View clinical trials related to Healthy.
Filter by:HF1K16 is an investigational pegylated liposome formulation of tretinoin for injection for the treatment of solid tumors through targeting myeloid derived suppressor cells (MDSCs). This phase 1 Trial is a Randomized, Double-Blind, Placebo-Controlled Study in Healthy Subjects to Evaluate the Safety, Tolerability and Pharmacokinetics of HF1K16.
The Ezra Faster Scan study uses non-invasive magnetic resonance imaging (MRI) technology that can "visually" detect early and late-stage cancer, and other pathologies. MRIs use a magnetic field and radio waves to create a 3-dimensional (3D) image of an individual's body without using ionizing radiation. The purpose of this research is to decrease the amount of time required by an individual to complete an early cancer screening comprehensive magnetic resonance imaging (MRI) scan, such as the Ezra Full Body MRI imaging scan. If the time required to conduct a comprehensive scan is reduced, the cost of the scan may also decrease. By decreasing consumer costs and time, more individuals may be able to afford MRI-based early cancer screening technology. Participants in this study will undergo a minimum 30-minute MRI session. These sessions will be used to evaluate new MRI "instructions" that allow for a faster MRI scan time. The images will also be used to develop mathematical models or machine learning tools that allow images to be enhanced. By enhancing images using machine learning, they may be restored to a quality typically observed in MRI sessions with longer scan (acquisition) times. To read more about the study, potential participants may review the informed consent form located below in the References section. Potential participants may email research.fasterscan@ezra.com, or call 516.340.1221. See study Eligibility Criteria below.
This study aims to compare measurements obtained through the e-VOG application (mobile application, usable on smartphones or tablets, to record eye movements) with measurements from the standard video-oculography device (Eye-Tracker®T2), in young athletes. This study also aims to correlate these measurements with volumetric data from cerebral imaging (if MRI done in routine care at the same period, more or less 1 month).
N,N-dimethyltryptamine (DMT) is a psychoactive substance with similar effects such as LSD or psilocybin. However, DMT is less well characterized than the latter substances. The present study is a modern randomized cross-over trial, investigating different continuous intravenous DMT dose rates over a broad dose range. Thus, different doses will be tested and related to subjective and autonomic effects.
This single-group pretest-posttest clinical trial aims to evaluate the effects of a single-session afforestation activity on mood, stress, and anxiety in a sample of adults.
The purpose of the pilot clinical trial described herein is to determine the level of ketone production [measured as β hydroxybutyrate (BHB)] following consumption of (R)-1,3-butanediol in a beverage and to record gastrointestinal (GI) symptomology, as well as any effects on alertness/sleepiness.
Human milk is the only source of iodine during early infancy and adequate iodine intake during lactation is necessary to assure optimal thyroid function in breastfed infants. However, the physiological requirement of iodine in lactating women is uncertain and recommendations for the daily dietary average requirement are poorly defined. WHO recommends iodine supplementation to lactating women in populations with incomplete coverage of iodized salt and deficient iodine intake, but the scientific evidence is weak and the optimal dose is uncertain. The primary objective is to assess the daily dietary average requirement for iodine in lactating women. Secondary objectives are to: - Estimate the daily average requirement for iodine in exclusively breastfed infants; - Assess the dose-response of dietary iodine supplements on breast milk iodine concentration in lactating women with adequate and inadequate habitual iodine intakes; - Estimate the maternal iodine intake required to provide exclusively breastfed infants with an adequate iodine intake via breast milk.
BI 1810631 trial formulation 1 (TF1) is currently used in clinical trials, but is planned to be replaced by another formulation (principle) in future clinical trials and on the market. This trial intends to bridge pharmacokinetics (PK) between the two formulation principles. For this, relative bioavailability of TF1 and new formulation (NF) is assessed. Moreover the trial intends to inform on the effect of food and of the proton pump inhibitor rabeprazole on the PK of BI 1810631 after administration as NF in order to inform management of food and concomitant medications.
The main purpose of this study is to evaluate the safety and tolerability of LY3541105 in healthy and overweight participants. Blood tests will be performed to check how much LY3541105 gets into the bloodstream and how long it takes the body to eliminate it. The study will also evaluate the effects of LY3541105 on body weight and assess safety and tolerability of LY3541105. This is a 3-part study and may last up to 15, 26 and 24 weeks for each participant and may include up to 7, 15 and 16 visits in parts A, B and C, respectively.
The current study evaluated the Pharmacokinetic (PK) drug-drug interaction (PK-DDI) of voriconazole with clarithromycin in healthy male volunteers. The drug interaction study was designed as a single oral dose, open-label, crossover, and randomized trial. In the first phase of the study, the principal investigator developed a high-performance-liquid chromatography (HPLC) method and validation according to standard ICH guidelines for the quantification of voriconazole in the biological matrix. During the second step, Enrolled volunteers were divided randomly into group A and group B by the "permuted block randomization" technique. Then, voriconazole either alone (2 x 200mg, tab, P/O) or in combination with clarithromycin (Voriconazole 2 x 200mg, tab + clarithromycin 500mg, tab, P/O) was administered to enrolled volunteers in two sequences. Finally, sample collection was carried out and blood samples were collected at specified time periods (i.e., 0.0 (pre-dose), 0.5, 1.0, 1.5, 2.0, 2.5, 3.0, 4.0, 6.0, 8.0, 12, and 24 hours) in EDTA or heparinized tubes from the enrolled human volunteers. Further processing of the sample was done for extractions and subsequent analysis with the developed analytical method.