| Literature DB >> 26234979 |
Masayuki Yokoi1, Takao Tashiro.
Abstract
This study used publicly available data to examine the effect of the separation of dispensing and prescribing medicines between pharmacists in pharmacies and doctors in medical institutions (the separation system) and the generic medicine replacement ratio on the cost of various medicines in Japanese prefectures. For Japanese medical institutions, participation in the separation system is optional. Consequently, the expansion rate of the separation system for each administrative district is highly variable. In our multiple regression analysis, the dependent variables were the costs of daily medicines, specifically, total, internal, external, and injection medicines, as well as medical devices, and the independent variables were the expansion rate of the separation system and generic medicine replacement ratio. The expansion rate of the separation system showed a significant negative partial correlation with the daily costs of total, internal, and injection medicines as well as medical devices. Moreover, the rate of replacing brand name medicines with generic medicines showed a significant negative partial correlation with the daily costs of total and internal medicines. However, external and injection medicines and medical devices did not because only a few or no generic products of these types were sold in the Japanese market. Otherwise, expansion of the separation system was effective in reducing medicine costs, except in the case of external medicines. This suggests that the cost efficiency effect of the separation system does not function all the time.Entities:
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Year: 2015 PMID: 26234979 PMCID: PMC4804073 DOI: 10.5539/gjhs.v8n1p29
Source DB: PubMed Journal: Glob J Health Sci ISSN: 1916-9736
The statistical data of objective variables, daily cost (US cent, 1 cent=1 yen)
| Dependent variable | Total | Internal medicines | External medicines | Injection medicines | Medical devices |
|---|---|---|---|---|---|
| Data Number | 47 | 47 | 47 | 47 | 47 |
| Mean | 306.6 | 256.4 | 36.05 | 11.316 | 0.7384 |
| Max | 346.8 | 295.7 | 40.48 | 16.595 | 1.3869 |
| Min | 275.2 | 229.4 | 30.06 | 8.197 | 0.3311 |
| 17.5 | 15.7 | 2.4 | 1.985 | 0.2327 |
Max=maximum, Min=minimum, S.D.=standard deviation.
Coefficient of multiple regression analysis (dependent variable: medical device)
| Independent Variable | Expansion rate (%) | Generic medicine replacement (%) | Constant |
|---|---|---|---|
| Standard regression coefficient | -0.336 | 0.055 | - |
| Partial correlation coefficient | -0.332 | 0.058 | - |
| P-value (partial correlation) | <0.05 | 0.702 | <0.05 |
Y5= -0.008X1 +0.0033X2 +1.098
Y5: Medical device cost, X1: Expansion rate (%), X2: Generic medicine replacement (%).
Multiple correlation coefficient and P-value
| Dependent variable | Total | Internal medicines | External medicines | Injection medicines | Medical devices |
|---|---|---|---|---|---|
| Multiple correlation coefficient R | 0.681 | 0.671 | 0.219 | 0.449 | 0.332 |
| P-value | <0.0001 | <0.0001 | 0.338 | <0.01 | 0.07 |
Coefficient of multiple regression analysis (dependent variable: Total)
| Independent Variable | Expansion rate (%) | Generic medicine replacement (%) | Constant |
|---|---|---|---|
| Standard regression coefficient | -0.430 | -0.469 | - |
| Partial correlation coefficient | -0.502 | -0.535 | - |
| P-value (partial correlation) | <0.001 | <0.0001 | <0.0001 |
Y1= -0.765X1 -2.082X2 +456.965
Y1: Total medicine cost, X1: Expansion rate (%), X2: Generic medicine replacement (%).
Coefficient of multiple regression analysis (dependent variable: internal medicine)
| Independent Variable | Expansion rate (%) | Generic medicine replacement (%) | Constant |
|---|---|---|---|
| Standard regression coefficient | -0.400 | -0.483 | - |
| Partial correlation coefficient | -0.471 | -0.542 | - |
| P-value (partial correlation) | <0.001 | <0.0001 | <0.0001 |
Y2= -0.644X1 -1.938X2 +392.513
Y2: Internal medicine cost, X1: Expansion rate (%), X2: Generic medicine replacement (%).
Coefficient of multiple regression analysis (dependent variable: external medicine)
| Independent Variable | Expansion rate (%) | Generic medicine replacement (%) | Constant |
|---|---|---|---|
| Standard regression coefficient | -0.032 | -0.212 | - |
| Partial correlation coefficient | -0.034 | -0.210 | - |
| P-value (partial correlation) | 0.823 | 0.160 | <0.0001 |
Y3= -0.008X1 -0.057X2+6.32
Y3: External medicine cost, X1: Expansion rate (%), X2: Generic medicine replacement (%).
Coefficient of multiple regression analysis (dependent variable: injection medicine)
| Independent Variable | Expansion rate (%) | Generic medicine replacement (%) | Constant |
|---|---|---|---|
| Standard regression coefficient | -0.453 | 0.085 | - |
| Partial correlation coefficient | -0.448 | 0.094 | - |
| P-value (partial correlation) | <0.01 | 0.535 | <0.0001 |
Y4= -0.092X1 -0.043X2 +15.24
Y4: Injection medicine cost, X1: Expansion rate (%), X2: Generic medicine replacement (%).