Self-Explanatory. Unique Patient Identifier across all branches.
Name of the branch where the the surgery performed
Name of the Native branch where the patient visited
“PI” – stands for Performance Indicators. The vision of this portal to outline various performance indicators of Dr.Agarwal’s hospitals and care centers. This will include Patient Care, Diagnostics, Advice & Treatments, Finance, Marketing, Product development, Medical Research, Training, Technology and Operational eco systems. This portal will facilitate these eco systems to Define, Monitor, Manage and Optimize their own functions to value and continuously improve the eye services to global society.
Self-Explanatory. Given name of the patient. Work in progress to get the Age, date of birth and phone number of the respective patient. Reported comorbidities, complaints and latest diagnostics will also be added in future.
Name of the doctor performed the surgery
Date of admission for the procedure performed
Each eye procedures are considered as separate surgeries. (even in case of bilateral)
For each eye, unaided visual acuity is taken across all appointments before the surgery and taken the minimum (best vision before surgery) as UCVA-Before-Surgery
The days represented as with ‘- sign’ gives that how many days before the surgery the ‘best vision before surgery’ was measured.
UCVA-Before-Surgery is 6/9 and it was measured 7 days before.
For each eye, pinhole and glasses visual acuity is taken across all appointments before the surgery. Our of these two values best visions (minimum) is taken as the vision measured on that day of appointment. From these minimum values across all appointments, the minimum (best vision before surgery) as BCVA-Before-Surgery The days represented as with ‘- sign’ gives that how many days before the surgery the ‘best vision before surgery’ was measured.
BCVA-Before-Surgery is 6/9 and it was measured 5 days before.
For each eye, unaided visual acuity is taken across all appointments after the surgery and taken the minimum (best vision after surgery) as UCVA-After-Surgery The days represented gives that how many days after the surgery the ‘best vision before surgery’ was measured.
UCVA-After-Surgery is 6/9 and it was measured 8 days after.
For each eye, pinhole and glasses visual acuity is taken across all appointments after the surgery. Our of these two values best visions (minimum) is taken as the vision measured on that day of appointment. From these minimum values across all appointments, the minimum (best vision after surgery) as BCVA-After-Surgery The days represented gives that how many days before the surgery the ‘best vision after surgery’ was measured.
BCVA-Before-Surgery is 6/9 and it was measured 8 days after.
For each eye, intraocular pressure is taken across all appointments before the surgery and taken the maximum (high pressure before surgery) as Max IOP-Before-Surgery The days represented as with ‘- sign’ gives that how many days before the surgery the ‘high pressure before surgery’ was measured.
For each eye, intraocular pressure is taken across all appointments before the surgery and taken the maximum (high pressure before surgery) as Max IOP-Before-Surgery The days represented as with ‘- sign’ gives that how many days before the surgery the ‘high pressure before surgery’ was measured.
For each eye, intraocular pressure is taken across all appointments after the surgery and taken the minimum (low pressure before surgery) as Min IOP-Before-Surgery. (2 months is the gap)
For each eye, intraocular pressure measured during the latest visit.
We assign a weight for each visual acuity.
visual acuity | weightage |
---|---|
6/5 & 6/6 | 0 |
6/9 | 1 |
6/12 | 2 |
6/18 | 3 |
6/24 | 4 |
6/36 | 5 |
6/60 | 6 |
6/72 | 7 |
6/90 | 8 |
For each doctor, the number of minimum visual acuity results are multiplied with the weightage.
For example, if a doctor performed 60 cataracts and the results are
visual acuity | weightage | Surgeries | % of Results | X= Weightage * % of Results |
---|---|---|---|---|
6/5 & 6/6 | 0 | 30 | 50% | 0.00 |
6/9 | 1 | 25 | 42% | 0.42 |
6/12 | 2 | 3 | 5% | 0.10 |
6/18 | 3 | 1 | 2% | 0.05 |
6/24 | 4 | 1 | 2% | 0.07 |
3/36 | 5 | 0 | 0% | 0.00 |
6/60 | 6 | 0 | 0% | 0.00 |
6/72 | 7 | 0 | 0% | 0.00 |
6/90 | 8 | 0 | 0% | 0.00 |
Sum of X is 0.63
We apply,
Stats=1-(x/800)*100
In this case it is
1-(0.63/800)*100
results in 92 out of 100.
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