic wear particles were detected in the para-aortic lymph nodes in 68 percent (nineteen) of the twenty-eight patients with an implant from whom lymph nodes were available for study. In 38 percent (eleven) of all twenty-nine patients with an implant who were studied post mortem, metallic particles had been further disseminated to the liver or spleen, where they were usually found within small aggregates of macrophages occurring as infiltrates without apparent pathological importance. Polyethylene particles elicited a similar response. They were identified in the para-aortic lymph nodes of 68 percent (nineteen) of the twenty-eight patients and the liver or spleen of 14 percent (four) of the twenty-nine patients. The majority of the disseminated wear particles were less than one micrometer in size. Currently available methods lack the sensitivity and specificity necessary to detect very low concentrations of submicrometer polyethylene particles and probably underestimated the prevalence of polyethylene wear debris in the liver and spleen. Conclusions: In this study, systemic distribution of metallic and polyethylene wear particles was a common finding, both in patients with a previously failed implant and in those with a Primary total joint prosthesis. The prevalence of particles in the liver or spleen was greater after reconstructions with mechanical failure. In the majority of patients, the concentration of wear particles in these organs was relatively low and without apparent pathological importance. However, in one rare case, granulomas formed in the liver, spleen, and abdominal lymph nodes in response to heavy accumulation of wear debris from a hip prosthesis with mechanical failure and compromised hepatic function. Clinical Relevance: These findings underscore the necessity of minimizing the production of particulate debris by joint replacement devices and the need for the surgeon to consider expeditious revision in patients in whom large amounts of particulate debris may be generated. Serum and urine trace-metal analyses may provide early confirmation of failure and aid in the timing of a revision operation in a patient with a symptomatic or failed device.
Robert M Urban - One of the best experts on this subject based on the ideXlab platform.
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Accumulation in liver and spleen of metal particles generated at nonBearing surfaces in hip arthroplasty.
The Journal of arthroplasty, 2004Co-Authors: Robert M Urban, Michael J Tomlinson, Deborah J Hall, Joshua J JacobsAbstract:Systemic migration of metal particles generated at nonBearing surfaces rather than the intended Primary Bearing was studied in postmortem specimens from 30 patients with total hip arthroplasty. Using light and electron microscopy with x-ray microanalysis, submicrometer metal particles were identified within macrophages in the liver and/or the spleen in 11 of 15 patients with a revised arthroplasty and in 2 of 15 patients with Primary hip arthroplasty. The macrophages formed focal aggregates in the organs without apparent toxicity. Fretting at ancillary fixation devices, loose components, and modular connections can generate a substantial volume of debris. These particles are in addition to those generated at the Bearing surfaces, further increasing both the local and systemic particulate burdens. While all components can be associated with the distant spread of particles and metal ions, it is the environment of revision arthroplasty that provides the greatest potential for the generation and systemic dissemination of wear debris. The long-term effects of accumulated wear particles in the liver and spleen are unknown.
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dissemination of wear particles to the liver spleen and abdominal lymph nodes of patients with hip or knee replacement
Journal of Bone and Joint Surgery American Volume, 2000Co-Authors: Robert M Urban, Michael J Tomlinson, Joshua J Jacobs, John Gavrilovic, Jonathan Black, Michel PeochAbstract:Background: The importance of particles generated by wear and corrosion of joint replacement prostheses has been understood primarily in the context of the local effects of particle-induced periprosthetic osteolysis and aseptic loosening. We studied dissemination of wear particles in patients with total hip and knee replacement to determine the prevalence of and the histopathological response to prosthetic wear debris in the liver, spleen, and abdominal para-aortic lymph nodes. Methods: Postmortem specimens from twenty-nine patients and biopsy specimens from two living patients with a failed replacement were analyzed. Specimens of tissue obtained from the cadavera of fifteen patients who had not had a joint replacement served as controls. The concentration of particles and the associated tissue response were characterized with the use of light microscopy of stained histological sections. Metallic particles were identified by electron microprobe analysis. Polyethylene particles were studied with the use of oil-red-O stain and polarized light microscopy. The composition of polyethylene particles