| Literature DB >> 25783657 |
Jerry E de Groot1, Mireille J M Broeders, Cornelis A Grimbergen, Gerard J den Heeten.
Abstract
BACKGROUND: Many women consider mammography painful. Existing studies on pain-preventing strategies only mention pain scores reported before and after breast compression. Studying the pain dynamics during the entire compression cycle may provide new insights for effective pain-preventing strategies.Entities:
Mesh:
Year: 2015 PMID: 25783657 PMCID: PMC4369109 DOI: 10.1186/s12905-015-0185-2
Source DB: PubMed Journal: BMC Womens Health ISSN: 1472-6874 Impact factor: 2.809
Figure 1Custom turning knob used for recording time-varying pain throughout the entire breast compression cycle.
Multivariable models with general shape: Pain after compression = Σ Effect × Predictor value
|
|
| |||
|---|---|---|---|---|
|
|
|
|
|
|
| Recollected pain score [NRS] | 0.763 | p < .001 |
| |
| Baseline pain score [NRS] | 0.108 | p = .06 | 0.263 | p < .002 |
| Maximum reached force [daN] | −0.204 | p < .005 | ||
| Duration of clamp phase [sec] | −0.046 | p = .10 | −0.075 | p < .05 |
Model selection was performed by stepwise minimization of the Akaike Information Criterion. Model 1 includes the recollected pain scores of the previous mammogram (available for n = 281 cases). In model 2 (all cases: n = 324), the recollected pain scores were excluded.
Pain outcomes (averages and proportions) at different moments and compared between first-time and returning participants and between five breast volume stratifications
|
|
|
| ||||||
|---|---|---|---|---|---|---|---|---|
|
|
|
|
|
|
|
| ||
|
| n = 43 | n = 281 | n = 324 | n = 65 | n = 65 | n = 65 | n = 64 | n = 65 |
| Recollected from previous mammogram | - | 6.19 | 6.19 | 7.04 | 6.72 | 5.51 | 5.07 | 6.28 |
| At end of deformation phase | 4.40 | 4.80 | 4.75 | 5.45 | 5.03 | 4.19 | 4.39 | 4.65 |
| At end of clamping phase | 5.70 | 5.90 | 5.88 | 6.70 | 6.15 | 5.03 | 5.75 | 5.75 |
|
| ||||||||
| At end of deformation phase | .16 | .24 | .23 | .32 | .28 | .15 | .19 | .22 |
| At end of clamping phase | .51 | .49 | .50 | .58 | .55 | .34 | .52 | .49 |
|
| ||||||||
| 1 day after mammogram | .05 | .15 | .11 | .13 | .13 | .06 | .17 | .18 |
| 2 days after mammogram | .05 | .05 | .04 | .03 | .08 | .02 | .03 | .10 |
| 3 days after mammogram | 0 | .04 | .03 | .03 | .03 | 0 | 0 | .10 |
| 4 days after mammogram | 0 | .01 | .01 | .03 | 0 | 0 | 0 | 0 |
| 5 days after mammogram | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 |
Figure 2Selected examples of raw data recordings for five breast volumes: Actual-time progression of the recorded variables and the dynamic pain score. The gray vertical dashed lines indicate the deformation and clamping phase. For reference: the gray horizontal bar in the middle-right panel indicates the range of normal blood pressures.
Figure 3Mean ± 95% confidence interval for all 324 compressions stratified by breast volume into five equally sized groups: Progression of the recorded variables and the dynamic pain scores on a relative time scale. Boxplots represent the distributions of values at the end of compression as well as (bottom right) for recollected pain scores of the previous mammogram and for pain scores five days after the mammogram. Boxes are mean ± one standard deviation and whiskers extend until the furthest outlier with a maximum of one standard deviation. For reference: the gray horizontal bar in the middle-right panel indicates the range of normal blood pressures.
Figure 4Breast deformation curves for five selected example compressions. The curves are obtained by plotting the Th(t)-values from the deformation phase as function of the corresponding and simultaneously recorded F(t)-values.