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News from IPD
IPD and Hedon Electronic development awarded with MIT collaboration grant
IPD, https://ipd.health and #Hedon Electronics development awarded with MIT collaboration grant of €200k from province of Zuid-Holland, The Netherlands to develop and expand the portfolio
IPD uses Ansys engineering simulation software
For more than 50 years, Ansys software has enabled innovators across industries to push boundaries with the predictive power of simulation. From sustainable transportation and
Induction technology presented at ATiO meeting in Berlin.
I want to thank the Alliance for Advanced Therapies in Orthopaedics Conference 2023 held in Berlin, #ATiO, for giving IPD the opportunity to present our technology by prof.
IPD CEO Richard van de Wateringen and Prof.dr. R.Nelissen presented at the EFORT 2023 meeting in Vienna
At #efort2023 congres in Vienna, prof.dr. Rob Nelissen and Richard van de Wateringen, CEO IPD, had the pleasure to present IPD (https://ipd.health), the non-contact induction technology to treat PJI (an
Orthopaedic department LUMC meets IPD shareholders
Last week IPD and the Orthopaedic department LUMC, Leiden had the honour and pleasure to host the clinical meeting in LUMC Leiden for shareholders of
IPD secures funding of €2.100.000 to initiate its clinical study for treating hip implant infections.
IPD B.V. (Implant Preservation Devices), a Dutch startup specialising in the treatment of prosthetic joint infections, raised €2.1 million in its seeding round, which closed Friday
Publications
A radio- and fluorescently labelled tracer for imaging and quantification of bacterial infection on orthopaedic prostheses
A helpful and promising tool to locate the parts to be treated with IPD’s induction technology AimsArthroplasty surgery of the knee and hip is performed
Effectiveness of mechanical cleaning,
antibiotics, and induction heating on
eradication of Staphylococcus aureus in
mature biofilms
Here we used a mature seven- day biofilm model of Staphylococcus aureus, exposed to anti-biotics up to an additional seven days, to establish the effectiveness
Synergistic effects of Non Contact Induction Heating & Antibiotics on Staphylococcus aureus Biofilm
Staphylococcus aureus is a major cause of prosthetic joint infection (PJI) in which it forms adherent biofilms, thick aggregates of extracellular polymeric substances (EPS) produced by
NON-CONTACT INDUCTION HEATING AND SAAP-148 ELIMINATE PERSISTERS WITHIN MRSA BIOFILMS MIMICKING A METAL IMPLANT INFECTION
Implant-associated infections are the primary cause of complications following orthopaedic surgery. Dueto biofilm and persister formation, current treatments, i.e. surgical debridement followed by antibiotics,often fail.
Are infectious diseases and microbiology new fields for thermal therapy research?
Antimicrobial chemotherapy and surgery are classical methods for treating infectious diseases. However, there is a need for alternative methods to cure infections caused by antibiotic-resistant
Non-contact electromagnetic induction heating for eradicating bacteria and yeasts on biomaterials and possible relevance to orthopaedic implant infections
Infection of implants is a major problem in elective and trauma surgery. Heating is an effective way to reduce the bacterial load in food preparation,