was confirmed in selected cases by Fourier transform infrared spectroscopy and hot-stage thermal analysis. Twenty-one of the patients studied post mortem had had a Primary total joint replacement. Eleven of them had had a hip prosthesis for a mean of sixty-nine months (range, forty-three to 171 months), and ten had had a knee replacement for a mean of eighty-four months (range, thirty-one to 179 months). The other eight patients studied post mortem had had a hip replacement in which one or more components had loosened and had been revised. The mean time between the initial arthroplasty and the time of death was 174 months (range, forty-seven to 292 months), and the mean time between the last revision procedure and the time of death was seventy-one months (range, one to 130 months). Results: Metallic wear particles in the liver or spleen were more prevalent in patients who had had a failed hip arthroplasty (seven of eight) than in patients who had had a Primary hip (two of eleven) or knee replacement (two of ten). The principal source of wear particles in the majority of these patients involved secondary nonBearing surfaces rather than wear between the two Primary Bearing surfaces as intended. In one living patient, dissemination of titanium alloy particles from a hip prosthesis with mechanical failure was associated with a visceral granulomatous reaction and hepatosplenomegaly, which required operative and medical treatment. Metallic wear particles were detected in the para-aortic lymph nodes in 68 percent (nineteen) of the twenty-eight patients with an implant from whom lymph nodes were available for study. In 38 percent (eleven) of all twenty-nine patients with an implant who were studied post mortem, metallic particles had been further disseminated to the liver or spleen, where they were usually found within small aggregates of macrophages occurring as infiltrates without apparent pathological importance. Polyethylene particles elicited a similar response. They were identified in the para-aortic lymph nodes of 68 percent (nineteen) of the twenty-eight patients and the liver or spleen of 14 percent (four) of the twenty-nine patients. The majority of the disseminated wear particles were less than one micrometer in size. Currently available methods lack the sensitivity and specificity necessary to detect very low concentrations of submicrometer polyethylene particles and probably underestimated the prevalence of polyethylene wear debris in the liver and spleen. Conclusions: In this study, systemic distribution of metallic and polyethylene wear particles was a common finding, both in patients with a previously failed implant and in those with a Primary total joint prosthesis. The prevalence of particles in the liver or spleen was greater after reconstructions with mechanical failure. In the majority of patients, the concentration of wear particles in these organs was relatively low and without apparent pathological importance. However, in one rare case, granulomas formed in the liver, spleen, and abdominal lymph nodes in response to heavy accumulation of wear debris from a hip prosthesis with mechanical failure and compromised hepatic function. Clinical Relevance: These findings underscore the necessity of minimizing the production of particulate debris by joint replacement devices and the need for the surgeon to consider expeditious revision in patients in whom large amounts of particulate debris may be generated. Serum and urine trace-metal analyses may provide early confirmation of failure and aid in the timing of a revision operation in a patient with a symptomatic or failed device.
Michael J Tomlinson - One of the best experts on this subject based on the ideXlab platform.
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Accumulation in liver and spleen of metal particles generated at nonBearing surfaces in hip arthroplasty.
The Journal of arthroplasty, 2004Co-Authors: Robert M Urban, Michael J Tomlinson, Deborah J Hall, Joshua J JacobsAbstract:Systemic migration of metal particles generated at nonBearing surfaces rather than the intended Primary Bearing was studied in postmortem specimens from 30 patients with total hip arthroplasty. Using light and electron microscopy with x-ray microanalysis, submicrometer metal particles were identified within macrophages in the liver and/or the spleen in 11 of 15 patients with a revised arthroplasty and in 2 of 15 patients with Primary hip arthroplasty. The macrophages formed focal aggregates in the organs without apparent toxicity. Fretting at ancillary fixation devices, loose components, and modular connections can generate a substantial volume of debris. These particles are in addition to those generated at the Bearing surfaces, further increasing both the local and systemic particulate burdens. While all components can be associated with the distant spread of particles and metal ions, it is the environment of revision arthroplasty that provides the greatest potential for the generation and systemic dissemination of wear debris. The long-term effects of accumulated wear particles in the liver and spleen are unknown.
