Products

By sending a picture of the skin from the phone to the server, the fine cracks and crevices of the skin in the picture can be analyzed and the results get sent back to the user. The measurements include the skin's gloss, fineness of texture, and elasticity.
MacroSystem can customize the interface for specific business purposes, and can be utilized for many things, including product sales, special promotions, scientific and marketing research, as well as in-home personal treatment.
* NOTE *
This application is not intended to be used as a medical or professional diagnostic device. It is designed for entertainment and personal use only. If you think you may have a condition that requires medical care, please consult a licensed physician or dermatologist.
Mobile Phone Versions/Requirements:

Carrier: Apple iPhone
Operating System: iOS 4.2 or later
Download FREE from the iTunes store

Carrier: Android
Operating System: Android 1.6 and up
Download FREE from Google Play

お肌カルテ (Japan)
Carrier: NTT Docomo
Camera Resolution: 3.0 megapixels or higher
Screen Resolution: 480 x 854 or higher
Operating System: Star-1.0 or newer
Carrier: NTT Docomo
Camera Resolution: 3.0 megapixels or higher
Screen Resolution: 480 x 854 or higher
Operating System: Star-1.0 or newer
PC Version

Although the quality of phone cameras is constantly increasing, a microscope provides higher camera resolution and much more stability, which increases the quality and detail of the photos and provides more accurate readings.

System Requirements:
Operating System: Microsoft Windows XP or newer
CPU: Pentium III 800 MHz or better
RAM: 512 MB
Available Hard Disk Space: 80 MB
Display Resolution: 1024 x 768
Other: .NET Framework 2.0 or newer;
USB microscope camera
RAM: 512 MB
Available Hard Disk Space: 80 MB
Display Resolution: 1024 x 768
Other: .NET Framework 2.0 or newer;
USB microscope camera
ManMoS (Mandibular Motion Tracking System), is the next step in mandibular motion analysis for use in orthognathic surgery.

ManMoS Clinical Significance:

For successful surgical simulation, a great amount of information must be gathered and shared by orthodontists and surgeons, and results are based on many trials. This kind of "prediction system" requires 2 things to work successfully:
1)Pre-surgical simulation can be easily reviewed;
2)Notes and procedural decisions can be incorporated into and reflected by the system.
ManMoS possesses both of these capabilities.

ManMoS Clinical Significance:
- Bones, teeth, bite angle, and jaw movement can all be monitored simultaneously, making ManMoS suitable for presurgical planning.
- The virtual mandibular model can be evaluated easily and accurately; post-surgical treatment can also be planned by manipulating the virtual model.
- After deciding the final jaw and tooth positions on the virtual model, a jaw splint (for post-surgical recovery) can be constructed.
- By checking the bone structure on the monitor, the risk of post-surgical injury/damage is reduced significantly.
- Information can easily be shared between orthodontists and surgeons using this system, which would greatly increase the efficiency of the procedure.

For successful surgical simulation, a great amount of information must be gathered and shared by orthodontists and surgeons, and results are based on many trials. This kind of "prediction system" requires 2 things to work successfully:
1)Pre-surgical simulation can be easily reviewed;
2)Notes and procedural decisions can be incorporated into and reflected by the system.
ManMoS possesses both of these capabilities.
ManMoS Features:
Before surgery, the system can construct an accurate 3D model of the jaw which can be used for diagnosis.
The method of incision/bone extraction can be easily determined via the virtual model.
Cost effective- save time and money
※ It should be noted that this system may be required to be registered and licensed for medical use, depending on local laws, ordinances, and restrictions.
(click to enlarge photo)

Before surgery, the system can construct an accurate 3D model of the jaw which can be used for diagnosis.
The method of incision/bone extraction can be easily determined via the virtual model.
Cost effective- save time and money
Expensive cast models (pictured, right) are made obsolete by the equivalent virtual model, saving money and time.
(It costs ~200,000 yen and takes about 1 week to construct each skeletal model.)
- Surgical simulation can be performed an infinite number of times on the virtual model, while a cast model cannot properly be used for simulation more than once or twice.
- Conventional preoperative consultation and preparation (i.e. braces) can take up to 2-3 years.
However, ManMoS has allowed doctors to improve conventional practices and shorten this time to as little as 6 months!
- A virtual cephalogram can be constructed using Dicom Data. Patients don't need to undergo unnecessary X-rays, and the machinery used to create a cephalogram- which costs roughly 6,000,000 yen- is not required.
- A separate mandibular motion tracking system, which costs roughly 1,000,000 yen, is also made obsolete.
※ It should be noted that this system may be required to be registered and licensed for medical use, depending on local laws, ordinances, and restrictions.
(click to enlarge photo)


We are now looking to overseas clients as well to provide our high quality services to, especially those interested in doing business here in Japan. We can provide accounting software to accommodate different language needs as well as specific tax issues for whatever currencies you deal with, as well as compliance with IFRS standards.
Please contact us and let us know how we can serve you.