Pembuat Peranti Android Mungkin Perlu Menunggu Sehingga 2019 Untuk Meniru Teknologi Imbasan Wajah 3D Apple – Amanz

Salah satu ciri yang paling menarik yang diperkenalkan oleh Apple pada peranti iPhone X tahun lepas ialah Face ID, yang menggunakan teknologi kamera dengan sistem imbasan wajah 3D yang menjanjikan imbasan yang tepat dan selamat digunakan untuk pelbagai benda, termasuklah menyahkunci telefon, memuat-turun aplikasi melalui App Store dan juga membayar menggunakan Apple Pay.

Peniruan teknologi diantara jenama pembuat peranti bukanlah sesuatu yang baru, akan tetapi, nampaknya syarikat-syarikat yang ingin menggunakan sistem imbasan wajah 3D ini perlu menunggu sehingga tahun 2019 untuk mengimplementasikan teknologi tersebut kedalam peranti mereka.

Ini adalah kerana menurut syarikat-syarikat pembekal komponen seperti Viavi Solutions Inc, Finisar Corp dan Ams AG, bekalan vertical-cavity surface-emitting laser, ataupun VCSELs, komponen utama yang digunakan untuk menggerakkan teknologi Face ID Apple sangat rendah, kemungkinan besar kerana Apple sudahpun memborong kebanyakannya untuk peranti-peranti mereka yang akan hadir di pasaran pada tahun ini dan tahun hadapan.

Viavi Solutions adalah salah satu daripada sekumpulan syarikat kecil yang mampu mengilang sejumlah besar daripada penuras optikal yang diperlukan untuk sistem imbasan 3D ini.

Seorang jurucakap daripada syarikat tersebut, Bill Ong menyatakan bahawa satu sahaja syarikat pembuat peranti Android yang akan hadir dengan sistem pengimbas 3D ini, akan tetapi peranti ini dikatakan akan hadir dalam jumlah yang sedikit sahaja kerana bekalan penuras optikal yang akan kekal rendah sehingga tahun hadapan.

Gartner pula melaporkan bahawa menjelang 2021 kelak, 40 peratus daripada peranti-peranti yang akan hadir di pasaran akan menggunakan sistem imbasan wajah 3D ini, yang juga boleh digunakan untuk sistem augmented reality seperti yang digunakan pada peranti ASUS ZenFone AR.

Apa-apa pun, nampaknya kebanyakan pembuat peranti Android perlu menunggu selama setahun sebelum mereka boleh menggunakan teknologi yang sama pada peranti mereka.

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Samsung working with Israeli firm on 3D camera solutions for the Galaxy S10

Samsung working with Israeli firm on 3D camera solutions for the Galaxy S10

The Samsung Galaxy S9 and S9 Plus use a low-security 2D face recognition system.

Samsung is said to be adopting 3D sensing camera technologies for the Galaxy S10 phones next year. 

Korean publication The Bell claims that Israeli startup Mantis Vision is working with camera module firm Namuga to integrate 3D sensing software in a camera module. Samsung is expected to bring the 3D sensing software to the Galaxy S10 next year when it celebrates the 10th anniversary of the Galaxy S series. 

Mantis Vision’s 3D mapping technology was previously used in Google’s AR platform for smartphones (Project Tango). It also attracted US$10 million investment from Samsung and Flextronics in 2014. Namuga supplies camera modules for Samsung’s mid-range and entry-level smartphones, and provides 3D sensing camera modules for Intel’s RealSense AR cameras. 

The debut of Face ID on the iPhone X reportedly caused a spike in the interest of 3D sensing technology from Android phone makers according to KGI Securities analyst Ming-Chi Kuo.

Kuo also singled out Mantis Vision as one of the three solutions which Android phone makers are looking at. However, Kuo believes it will take up to two and a half years for Apple’s competitors to replicate the functionality and user experience offered by Face ID. 

Source: The Investor

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Here’s How 3-D Printers Are Making Human Body Parts

Courtesy Wake Forest Institute for Regenerative Medicine (2)
Researchers at the Wake Forest Institute for Regenerative Medicine use 3-D printers 
to create porous frames of a human ear (left) that the printer’s bio-ink nozzles fill with human cells. The finished ear is put into an incubator (right) to be preserved.

In 2015, more than 125,000 
organs, mostly kidneys, were transplanted from one human being 
to another in the United States. Sometimes the donor was a living volunteer. Usually, though, he or 
she was the victim of a car accident, a stroke, a heart attack, or a similar sudden event that had terminated the life of an otherwise healthy individual. But a lack of suitable donors, particularly as cars get safer and first aid becomes more effective, means the supply of organs is limited. Many people therefore die waiting for a transplant. That has led researchers to study the question of how to 
build organs from scratch.

One promising approach is to 
print them. Lots of things are made these days using three-dimensional printing, and there seems to be no reason why body parts should not be among them. As yet, such “bioprinting” remains largely experimental. But bioprinted tissue is already being 
sold for drug testing, and the first transplantable tissues are expected to be ready for use in a few years’ time.