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dissemination of wear particles to the liver spleen and abdominal lymph nodes of patients with hip or knee replacement
Journal of Bone and Joint Surgery American Volume, 2000Co-Authors: Robert M Urban, Michael J Tomlinson, Joshua J Jacobs, John Gavrilovic, Jonathan Black, Michel PeochAbstract:Background: The importance of particles generated by wear and corrosion of joint replacement prostheses has been understood primarily in the context of the local effects of particle-induced periprosthetic osteolysis and aseptic loosening. We studied dissemination of wear particles in patients with total hip and knee replacement to determine the prevalence of and the histopathological response to prosthetic wear debris in the liver, spleen, and abdominal para-aortic lymph nodes. Methods: Postmortem specimens from twenty-nine patients and biopsy specimens from two living patients with a failed replacement were analyzed. Specimens of tissue obtained from the cadavera of fifteen patients who had not had a joint replacement served as controls. The concentration of particles and the associated tissue response were characterized with the use of light microscopy of stained histological sections. Metallic particles were identified by electron microprobe analysis. Polyethylene particles were studied with the use of oil-red-O stain and polarized light microscopy. The composition of polyethylene particles was confirmed in selected cases by Fourier transform infrared spectroscopy and hot-stage thermal analysis. Twenty-one of the patients studied post mortem had had a Primary total joint replacement. Eleven of them had had a hip prosthesis for a mean of sixty-nine months (range, forty-three to 171 months), and ten had had a knee replacement for a mean of eighty-four months (range, thirty-one to 179 months). The other eight patients studied post mortem had had a hip replacement in which one or more components had loosened and had been revised. The mean time between the initial arthroplasty and the time of death was 174 months (range, forty-seven to 292 months), and the mean time between the last revision procedure and the time of death was seventy-one months (range, one to 130 months). Results: Metallic wear particles in the liver or spleen were more prevalent in patients who had had a failed hip arthroplasty (seven of eight) than in patients who had had a Primary hip (two of eleven) or knee replacement (two of ten). The principal source of wear particles in the majority of these patients involved secondary nonBearing surfaces rather than wear between the two Primary Bearing surfaces as intended. In one living patient, dissemination of titanium alloy particles from a hip prosthesis with mechanical failure was associated with a visceral granulomatous reaction and hepatosplenomegaly, which required operative and medical treatment. Metallic wear particles were detected in the para-aortic lymph nodes in 68 percent (nineteen) of the twenty-eight patients with an implant from whom lymph nodes were available for study. In 38 percent (eleven) of all twenty-nine patients with an implant who were studied post mortem, metallic particles had been further disseminated to the liver or spleen, where they were usually found within small aggregates of macrophages occurring as infiltrates without apparent pathological importance. Polyethylene particles elicited a similar response. They were identified in the para-aortic lymph nodes of 68 percent (nineteen) of the twenty-eight patients and the liver or spleen of 14 percent (four) of the twenty-nine patients. The majority of the disseminated wear particles were less than one micrometer in size. Currently available methods lack the sensitivity and specificity necessary to detect very low concentrations of submicrometer polyethylene particles and probably underestimated the prevalence of polyethylene wear debris in the liver and spleen. Conclusions: In this study, systemic distribution of metallic and polyethylene wear particles was a common finding, both in patients with a previously failed implant and in those with a Primary total joint prosthesis. The prevalence of particles in the liver or spleen was greater after reconstructions with mechanical failure. In the majority of patients, the concentration of wear particles in these organs was relatively low and without apparent pathological importance. However, in one rare case, granulomas formed in the liver, spleen, and abdominal lymph nodes in response to heavy accumulation of wear debris from a hip prosthesis with mechanical failure and compromised hepatic function. Clinical Relevance: These findings underscore the necessity of minimizing the production of particulate debris by joint replacement devices and the need for the surgeon to consider expeditious revision in patients in whom large amounts of particulate debris may be generated. Serum and urine trace-metal analyses may provide early confirmation of failure and aid in the timing of a revision operation in a patient with a symptomatic or failed device.
Thomas K. Fehring - One of the best experts on this subject based on the ideXlab platform.
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What Is The Cost-Effective Bearing Surface Choice In Primary Total Hip Arthroplasty
Value in Health, 2015Co-Authors: Keith James Carnes, Susan M. Odum, Jennifer L. Troyer, Thomas K. FehringAbstract:The Primary Bearing surface combination since the advent of total hip arthroplasty (THA) in the 1960s has been a metal femoral head with a polyethylene acetabular cup (MoP). Design efforts to improve THA implant life have focused on ceramic-on-ceramic (CoC) and metal-onmetal (MoM) Bearings. As these surfaces permeated the market, significant clinical problems were seen with each. This is leading to a market shift toward ceramic-on-polyethylene (CoP) Bearings, based on laboratory and in vivo wear studies that predict longer useful life in patient populations. The Primary clinical measurement of THA success is the long-term replacement (revision) rate of the original hip implant. Sufficient information on the key parameter, long term revision rate, is just beginning to be available.