Baby makes history after world’s first womb transplant performed by robot

A mom has become the first in the world to give birth to a baby after a womb transplant performed by a robot, doctors have revealed.

The unnamed woman, from Sweden, gave birth to her healthy son, weighing 6lbs 3oz, on Monday.

Mom and baby are both doing well, after a planned C-section.

First op by a robot

It marks the first time a baby has been born after a womb transplant carried out by a robot.

There have been around 39 womb transplants using a live donor, including mums who have donated their wombs to their daughters. As a result, 11 babies have been born.

Meanwhile, ten transplants from a dead donor have failed or resulted in a miscarriage.

Last December, a baby girl became the first to be born after a transplant from a dead donor.

Robotic op is “less invasive”

And this latest case marks the next step — using keyhole surgery and a robot, which is “considerably less invasive” for patients.

Dr. Pernilla Dahm-Kähler, a leading robot-assisted surgeon and gynecologist, at the University of Gothenburg, said: “It’s a fantastic feeling to deliver such a special, longed-for child. To have been part of the whole process, from the first meeting with the couple to the uterus transplant and now to see everyone’s joy when what we’ve hoped for becomes reality.

“It’s simply wonderful.”

Grandmother donated womb to her daughter

The boy’s mom received her womb transplant from her own mother. The donor was operated on using robot-assisted keyhole surgery.

Mats Brännström, professor of obstetrics and gynecology at the uni’s Sahlgrenska Academy, heads the research work.

He said: “This is an extremely important step toward developing the surgery involved in uterine transplantation and its safety. For the first time, we’re showing that the less invasive robot-assisted surgical technique is practicable.”

The donor was operated on through a series of one-centimeter incisions in the stomach.

The robotic arms that perform the op are guided by two surgeons, one on each side of the patient.

Each surgeon sits at a personal workstation a few feet away, with a joystick and magnified 3D screen image that allows for high precision operating, deep in the abdomen.

Towards the end of the op, another incision is made so the womb can be removed.

It was then immediately transplanted into the donor’s daughter, by means of open surgery.

The new technique makes a big difference for donors, who tend to feel better afterward and recover from the operation faster.

Future of womb transplants

Niclas Kvarnström is the transplant surgeon in charge within the project and the physician who performed the intricate task of connecting vessels in the uterus recipient.

“In the future, we’re also going to be able to transplant the uterus into the recipient using a robot-assisted keyhole technique.”

The womb transplant was carried out at Sahlgrenska University Hospital in October 2017.

Ten months later, an embryo fertilized via IVF before the transplantation was inserted into the transplanted uterus.

And a few weeks later, the doctors were able to confirm pregnancy with a distinct heartbeat.

The woman’s pregnancy was free of complications with the mother enjoying good health throughout.

The baby boy is the ninth born in Sweden following a womb transplant — and the first in what the research team is calling the “Robot Project.”

Six transplantation operations were performed in 2017 and 2018, and the team is now preparing to perform the first womb transplant using an organ from a dead donor.

To date, a total of 15 babies worldwide have been born from a transplanted uterus.

Besides the nine born within the scope of the Sahlgrenska Academy research, there have been two in the United States and one each in Brazil, Serbia, India and China.

Mats Brännström points out the great importance of the technique, developed over more than 15 years’ research at Sahlgrenska Academy, is now also functioning elsewhere in the world — in several cases, following a direct technology transfer from the team at Sahlgrenska.

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