Outcome
| Type |
Measure |
Description |
Time frame |
Safety issue |
| Primary |
Postoperative 1st hours Pain Score on the Visual Analog Scale |
The postoperative pain was assessed using a 10-cm visual analogue scale (VAS) at postoperative 1st hours. "0" represents least pain, "50" represents moderate pain, and 100 represents maximum pain. |
postoperative 1st hours |
|
| Primary |
Postoperative 3rd hours Pain Score on the Visual Analog Scale |
The postoperative pain was assessed using a 10-cm visual analogue scale (VAS) at postoperative 3rd hours. "0" represents least pain, "50" represents moderate pain, and 100 represents maximum pain. |
postoperative 3rd hours. |
|
| Primary |
Postoperative 6th hours Pain Score on the Visual Analog Scale |
The postoperative pain was assessed using a 10-cm visual analogue scale (VAS) at postoperative 6th hours."0" represents least pain, "50" represents moderate pain, and 100 represents maximum pain. |
postoperative 6th hours. |
|
| Primary |
Postoperative 9th hours Pain Score on the Visual Analog Scale |
The postoperative pain was assessed using a 10-cm visual analogue scale (VAS) at postoperative 9th hours."0" represents least pain, "50" represents moderate pain, and 100 represents maximum pain. |
postoperative 9th hours. |
|
| Primary |
Postoperative 12th hoursPain Score on the Visual Analog Scale |
The postoperative pain was assessed using a 10-cm visual analogue scale (VAS) at postoperative 12th hours. "0" represents least pain, "50" represents moderate pain, and 100 represents maximum pain. |
postoperative 12th hours. |
|
| Primary |
Postoperative 24th hours Pain Score on the Visual Analog Scale |
The postoperative pain was assessed using a 10-cm visual analogue scale (VAS) at postoperative 24th hours. "0" represents least pain, "50" represents moderate pain, and 100 represents maximum pain. |
postoperative 24th hours. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken one (T0) day before surgery. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken 1 (T1) day after surgery. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken3 (T3) day after surgery. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken 7 (T7) day after surgery. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken 14 (T14) day after surgery. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken 21 (T21) day after surgery. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken 30 (T30) day after surgery. |
|
| Primary |
3D measure of postoperative swelling |
3dMD Face System (3dMD, ATLANTA, GA, USA) was used for 3D imaging of postoperative swelling. The same clinician took the 3D images from patients in natural head position, maximum intercuspation and eyes open. The 3dMD Vultus Software (3dMD, Atlanta, GA) was used to analyse the images. The 3-month postoperative 3D image (t90) was selected as the reference image to compare with other images. After cutting and customizing the images by anatomical structures, scans t0-t30 were matched to the reference scan t90. The forehead, nasion, tragus, medial and lateral canthus were used for surface matching. After surface matching, the volume difference between the masks was calculated |
3D images were taken 90 (T90) day after surgery. |
|