APK teardown reveals what Garmin’s muscle sensor could measure
Garmin recently filed a trademark for Muscle Battery, a feature linked to muscle oxygen data. Our Garmin Connect teardown found detailed fields for muscle oxygen saturation and total haemoglobin concentration, showing that the app already supports the types of measurements the future metric could draw on.
More than a single oxygen reading
The APK includes fields for average, minimum and maximum saturated haemoglobin percentage. It also contains average, minimum and maximum total haemoglobin concentration.
The potential upcoming device would need to track both because they measure different things. Saturated haemoglobin measures the amount of oxygen-carrying haemoglobin in the muscle, while total haemoglobin measures the total amount of haemoglobin present, whether it is carrying oxygen or not. Together, they give a more complete picture of what is happening inside the muscle during exercise.
Muscle oxygen strings found in Garmin Connect
MUSCLE_OXYGEN Muscle Oxygen sensor_name_type_muscle_oxygen avg_saturated_hemoglobin_percent min_saturated_hemoglobin_percent max_saturated_hemoglobin_percent avg_total_hemoglobin_conc min_total_hemoglobin_conc max_total_hemoglobin_conc
That is more detailed than simply recording one muscle oxygen number at the end of a workout. Garmin Connect can follow how muscle oxygen changes throughout an activity, then identify typical levels, the lowest point reached and the highest recovery point.
Average saturated haemoglobin percentage provides a broad view of muscle oxygen availability across the session. The minimum value shows when the working muscle became most depleted, while the maximum reflects recovery during easier sections, rest intervals or the period immediately after an effort.
Total haemoglobin concentration adds another layer. This measurement reflects changes in blood volume within the monitored tissue, which can help distinguish between a drop in oxygen saturation and a wider change in local blood flow.
The device would need specialised optics
Current Garmin devices cannot produce these readings. Muscle oxygen monitoring normally relies on near-infrared spectroscopy, using several light wavelengths to estimate oxygenated and deoxygenated haemoglobin inside a specific muscle.
That also explains why the likely device would need to sit directly over the muscle being measured. A cyclist may place it on the thigh, while a runner could use the calf or quadriceps. An upper-arm position might work for strength training or general conditioning.
The fields in Garmin Connect suggest the sensor would need to record continuously and send more than a basic SmO2 percentage. It would also need enough optical information to calculate total haemoglobin concentration and track changes over time.
In essence, we are expecting a dedicated optical pod. Garmin watches could act as the display and recording device, while the sensor itself handles the specialised measurements.
That matches our reporting in April on the Garmin Muscle Battery patent filing. This described software for analysing muscle oxygen saturation and related performance data.
Muscle oxygen sensors are not new
Muscle oxygen sensors have been around for years, although they remain few and far between. They have never really caught on outside serious endurance athletes. We reviewed the Humon Hex back in 2019, while Moxy remains one of the better-known options.
The difference is that these have always been third-party products sitting on the edge of the Garmin ecosystem. They can send muscle oxygen data to compatible watches, but Garmin has zero control over the hardware and the algorithms.
Whether these fields currently support third-party sensors or future Garmin hardware, they show that Garmin Connect already understands the muscle oxygen data Muscle Battery could use. A Garmin-made sensor could integrate those measurements more closely with Body Battery, Training Readiness and the wider Garmin ecosystem.
Separately, the same Garmin Connect 5.27 teardown also revealed more clues on the likely Enduro 4 and possible Fenix 9 family.
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