There are about 11304 clinical studies being (or have been) conducted in Denmark. The country of the clinical trial is determined by the location of where the clinical research is being studied. Most studies are often held in multiple locations & countries.
Background: Gastrointestinal (GI) symptoms are overrepresented in patients with diabetes mellitus (DM) and often have a major impact on quality of life. Typical symptoms of diabetic enteropathy include abdominal pain, nausea, vomiting, diarrhoea, constipation, faecal incontinence, and bloating. Bowel symptoms in DM are usually caused by widespread dysfunction of the GI tract, but the exact pathophysiology remains incompletely understood. Within recent years, new methods for detailed assessment of GI motility have been developed. Hence, the electromagnetic 3D-Transit system is a safe, non-invasive method for detailed description of GI motility. The system tracks the exact position of an ingested electromagnetic capsule through the entire GI tract and provides detailed information on both regional transit- and contraction patterns. High Resolution Colonic Manometry (HRCM) allows extremely detailed description of contraction patterns in the colon. The HRCM is however an invasive method, as the catheter is placed during colonoscopy. HRCM has not previously been performed on diabetic patients and 3D-Transit has only been used sparingly. Study Objectives: The purpose of this study is to obtain detailed description of colonic contractions in patients with DM and gastrointestinal symptoms, especially during fast and after meals. Hypothesis: 1. Patients with DM and GI symptoms have reduced high-amplitude, antegrade contractions in the colon when compared to healthy controls (HRCM). 2. Patients with DM and GI symptoms have reduced long, fast mass-movements when compared to healthy controls (3D-Transit). 3. The contractile response to a meal is reduced in patients with symptoms of diabetic enteropathy when compared to healthy controls. Materials and methods: 20 patients with DM type 1 or 2 and GI symptoms will be investigated simultaneously HCRM and the 3D-Transit capsule. Data will be compared to the healthy from another study (CIV-19-05-028726). A colonoscopy is performed to install the HRCM catheter and place two 3D-Transit capsules within the colon. For 24 hours, the participants lie in a bed in the research lab while pressure changes from the HRCM catheter are recorded and the 3D-Transit capsules are followed through the gastrointestinal system. Perspectives: The study will add to the very limited data available on colonic dysfunction in DM.
Placement of implants in diabetic patients is associated with higher risk of implant failure and peri-implant marginal bone loss due to an increased susceptibility to infections, impaired wound healing and associated microvascular complications. However, diabetic patients do not encounter a higher implant failure rate compared with non-diabetic patients, if the plasma glucose levels are normal. Prosthetic rehabilitation of the posterior maxilla with implants is frequently compromised due to atrophy of the alveolar process and pneumatisation of the maxillary sinus. Maxillary sinus floor augmentation (MSFA) with autogenous bone graft is generally considered the preferred grafting material due to its osteoinductive, osteogenic, and osteoconductive properties. However, harvesting of autogenous bone graft is associated with risk of donor site morbidity and unpredictable resorption of the graft. Thus, bone substitutes, blood coagulum and platelet rich fibrin are used increasingly to simplify the surgical procedure. Fabrication of advanced platelet rich fibrin (APRF) from blood samples possess significant potential for bone regeneration without the use of additional autogenous bone grafts or bone substitutes. Consequently, use of APRF in conjunction with MSFA will avoid bone harvesting and simplify the surgical procedure. The objective is to test the H0-hypothesis of no difference in implant treatment outcome after MSFA with particulated autogenous bone graft compared with APRF. Forty consecutively insulin-dependent diabetes patients with missing posterior maxillary tooth/teeth will be allocated to implant placement and MSFA with particulated autogenous bone graft from the zygomatic buttress or APRF. Blood samples will be obtained preoperatively and postoperatively. Clinical and radiographical evaluation using periapical radiographs and CBCT will be performed preoperatively, immediate postoperatively, before abutment connection, after prosthetic rehabilitation, one year, three years and five years after loading to assess the implant treatment outcome and the volumetric changes of the augmented area. Outcome measures will include survival of suprastructures and implants, volumetric stability of the augmented area, peri-implant marginal bone level, immunological analyses of blood samples, oral health related quality of life, and complications related to the two treatment modalities.
This proof of concept study aims to evaluate the effects of applying ketone bodies to human atrial tissue biopsies using an atrial strips model and high resolution respirometry.
UPRIGHT-HTM will compare risk stratification, treatment efficiency and health economic outcomes of a diagnostic approach based on home blood pressure telemonitoring combined with urinary proteomic profiling with home blood pressure telemonitoring alone
In part 1 of the study, fourteen able-bodied individuals will undergo maximal, voluntary contraction (MVC) test of the lower limbs in two dynamometers. One being a low-cost dynamometer (S2P-CD), and the other being a gold standard dynamometer (HUMAC). Thereby the investigators will be able to assess the validity of the S2P-CD. In part 2 of the study, eighteen persons with spinal cord injury will undergo MVC twice in the S2P-CD. Thereby the investigators will be able to assess the reliability of the measurements of the S2P-CD.