Bioprinting originated in the 
early 2000s, when it was discovered that living cells could be sprayed through the nozzles of inkjet printers without being damaged. Today, using multiple printheads to squirt out different cell types, along with polymers that help the structure keep its shape, it is possible to deposit layer upon layer of cells that will bind 
together and grow into living, functional tissue. Researchers are tinkering with kidney and liver tissues, skin, bones, and cartilage, as well 
as the networks of blood vessels needed to keep body parts alive. They have implanted printed ears, and also muscles, into animals and watched these integrate properly with their hosts. Last year, a group 
at Northwestern University even printed working bioprosthetic ovaries for mice. The recipients were able to conceive and give birth with the aid of these artificial organs.

No one is yet talking of printing gonads for people. But blood vessels are a different matter. Sichuan Revotek, 
a biotechnology company based in Chengdu, China, has successfully 
implanted a printed section of artery into a monkey. This is the first step 
in trials of a technique intended for use in humans. Similarly, Organovo, a firm in San ­Diego, ­California, ­announced that it had transplanted printed human-liver tissue into 
mice and that this tissue had survived and worked. Within three to five years, Organovo hopes to develop this procedure into a treatment for chronic liver failure and 
for inborn errors of metabolism in 
young children. The market for such treatments in America alone, the firm estimates, is worth more than $3 billion a year.

WK_Who-Knew_3DPrinters_US180473Courtesy Allison Vest, MS, CCA, Anaplastologist at Medical Art Prosthetics, LLC
Researchers have yet to successfully attach a 3-D-printed ear (left) to a human. The ear on the right is actually 
a silicone prosthesis.

Johnson & Johnson is so convinced that bioprinting will transform parts of medical practice that it has formed several alliances with interested 
academics and biotechnology firms. One of these alliances, with Tissue Regeneration Systems, a firm in Michigan, is intended to develop 
implants for the treatment of defects in broken bones. Another, with 
Aspect Biosystems Ltd., a biotechnology company in Canada, is trying to work out how to print parts of the 
human knee known as the menisci. These are crescent-shaped cartilage pads that separate the femur from 
the tibia and act as shock absorbers between these two bones. Playing that role causes a lot of wear and tear, so surgical repair is often required.

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Bioprinting can help with the 
development of other treatments. 
Organovo already offers its kidney and liver tissue for use in testing new drugs for effectiveness and safety. That should please animal rights 
activists, as such tests cut down on the number of animal trials. It should please drug companies, too—because the tissue being tested is human, the results should be more reliable than those from tests on other species.

With similar motives in mind, L’Oréal, a French cosmetics firm; Procter & Gamble, an American 
consumer-goods company; and BASF, a German chemical concern, are working on printing human skin. 
They propose to use it to test their products for adverse reactions. L’Oréal already grows almost 54 square feet 
of skin each year using older and slower technology. Bioprinting will be faster and also allow different skin types and textures to be printed.

Printed skin might eventually be employed for grafts, repairing burns and ulcers. Plans are also afoot, as 
it were, to print skin directly onto 
the surface of the body. Renovacare, a firm in Pennsylvania, has developed a gun that will spray skin stem cells directly onto the wounds of burn victims. (Stem cells are cells that proliferate to produce all the cell types that a tissue is composed of.) 
If the stem cells in question come from the patient himself or herself, there is no risk that the immune 
system will reject the new tissue.

The real prize of all this effort would be to print entire organs. For kidneys, Roots Analysis, a medical-technology consultancy, reckons that should be possible in about six years. Livers, which have a natural tendency to regenerate, should also arrive reasonably soon. Hearts, with their complex internal geometries, will take longer. In all cases, though, printed organs would mean that those needing transplants have to wait neither for the altruism of another nor the death of a stranger to provide the means to save their lives.

Next, check out the other cool things 3D printers can make.

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New 3D renders of the Samsung Galaxy S9 leaked by Samsung’s own MWC app

New 3D renders of the Samsung Galaxy S9 leaked by Samsung’s own MWC app

3D renders of Samsung’s upcoming Galaxy S9 smartphone have been discovered inside Samsung’s own Unpacked 2018 app, which serves as the companion app for attendees of the launch event. 

The renders were discovered by Reddit user /u/thesbros, who decompiled the app to find them. It appears that Samsung will use the renders at the event to showcase the phone in AR. XDA Developers then used the renders to generate images of the phone, taken directly from Samsung’s own servers.

As the leaked renders come directly from Samsung’s own app, it pretty much confirms everything we’ve seen in previous leaks, showing a device with a strong resembles to its predecessor, but with minor tweaks such as the fingerprint sensor being moved underneath the rear camera.

