| Literature DB >> 19421337 |
Sira P Rao1, Nikil S Jayant, Max E Stachura, Elena Astapova, Anthony Pearson-Shaver.
Abstract
In real-time remote diagnosis of emergency medical events, mobility can be enabled by wireless video communications. However, clinical use of this potential advance will depend on definitive and compelling demonstrations of the reliability of diagnostic quality video. Because the medical domain has its own fidelity criteria, it is important to incorporate diagnostic video quality criteria into any video compression system design. To this end, we used flexible algorithms for region-of-interest (ROI) video compression and obtained feedback from medical experts to develop criteria for diagnostically lossless (DL) quality. The design of the system occurred in three steps-measurement of bit rate at which DL quality is achieved through evaluation of videos by medical experts, incorporation of that information into a flexible video encoder through the notion of encoder states, and an encoder state update option based on a built-in quality criterion. Medical experts then evaluated our system for the diagnostic quality of the video, allowing us to verify that it is possible to realize DL quality in the ROI at practical communication data transfer rates, enabling mobile medical assessment over bit-rate limited wireless channels. This work lays the scientific foundation for additional validation through prototyped technology, field testing, and clinical trials.Entities:
Year: 2009 PMID: 19421337 PMCID: PMC2677161 DOI: 10.1155/2009/406753
Source DB: PubMed Journal: Int J Telemed Appl ISSN: 1687-6415
Evaluation template to measure the bit rate at which DL quality is achieved.
| Random | Feature sets | DL |
|---|---|---|
| video | 1-no, 2-maybe not, | |
| sample | 3-likely, 4-yes | |
| SAMPLE1 | Activity | 4 |
| Gasping | 3 | |
| Tachypnea | 4 | |
| ⋯ | ⋯ |
Evaluation of video Er08 compressed at four different compression levels (diagnostic level quality scale: 1-no, 2-maybe not, 3-likely, 4-yes).
| Random | Feature sets | DL (1–4) |
|---|---|---|
| video sample | ||
| Er08_500 | WB | 2 |
| RR | 2 | |
| T | 2 | |
| MS | 2 | |
| HB | 2 | |
| NF | 2 | |
|
| ||
| Er08_1000 | WB | 3 |
| RR | 3 | |
| T | 3 | |
| MS | 4 | |
| HB | 3 | |
| NF | 3 | |
|
| ||
| Er08_1500 | WB | 3 |
| RR | 3 | |
| T | 3 | |
| MS | 4 | |
| HB | 4 | |
| NF | 4 | |
|
| ||
| Er08_orig | WB | 4 |
| RR | 4 | |
| T | 4 | |
| MS | 4 | |
| HB | 4 | |
| NF | 4 | |
Required bit rate for DL in medical features pertaining to pediatric respiratory distress.
| Feature | TBR (kbps) |
|---|---|
| Activity (A) | 750 |
| Chest excursion (CE) | 1000 |
| Gasping (G) | 1000 |
| Level of activity (LA) | 1000 |
| Mild retraction (MR) | 1000 |
| Mental status (MS) | 1000 |
| Nasal flaring (NF) | 750 |
|
|
|
| Retractions (R) | 786 |
| Tachypnea (T) | 923 |
| Work of breathing (WB) | 750 |
| Head bobbing (HB) | 1000 |
| Respiratory excursion (RE) | 1000 |
| Skin tone mottling (STM) | 1000 |
| SUPRA | 500 |
| INTER | 500 |
| SUB | 750 |
Figure 1Illustration of bit per pixel density at 500 kbps and 360 × 240 pixels with (a) ROI compression: ROI bpp = 0.42; ROI bit rate = 0.42 × 360 × 240 × 0.25 × 30 = 270 kbps; BKGRND bit rate = 500 − 270 = 230 kbps; BKGRND bpp = 230000/(30 × 360 × 240 × 0.75) = 0.117 and (b) uniform compression: overall bpp = 500000/(30 × 360 × 240) = 0.193.
Encoder state table.
| ROI quality ↓ | BG quality → | ||
|---|---|---|---|
| ML | DL | BE | |
| ML | 1 | 2 | 3 |
| DL | N/a | 4 | 5 |
| BE | N/a | N/a | 6 |
Figure 2Flow diagram describing encoder state determination.
Figure 3ROI and BKGRND bit per pixel density in states 1 through 6.
Encoder state update chart.
| Previous state | State transition flag | Current state | New current state |
|---|---|---|---|
| (as determined by Figure | |||
| 4 or 5 | 0 | 1 or 2 or 3 or 4 or 5 or 6 | Same as current state |
| 4 or 5 | 1 | 1 or 2 or 3 or 6 | Same as current state |
| 4 | 1 | 4 | 5 |
| 4 | 1 | 5 | 5 |
| 5 | 1 | 4 | 5 |
| 5 | 1 | 5 | 5 |
Evaluation of video Er08 when ROI coded (diagnostic level quality scale: 1-no, 2-maybe not, 3-likely, 4-yes).
| Video_TBR | Features | Elastic (proposed) |
|---|---|---|
|
| ||
| DL | ||
| Er08_500 | WB | 3 |
| RR | 3 | |
| T | 3 | |
| MS | 4 | |
| HB | 4 | |
| NF | 3 | |
|
| ||
| Er08_750 | WB | 4 |
| RR | 4 | |
| T | 4 | |
| MS | 4 | |
| HB | 4 | |
| NF | 4 | |
|
| ||
| Er08_1000 | WB | 4 |
| RR | 4 | |
| T | 4 | |
| MS | 4 | |
| HB | 4 | |
| NF | 4 | |
Averaged results for DL at 500 kbps, 750 kbps, and 1000 kbps (diagnostic level quality scale: 1-no, 2-maybe not, 3-likely, 4-yes).
| TBR | Elastic (proposed) | Uniform compression |
|---|---|---|
| ROI
DL ( | DL
( | |
| 500 | 3.67, 0.71 | 2.29, 0.51 |
| 750 | 3.78, 0.53 | 2.65, 0.59 |
| 1000 | 3.79, 0.44 | 2.94, 0.64 |
Figure 5Representative ROI-encoded frame of video Er08 at 500 kbps with elastic bit allocation.
Figure 4Video Er08. (a) Uncompressed video and (b) Uniform compression at 500 kbps.