<p>Data are expressed as the mean ± SD; IOP: intraocular pressure; LDP: lateral decubitus position; Wilcoxon signed-rank test was used for the comparisons; P values less than 0.05 were considered significant.</p><p>* Intraocular pressure comparison between the right LDP and supine position for right/left eye;</p><p>** Intraocular pressure comparison between the left LDP and supine position for right/left eye.</p><p>Intraocular pressure comparison between the lateral decubitus position and supine position for right/left eye at various nocturnal measured time points.</p
<p>Data were collected sitting during the diurnal/wake period and supine during the nocturnal/sleep ...
<p>Course of the intraocular pressure values (IOP) at all timepoints in the first (”pre-op”) and sec...
AIM: To evaluate whether intraocular pressure (IOP) calculation by applanation tonometry is determin...
To investigate the effect of lateral decubitus position (LDP) on nocturnal intraocular pressure (IOP...
PURPOSE: To investigate the effect of lateral decubitus position (LDP) on nocturnal intraocular pres...
<p>Three 24-hour habitual IOP patterns were obtained according to the diurnal sitting position (⧫) a...
Purpose: To compare intraocular pressure (IOP) using the simplified daily tensional curve (SDTC) bet...
Purpose: The aim of this study was to assess the influence of the position (upright vs. supine) in t...
AbstractTo test whether there is a relationship between handedness and the intraocular pressure and ...
AIMS: To compare supine nighttime intraocular pressure measurements with Perkins applanation tonomet...
<p>The position of the acrophase around the circle shows its timing, and the radial distance from th...
Purpose: To investigate the postural change of intraocular pressure (IOP) from sitting to supine pos...
AIMS: To compare supine nighttime intraocular pressure measurements with Perkins applanation tonomet...
Objective: Intra-abdominal pressure (IAP) has traditionally been measured in the supine position, ho...
Purpose:To use Perkins\u2019 applanation tonometry to measure supine nighttime intraocular pressures...
<p>Data were collected sitting during the diurnal/wake period and supine during the nocturnal/sleep ...
<p>Course of the intraocular pressure values (IOP) at all timepoints in the first (”pre-op”) and sec...
AIM: To evaluate whether intraocular pressure (IOP) calculation by applanation tonometry is determin...
To investigate the effect of lateral decubitus position (LDP) on nocturnal intraocular pressure (IOP...
PURPOSE: To investigate the effect of lateral decubitus position (LDP) on nocturnal intraocular pres...
<p>Three 24-hour habitual IOP patterns were obtained according to the diurnal sitting position (⧫) a...
Purpose: To compare intraocular pressure (IOP) using the simplified daily tensional curve (SDTC) bet...
Purpose: The aim of this study was to assess the influence of the position (upright vs. supine) in t...
AbstractTo test whether there is a relationship between handedness and the intraocular pressure and ...
AIMS: To compare supine nighttime intraocular pressure measurements with Perkins applanation tonomet...
<p>The position of the acrophase around the circle shows its timing, and the radial distance from th...
Purpose: To investigate the postural change of intraocular pressure (IOP) from sitting to supine pos...
AIMS: To compare supine nighttime intraocular pressure measurements with Perkins applanation tonomet...
Objective: Intra-abdominal pressure (IAP) has traditionally been measured in the supine position, ho...
Purpose:To use Perkins\u2019 applanation tonometry to measure supine nighttime intraocular pressures...
<p>Data were collected sitting during the diurnal/wake period and supine during the nocturnal/sleep ...
<p>Course of the intraocular pressure values (IOP) at all timepoints in the first (”pre-op”) and sec...
AIM: To evaluate whether intraocular pressure (IOP) calculation by applanation tonometry is determin...