A prospective, non-blinded, randomized controlled trial with the purpose of investigating, whether preoperative electrical clipping of body hair affects the risk of intraoperative contamination. The primary investigators hypothesis is this: Preoperative electrical clipping of body hair in the operative field lowers the risk of intraoperative contamination. 200 male participants, 18 years or older, with a planned primary knee replacement surgery, will be enrolled. During surgery, four microbiological samples will be taken from each participant. The primary outcome is whether there is intraoperative contamination of the surgical site or not, determined by identification of any grown bacteria from the samples. If this study finds, that the contamination rate is lowered by preoperative electrical clipping of body hair, it will provide a cost-effective method of reducing the risk of intraoperative contamination and consequent postoperative infection, a solid argument for a change of current guidelines for preoperative hair removal, and provide additional information pointing towards body hair as a possible explanation for the increased infection rate in men.
The study is a prospective, randomized, controlled, intra-person split-face trial with blinded evaluations. The objective is to compare efficacy and adverse effects of ablative fractional CO2 laser resurfacing versus radio-frequency microneedling for treatment of atrophic acne scars in the facial area. Two comparable areas with acne scars on each side of the face are treated. One area will be treated with fractional CO2 laser and the other area with radio-frequency microneedling. Outcome measures will be assessed by blinded investigators and included subjects at baseline before treatment and at follow-up visits 2-4 days and 1 and 3 months post-treatment. On-site assessment and OCT will be performed at the time of the visits. OCT scans will be offered to the subjects and are optional. Clinical photos are used for documentation. 15 participants will be recruited. The participants will be recruited to enter the trial in the clinic by investigators at the Department of Dermatology, Bispebjerg Hospital, and must meet the inclusion criteria (at least 18 years of age, acne scars in the facial area, comparable atrophic acne scars on each side of the face, fitzpatrick skintype I-III) to be eligible to enter the study. No personal remuneration will be awarded the investigators. None of the collaborators have any personal economic interest in the study. Participants will not receive remuneration. All treatments are performed at the Department of Bispebjerg Hospital and patients are covered by the Hospital's patient insurance. The declaration of Helsinki will be respected as well as the standards of good clinical research. Respect for privacy as well as physically and mentally integrity of the participants will be maintained. The study will be performed in accordance with Danish Health care authorities.
Background: Within recent years, new methods for detailed assessment of gastrointestinal (GI) motility have been developed. Hence, the electromagnetic 3D-Transit system is a safe, non-invasive method for detailed description of GI motility. The system tracks the exact position of an ingested electromagnetic capsule through the entire GI tract and provides detailed information on both regional transit- and contraction patterns. High Resolution Colonic Manometry (HRCM) allows extremely detailed description of contraction patterns in the colon. The HRCM is however an invasive method, as the catheter is placed during colonoscopy. Before widespread use of capsule-based techniques (3D-Transit or others), the system needs to be validated by another method. Study Objectives: The purpose of this study is to investigate weather pressure changes measured by HRCM correlate with passage patterns recorded by 3D-Transit. This has been assumed so far, but has never been further investigated. Hypothesis: Movement of the electromagnetic 3D-Transit capsule within the colon correspond well with pressure changes determined with HRCM. Materials and methods: HRCM and 3D-transit will be performed simultaneously in 20 healthy participants. A colonoscopy is performed to install the HRCM catheter and place two 3D-Transit capsules within the colon. For 24 hours, the participants lie in a bed in the research lab while pressure changes from the HRCM catheter are recorded and the 3D-Transit capsules are followed through the gastrointestinal system. Perspectives: If data from the 3D-Transit technique correlate well with HRCM, the method provide a non-invasive alternative allowing detailed assessment of colonic motility.
Sleep and rest are key elements in postoperative rehabilitation and recovery. There are complex relations between major surgery, sleep disturbance and complications. Major surgery leeds to severe postoperative sleep disturbances, initially reducing REM sleep time and disturbing the remaining sleep stages. Major surgery is again a risk factor for postoperative delirium and other cognitive impairment. The underlying mechanisms includes pain, opioid medication, sleep disturbances and neuroinflammation, along with external factors as noise during hospitalisation. The physiologic stress from sleep disturbances and sleep deprivation is associated with blood-brain barrier impairment, inflammation, decreased restitution, altered nociceptive function. Likewise, undiagnosed and untreated sleep apnea is a risk for postoperative complications and is itself affected by anesthesia and some analgesics (i.a. opioids). Fast-track surgery development has led to restitution period shortening, optimized pain management reducing opioid use, postoperative inflammatory stress response reduction and less delirium. Evolution of hip and knee arthroplasty(THA/TKA), organisation, optimized pain management and pharmacologic modification of inflammatory response by high dose steroid has permitted to perform these surgeries in an outpatient setting. Previous studies of fast-track THA/TKA using multimodal opioid-sparring analgesia, however neither using high dose steroids nor in an out patient setting, have demonstrated REM sleep period reduction from a normal range of 18% preoperatively to 1% postoperatively. However, changes in sleep architecture after THA/TKA in at setting attempting to minimise abnormal sleep by means of ambulatory surgery added to perioperative reduction of inflammatory response to surgery, pain and opioid use by high dose steroid, haven't been studied. The purpose of this study is to investigate how much an optimized ambulatory THA/TKA , reducing pain and inflammatory response to surgery and opioid use by high doses steroid can conserve the preoperative sleep architecture.
This study sets out to investigate the potential effect of auditory disturbances on human movement