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ShareScore release 0.9.0
Dataset results
108 results for “Volume Change”
Soft Tissue Volume Changes After Immediate Implants With Two Different Techniques
ClinicalTrials.gov study NCT04803110. IPD Sharing: NO. Countries: 1. Publications: 14.
Changes of the Upper Airway Volume After Orthognathic Surgery
ClinicalTrials.gov study NCT05060133. IPD Sharing: NO. Countries: 1. Publications: 7.
Soft Tissue Volume Changes in Posterior Socket Sealing Abutment.
ClinicalTrials.gov study NCT05722041. IPD Sharing: UNDECIDED. Countries: 1. Publications: 9.
Peri-implant Soft Tissue Volume Changes at Small Buccal Dehiscences
ClinicalTrials.gov study NCT05466006. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Predictive Ability of PEEP Induced Changes in CVP to Predict Volume Responsiveness in Mechanically Ventilated Patients After Major Abdominal Surgery
ClinicalTrials.gov study NCT04191408. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
Real-time Pressure Volume Loop Monitoring as a Guide for Enhanced Understanding of Changes in Elemental Cardiovascular Physiology During Therapeutic Strategies Aiming for Hemodynamic Optimization. Coh
ClinicalTrials.gov study NCT06204783. IPD Sharing: NO. Countries: 1. Publications: 1.
Changes in Pituitary Iron and Volume With Deferasirox
ClinicalTrials.gov study NCT01376622. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Changes in Pleural Cavity Volume and Surgical Exposure
ClinicalTrials.gov study NCT04837950. IPD Sharing: NO. Countries: 1. Publications: 1.
Changes of Pulse Pressure Variation Duing Tidal Volume Challenge in Patients With Spontaneous Breathing
ClinicalTrials.gov study NCT04369027. IPD Sharing: UNDECIDED. Countries: 1. Publications: 2.
Ability of Changes in End Tidal Carbon Dioxide to Assess the Stroke Volume Effects of a Volume Expansion of 250ml of Crystalloid in the Operating Room
ClinicalTrials.gov study NCT03635307. IPD Sharing: NO. Countries: 1. Publications: 1.
Change in the Ratio of Mean Platelet Volume (MPV) to Platellet(PLT) in Covid-19 Pneumonia Patients
ClinicalTrials.gov study NCT04408378. IPD Sharing: UNDECIDED. Countries: 1. Publications: 3.
Effect of the Minimum Bronchial Cuff Volume of Left-sided Double-lumen Endotracheal Tube for One-lung Ventilation on the Change of the Bronchial Cuff Pressure During Lateral Positioning in Thoracic Su
ClinicalTrials.gov study NCT05222568. IPD Sharing: Not stated. Countries: 1. Publications: 7.
Comparison of Pain-Related Changes in Cerebral Blood Volume in Burn Patients With Neuropathic Pain
ClinicalTrials.gov study NCT04125576. IPD Sharing: NO. Countries: 1. Publications: 2.
Heteromeric Slick/Slack K+ channels show graded sensitivity to cell volume changes
<p>Figure 1, 2, 3 and 4 raw datasets. Supplementary Figure raw data also available</p>
Figure 6 from: Nako J-D, Lee NS, Wright JC (2018) Water vapor absorption allows for volume expansion during molting in Armadillidium vulgare and Porcellio dilatatus (Crustacea, Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 459-479. https://doi.org/10.3897/zookeys.801.23344
Figure 6 Mean measured (blue) and expected (red) values for hemolymph osmolality in Armadillidiumvulgare during molting in 100 % RH. Expected values are derived from the product of the mean intermolt osmolality (green symbols) and the proportional changes in blood volume over the molt cycle (see text). Bars show ± 1 SEM with sample sizes. Molt stages as in Figs 1–4. Asterisks denote significant differences between measured and expected means (2-sample t-test). * P < 0.05; ** P < 0.01. (*) P = 0.056.
Figure 5 from: Nako J-D, Lee NS, Wright JC (2018) Water vapor absorption allows for volume expansion during molting in Armadillidium vulgare and Porcellio dilatatus (Crustacea, Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 459-479. https://doi.org/10.3897/zookeys.801.23344
Figure 5 Mean masses of Ligidiumlapetum in 100% RH. The mean mass of the surviving animals on Day 2 is the mean % mass loss of those animals, subtracted from the mean of all animals at Day 0. No animal survived to Day 3 or initiated ecdysis.
Figure 4 from: Nako J-D, Lee NS, Wright JC (2018) Water vapor absorption allows for volume expansion during molting in Armadillidium vulgare and Porcellio dilatatus (Crustacea, Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 459-479. https://doi.org/10.3897/zookeys.801.23344
Figure 4 Mass changes of Porcelliodilatatus during molting at 97 % RH and without food. Data labels and other details as for Fig. 1.
Figure 1 from: Nako J-D, Lee NS, Wright JC (2018) Water vapor absorption allows for volume expansion during molting in Armadillidium vulgare and Porcellio dilatatus (Crustacea, Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 459-479. https://doi.org/10.3897/zookeys.801.23344
Figure 1 A Mass changes of Armadillidiumvulgare during molting at 100 % RH, without access to food. Pre- and post- labels refer to the number of days before/after ecdysis with data showing the % mass change over the prior 24-h period. PE = posterior ecdysis; AE = anterior ecdysis. Bars show ± SEM with sample sizes B Mean masses of 4 of these animals, showing the characteristic pattern of mass gain, peaking between PE and AE, followed by loss over the 3 to 4-day post-molt period.
Figure 2 from: Nako J-D, Lee NS, Wright JC (2018) Water vapor absorption allows for volume expansion during molting in Armadillidium vulgare and Porcellio dilatatus (Crustacea, Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 459-479. https://doi.org/10.3897/zookeys.801.23344
Figure 2 Mass changes of Armadillidiumvulgare during molting in 97 % RH, without access to food. Details as in Figure 1. PE2 refers to the small number of animals reaching a second day after PE without completing the anterior ecdysis.
Figure 7 from: Nako J-D, Lee NS, Wright JC (2018) Water vapor absorption allows for volume expansion during molting in Armadillidium vulgare and Porcellio dilatatus (Crustacea, Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 459-479. https://doi.org/10.3897/zookeys.801.23344
Figure 7 A Percentage mass change between 5 days premolt and anterior ecdysis for Armadillidiumvulgare maintained in 100 % RH (blue) and 97 % RH (red) and plotted as a function of premolt mass. Trendlines show best-fit logarithmic curves. Animals in 97 % RH achieve slightly smaller proportional mass changes to those in saturated air, consistent with the reduced vapor pressure gradient for WVAB Log-log plot showing the relationship between fractional mass-gain and pre-molt mass in 100 % RH (% mass gain α M-0.676).
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