Source: XDA Developers

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Facebook Kini Memudahkan Anda Berkongsi Kandungan Objek 3D – Amanz

Facebook sebelum ini sedia menawarkan sokongan berkongsi kandungan objek 3D, dan hari ini, mereka menambah-baiknya lagi dengan penambahan sokongan untuk gITF 2.0 pada News Feed.

Dengan penambahan ini, pengguna boleh berkongsi kandungan 3D terus ke Facebook, sekaligus memudahkan pengguna lain melihat dan berinteraksi dengan kandungan berkenaan dengan lebih realistik.

Facebook dilihat menambah sokongan ini sebagai langkah mengalakkan arena realiti-maya dan realiti-gabungan. Gergasi laman sosial ini sendiri mengatakan yang mana mereka akan menambah lebih banyak sokongan untuk kandungan 3D ini dari masa ke semasa.

Bagi anda yang mempunyai kandungan 3D, atau telefon pintar Xperia XZ1, mungkin boleh mencuba hasilkan kandungan objek 3D anda, dan berkongsi terus ke Facebook hari ini.

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Video Acah Galaxy S9 Memperlihatkan Sokongan Rakaman Gerak Perlahan Dan Emoji 3D – Amanz

Samsung hari ini telah mengeluarkan beberapa video acah untuk telefon pintar Galaxy S9 yang bakal dilancarkan pada penghujung bulan ini. Melalui video acah yang dikeluarkan ini juga, pihak Samsung secara ringkas memperlihatkan beberapa ciri baru yang akan dibawakan oleh mereka.

Melalui video pertama untuk mempromosikan pengenalan Galaxy S9, Samsung memperlihatkan keupayaan rakaman video gerak perlahan.

Video acah kedua daripada Samsung pula memperlihatkan sokongan untuk rakaman pada keadaan cahaya malap. Melalui video acah berkenaan, Samsung menunjukkan yang mana kamera Galaxy S9 mampu merakamkan gambar dengan terang dan jelas – walaupun pada persekitaran gelap.

Dan pada video acah ketiga, Samsung memperlihatkan keupayaan mengubah wajah pengguna kepada Emoji 3D – salah satu ciri baru yang diperkatakan akan hadir pada Galaxy S9 sebelum ini.

Kita mungkin akan melihat beberapa video acah lain dikongsikan Samsung dalam hari-hari akan datang.

Samsung menjadualkan pengenalan Galaxy S9 ini pada 25 Februari 2018.

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Apple Bersetuju Membayar Lesen Kepada Immersion Untuk Menyelesaikan Saman Teknologi 3D Touch – Amanz

Pada Februari 2016, Immersion memfailkan saman ke atas Apple. Ini adalah kerana sistem 3D Touch, Force Touch dan Taptic Engine yang ditemui pada iPhone 6S, Apple Watch serta MacBook 2015 dipercayai menggunakan teknologi timbal balas haptik Immersion tanpa kebenaran.

Selepas hampir dua tahun, kedua-dua pihak bersetuju menyelesaikan isu ini di luar mahkamah. Apple akan membayar lesen kepada Immersion bagi menggunakan teknologi timbal balas haptik mereka. Pengumuman persetujuan ini dilakukan menerusi laman rasmi Immersion. Tiada maklumat mengenai bayaran yang dilakukan oleh Apple diumumkan.

Sebelum ini pada tahun 2002 Immersion turut berjaya membuktikan teknologi mereka digunakan tanpa kebenaran pada produk Sony dan Microsoft. Ini menyebabkan Sony tidak menyertakan fungsi gegaran pada pengawal Dual Shock PlayStation 3. Ia hanya dikembalikan dan terus digunakan selepas Sony dan Immersion menandatangani persetujuan pada tahun 2007.

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Apple Dilaporkan Akan Hadir Dengan iPhone Bersaiz 6.1-inci LCD Tanpa 3D Touch – Amanz

Apple iPhone X ialah peranti dengan jualan tertinggi pada suku ke-empat 2017 menurut angka yang dikeluarkan oleh firma Canalys hari ini. Namun kadar jualan model premium ini lebih perlahan jika dibandingkan dengan model-model terdahulu kerana harga jualannya yang terlalu mahal. Oleh itu penjualan model yang lebih mampu milik mungkin akan menyelesaikan masalah ini.

KGI hari ini berkongsi sebuah lagi ramalan mengenai peranti iPhone baru yang bakal dilancarkan tahu ini. Menurut mereka, salah satu model akan dilengkapi skrin 6.1″ IPS LCD. Menarik mengenai model ini ialah ia tidak akan menyokong sistem timbal balik 3D Touch.

Turut diramalkan ialah model ini akan mempunyai rekaan yang sama seperti iPhone X lengkap dengan takuk skrin. Bingkai aluminium akan digunakan berbanding stainless steel. Hanya satu kamera sahaja akan digunakan pada bahagian belakang. Ini akan membolehkan Apple menjual peranti ini pada harga di antara $700-800  (~RM 2750-3200) sebuah.

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